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Уміст макро- та мікроелементів у рослинах роду Artemisia в умовах інтродукції у Національному ботанічному саду імені М. М. Гришка НАН України Texto completo
2021
О. А. Корабльова | Д. Б. Рахметов | М. І. Шанайда | О. М. Вергун | Т. С. Багацька | Л. В. Свиденко | І. В. Іващенко
Уміст макро- та мікроелементів у рослинах роду Artemisia в умовах інтродукції у Національному ботанічному саду імені М. М. Гришка НАН України Texto completo
2021
О. А. Корабльова | Д. Б. Рахметов | М. І. Шанайда | О. М. Вергун | Т. С. Багацька | Л. В. Свиденко | І. В. Іващенко
Мета. Визначити мінеральний склад рослин видів роду Artemisia (А. dracunculus L., A. abrotanum L. та A. argyi H.Lév. & Vaniot) для з’ясування можливості їх безпечного використання у харчовій та фармацевтичній галузях промисловості України. Методи. Рентгено-флуоресцентний метод визначення елементного складу рослинної сировини. Результати. Визначено вміст мінеральних елементів у рослинах роду Artemisia залежно від їхньої здатності поглинати елементи з ґрунту й накопичувати в коренях та органах наземної частини. Установлено кількісний уміст 21 макро- й мікроелемента, а також виявлено деякі особливості їхньої міграції та розподілу в системі ґрунт–корені–рослина. Зокрема, наземна частина досліджуваних рослин містить K, Fe, Cu, Zn та Mn, які є найважливішими елементами в житті рослинного організму. Досить високим є вміст мезоелементів Ca та S. Кількість токсичних елементів Pb, Sr і Zr у рослинах незначна. Елементи K і S накопичуються в наземній частині. Уміст елементів у наземній частині рослин за зменшенням їхньої концентрації можна представити у вигляді таких рядів: для Artemisia dracunculus – S> K> Ca> Cl> Fe> Sr> Zn> Mn> Cu> Zr> Rb> Br> Cr; для A. abrotanum – K> Ca> S> Cl> Fe> Zn> Sr> Mn> Cu> Br> Cr> Co> Zr> Rb> Ni; для A. argyi – K> Ca> S> Fe> Cl> Sr> Zn> Mn> Co> Zr> Cu> Rb> Br> Se. Уміст токсичних елементів у досліджуваних рослинах знаходився в межах гранично допустимих концентрацій для рослинної сировини та продуктів харчування. Висновки. Уперше в умовах інтродукції в Національному ботанічному саду ім. М. М. Гришка НАН України в рослинах Artemisia dracunculus, A. abrotanum та A. argyi визначено вміст макро- та мікроелементів, які безпосередньо пов’язані з метаболізмом біологічно активних сполук. З’ясовано особливості їхнього розподілу за органами рослин при переході з ґрунту в наземну масу. Отримані результати можуть бути використані для оцінювання та порівняння якості рослинної сировини представників роду Artemisia, з’ясування фармакологічних властивостей цих рослин, пов’язаних з деякими елементами мінерального складу, і використання їх у медичній та харчовій галузях. Отримані дані мають як наукове, так і практичне значення в доборі господарсько-цінних видів рослин для збагачення культигенної флори України.
Mostrar más [+] Menos [-]Cobalt: An Essential Micronutrient for Plant Growth? Texto completo
2021
Xiu Hu | Xiangying Wei | Jie Ling | Jianjun Chen
Cobalt is a transition metal located in the fourth row of the periodic table and is a neighbor of iron and nickel. It has been considered an essential element for prokaryotes, human beings, and other mammals, but its essentiality for plants remains obscure. In this article, we proposed that cobalt (Co) is a potentially essential micronutrient of plants. Co is essential for the growth of many lower plants, such as marine algal species including diatoms, chrysophytes, and dinoflagellates, as well as for higher plants in the family Fabaceae or Leguminosae. The essentiality to leguminous plants is attributed to its role in nitrogen (N) fixation by symbiotic microbes, primarily rhizobia. Co is an integral component of cobalamin or vitamin B12, which is required by several enzymes involved in N2 fixation. In addition to symbiosis, a group of N2 fixing bacteria known as diazotrophs is able to situate in plant tissue as endophytes or closely associated with roots of plants including economically important crops, such as barley, corn, rice, sugarcane, and wheat. Their action in N2 fixation provides crops with the macronutrient of N. Co is a component of several enzymes and proteins, participating in plant metabolism. Plants may exhibit Co deficiency if there is a severe limitation in Co supply. Conversely, Co is toxic to plants at higher concentrations. High levels of Co result in pale-colored leaves, discolored veins, and the loss of leaves and can also cause iron deficiency in plants. It is anticipated that with the advance of omics, Co as a constitute of enzymes and proteins and its specific role in plant metabolism will be exclusively revealed. The confirmation of Co as an essential micronutrient will enrich our understanding of plant mineral nutrition and improve our practice in crop production.
Mostrar más [+] Menos [-]The content of macro- and microelements in plants of the genus Artemisia under conditions of introduction in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine | Уміст макро- та мікроелементів у рослинах роду Artemisia в умовах інтродукції у Національному ботанічному саду імені М. М. Гришка НАН України Texto completo
2021
Коrablova, O. A. | Rakhmetov, D. B. | Shanaida, M. I. | Vergun, O. M. | Bagatska, Т. S. | Svydenko, L. V. | Ivashchenko, I. V.
Purpose. To determine mineral composition of plants of species of the genus Artemisia (A. dracunculus L., A. abrotanum L. and A. argyi H.Lév. & Vaniot) to determine the possibility of their safe use in the food and pharmaceutical industries of Ukraine. Methods. X‑ray fluorescence method for determining the elemental composition of plant raw materials. Results. The content of mineral elements in plants of the genus Artemisia was determined depending on their ability to absorb elements from the soil and accumulate in the roots and organs of the aerial part was determined. The quantitative content of 21 macro- and microelements was established, and some peculiarities of their migration and distribution in the soil – roots – plant system were revealed. In particular, the aerial part of the studied plants contains K, Fe, Cu, Zn and Mn, which are the most important elements in the life of the plant organism. The content of mesoelements Ca and S is quite high. The amount of toxic elements Pb, Sr and Zr in plants is insignificant. Elements K and S accumulate in the aerial part. The content of elements in the aerial part of plants by decreasing their concentration can be represented in the form of the following series: for Artemisia dracunculus – S> K> Ca> Cl> Fe> Sr> Zn> Mn> Cu> Zr> Rb> Br> Cr; for A. abrotanum – K> Ca> S> Cl> Fe> Zn> Sr> Mn> Cu> Br> Cr> Co> Zr> Rb> Ni; for A. argyi – K> Ca> S> Fe> Cl> Sr> Zn> Mn> Co> Zr> Cu> Rb> Br> Se. The content of toxic elements in the studied plants was lower than the maximum allowable concentrations for plant raw materials and food. Conclusions. For the first time under conditions of introduction in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine in the plants Artemisia dracunculus, A. abrotanum and A. argyi the content of macro- and microelements, which are directly related to the metabolism of biologically active compounds, was determined. The peculiarities of their distribution by plant organs during the transition from soil to aboveground mass have been clarified. The obtained results can be used to evaluate and compare the quality of plant raw materials of the genus Artemisia, to determine the pharmacological properties of these plants associated with some elements of the mineral composition, and their use in the medical and food industries. The obtained data have both scientific and practical significance in the selection of economically valuable plant species for the enrichment of the cultivated flora of Ukraine. | Мета. Визначити мінеральний склад рослин видів роду Artemisia (А. dracunculus L., A. abrotanum L. та A. argyi H.Lév. & Vaniot) для з’ясування можливості їх безпечного використання у харчовій та фармацевтичній галузях промисловості України. Методи. Рентгено-флуоресцентний метод визначення елементного складу рослинної сировини. Результати. Визначено вміст мінеральних елементів у рослинах роду Artemisia залежно від їхньої здатності поглинати елементи з ґрунту й накопичувати в коренях та органах наземної частини. Установлено кількісний уміст 21 макро- й мікроелемента, а також виявлено деякі особливості їхньої міграції та розподілу в системі ґрунт–корені–рослина. Зокрема, наземна частина досліджуваних рослин містить K, Fe, Cu, Zn та Mn, які є найважливішими елементами в житті рослинного організму. Досить високим є вміст мезоелементів Ca та S. Кількість токсичних елементів Pb, Sr і Zr у рослинах незначна. Елементи K і S накопичуються в наземній частині. Уміст елементів у наземній частині рослин за зменшенням їхньої концентрації можна представити у вигляді таких рядів: для Artemisia dracunculus – S> K> Ca> Cl> Fe> Sr> Zn> Mn> Cu> Zr> Rb> Br> Cr; для A. abrotanum – K> Ca> S> Cl> Fe> Zn> Sr> Mn> Cu> Br> Cr> Co> Zr> Rb> Ni; для A. argyi – K> Ca> S> Fe> Cl> Sr> Zn> Mn> Co> Zr> Cu> Rb> Br> Se. Уміст токсичних елементів у досліджуваних рослинах знаходився в межах гранично допустимих концентрацій для рослинної сировини та продуктів харчування. Висновки. Уперше в умовах інтродукції в Національному ботанічному саду ім. М. М. Гришка НАН України в рослинах Artemisia dracunculus, A. abrotanum та A. argyi визначено вміст макро- та мікроелементів, які безпосередньо пов’язані з метаболізмом біологічно активних сполук. З’ясовано особливості їхнього розподілу за органами рослин при переході з ґрунту в наземну масу. Отримані результати можуть бути використані для оцінювання та порівняння якості рослинної сировини представників роду Artemisia, з’ясування фармакологічних властивостей цих рослин, пов’язаних з деякими елементами мінерального складу, і використання їх у медичній та харчовій галузях. Отримані дані мають як наукове, так і практичне значення в доборі господарсько-цінних видів рослин для збагачення культигенної флори України.
Mostrar más [+] Menos [-]Content of macro- and microelements in the plants of Artemisia annua L., A. ludoviciana Nutt. and A. austriaca L. Texto completo
Вергун, Vergun, Olena, O. M. | Свиденко, Svydenko, Ludmyla, Л. В. | Рахметов, Rakhmetov, Jamal, Д. Б. | Корабльова, Кorablova, Olha, О. А. | Войцехівський, Voitsekhivskyi, Volodymyr, В. І. | Шанайда, Shanaida, Mariia, M. І.
Мета. Визначення кількісного та якісного елементного складу рослин видів Artemisia annua L., A. ludoviciana Nutt. та A. austriaca L. за умов інтродукції в Національному ботанічному саду імені М. М. Гришка НАН України.Методи. Елементний склад рослинної сировини визначали рентгенофлуоресцентним методом.Результати. Вміст мінеральних елементів у рослинах залежить від їхньої індивідуальної здатності поглинати елементи з ґрунту та накопичувати їх у коренях і надземній частині. Зразки рослин трьох видів полину, вирощених у НБС, досліджували протягом 2019–2022 рр. у фазі цвітіння. Визначено якісний і кількісний вміст 21 макро- та мікроелемента в ґрунті та 17 – в досліджуваних рослинах, а також деякі особливості міграції цих елементів у системі ґрунт – корінь – трава. Встановлено, що надземна частина досліджуваних видів містить найважливіші для життя рослин елементи – K, Fe, Cu, Zn і Mn. Мезоелементи Са і S присутні в достатній кількості. Елементи Nb, Y, Ti, V, Cr виявлено лише у ґрунті. Ni та Se містили тільки рослини A. annua, тоді як Pb – A. annua та A. ludoviciana. A. ludoviciana продемонструвала схильність до накопичення заліза в надземній масі. Кількість токсичних елементів у рослинах не перевищувала гранично допустимих концентрацій для рослинної сировини та продуктів харчування.Висновки. Визначено вміст основних макро- та мікроелементів у ґрунті та рослинах A. annua, A. ludoviciana й A. austriaca за умов інтродукції в НБС імені М. М. Гришка, а також особливості накопичення елементів окремими органами рослин під час їх транспортування з ґрунту в надземну частину. Встановлено схильність рослин A. ludoviciana до накопичення високих концентрацій заліза в коренях і надземній частині, а також можливість накопичення Ni та Se рослинами A. annua. Результати досліджень будуть корисними для прогнозування й оцінки інтродукції нових перспективних видів роду Artemisia, селекції у процесі створення нових сортів полинів, визначення їхніх фармакологічних властивостей і прийняття рішень щодо доцільності їх використання у чаях та харчових продуктах. | The purpose of this study was to investigate mineral composition of the plants species Artemisia annua L., A. ludoviciana Nutt. and A. austriaca L.Methods. Determination of the elemental composition of plant material was carried out by the X-ray fluorescence method.Results. The content of mineral elements in plants depends on their individual ability to absorb elements from the soil and accumulate them in the roots, leaves and flowers. Plant samples of three species of wormwood were grown and studied during the flowering phase under conditions of introduction in M. M. Gryshko National Botanical Garden of National Academy of Sciences of Ukraine (NBG) during 2019–2022. The qualitative and quantitative content of different macro- and microelements in the soil and plants were investigated. It was shown that aerial parts of the investigated plants accumulate the most important elements for the plants life, such as – K, Fe, Cu, Zn and Mn. Mesoelements Ca and S are present in sufficient quantities also. Elements Nb, Y, Ti, V, Cr were detected in soil, but were not determined in plants. Only A. annua plants contains Ni and Se, while A. ludoviciana and A. annua plants contain Pb. The amount of toxic elements in plants did not exceed the maximum permissible concentrations for vegetable raw materials and food products.Conclusion. Content of the main macro- and microelements was determined in the plants A. annua, A. ludoviciana and A. austriaca growing in NBG. The tendency of plants A. ludoviciana to accumulate high concentrations of iron in the roots and aerial part was observed. The obtained data will be useful for forecasting and evaluating the results of introduction of new promising species of the genus Artemisia, in breeding of new varieties of wormwood, to determine their pharmacological properties and to make a decision about the feasibility of using them in herbal tea and food products.
Mostrar más [+] Menos [-]Уміст макро- та мікроелементів у рослинах роду Artemisia в умовах інтродукції у Національному ботанічному саду імені М. М. Гришка НАН України Texto completo
2021
Корабльова, О. А | Рахметов, Д. Б | Шанайда, М. І | Вергун, О. М | Багацька, Т. С | Свиденко, Л. В | Іващенко, І. В
Мета. Визначити мінеральний склад рослин видів роду Artemisia (А. dracunculus L., A. abrotanum L. та A. argyi H.Lév. & Vaniot) для з’ясування можливості їх безпечного використання у харчовій та фармацевтичній галузях промисловості України. Методи. Рентгено-флуоресцентний метод визначення елементного складу рослинної сировини. Результати. Визначено вміст мінеральних елементів у рослинах роду Artemisia залежно від їхньої здатності поглинати елементи з ґрунту й накопичувати в коренях та органах наземної частини. Установлено кількісний уміст 21 макро- й мікроелемента, а також виявлено деякі особливості їхньої міграції та розподілу в системі ґрунт–корені–рослина. Зокрема, наземна частина досліджуваних рослин містить K, Fe, Cu, Zn та Mn, які є найважливішими елементами в житті рослинного організму. Досить високим є вміст мезоелементів Ca та S. Кількість токсичних елементів Pb, Sr і Zr у рослинах незначна. Елементи K і S накопичуються в наземній частині. Уміст елементів у наземній частині рослин за зменшенням їхньої концентрації можна представити у вигляді таких рядів: для Artemisia dracunculus – S> K> Ca> Cl> Fe> Sr> Zn> Mn> Cu> Zr> Rb> Br> Cr; для A. abrotanum – K> Ca> S> Cl> Fe> Zn> Sr> Mn> Cu> Br> Cr> Co> Zr> Rb> Ni; для A. argyi – K> Ca> S> Fe> Cl> Sr> Zn> Mn> Co> Zr> Cu> Rb> Br> Se. Уміст токсичних елементів у досліджуваних рослинах знаходився в межах гранично допустимих концентрацій для рослинної сировини та продуктів харчування. Висновки. Уперше в умовах інтродукції в Національному ботанічному саду ім. М. М. Гришка НАН України в рослинах Artemisia dracunculus, A. abrotanum та A. argyi визначено вміст макро- та мікроелементів, які безпосередньо пов’язані з метаболізмом біологічно активних сполук. З’ясовано особливості їхнього розподілу за органами рослин при переході з ґрунту в наземну масу. Отримані результати можуть бути використані для оцінювання та порівняння якості рослинної сировини представників роду Artemisia, з’ясування фармакологічних властивостей цих рослин, пов’язаних з деякими елементами мінерального складу, і використання їх у медичній та харчовій галузях. Отримані дані мають як наукове, так і практичне значення в доборі господарсько-цінних видів рослин для збагачення культигенної флори України.
Mostrar más [+] Menos [-]Effects of Soil Type on Trace Element Absorption and Fruit Quality of Pepper Texto completo
2021
Zhoubin Liu | Zhoubin Liu | Zhoubin Liu | Yu Huang | Yu Huang | Yu Huang | Fangjun Tan | Wenchao Chen | Lijun Ou | Lijun Ou | Lijun Ou
The inbred “SJ11-3” pepper was cultured in yellow brown soil, paddy soil, fluvo-aquic soil, and pastoral soil, and the factors affecting the absorption of trace elements and fruit quality were analyzed. The results showed that the physicochemical properties of the soils were significantly different, which led to differences in the nutritional quality of pepper fruits. The pH value had a significant effect on the absorption of trace elements in pepper. The increase of pH promoted the absorption of magnesium and molybdenum but inhibited the absorption of zinc, copper, manganese, and iron. The stepwise multivariable regression analysis showed that the amount of molybdenum in soil was the main factor affecting the total amino acid content of pepper. Total nitrogen, zinc, and copper were the main factors that contributed to the soluble sugar content of pepper, and the available potassium was the major determinant of the vitamin C content of pepper. This study provides new insight on the pepper fruit quality grown on different types of soil with varying levels of trace elements.
Mostrar más [+] Menos [-]Flora etnomedicinal utilizada para el tratamiento de afecciones dermatológicas en la Meseta Purépecha, Michoacán, México Texto completo
2018
Roberto Esquivel-García | Emmanuel Pérez-Calix | Alejandra Ochoa-Zarzosa | Martha Estrella García-Pérez
Antecedentes y Objetivos: Los habitantes de la Meseta Purépecha conservan un excelente conocimiento ancestral sobre plantas medicinales utilizadas para tratar afecciones dermatológicas que no ha sido documentado. Un estudio etnofarmacológico fue realizado en esta región para recopilar información sobre el uso de plantas medicinales y preparaciones herbarias utilizadas en la zona para el tratamiento de afecciones dermatológicas, con el objetivo de difundir la medicina tradicional Purépecha e identificar plantas prometedoras en el desarrollo de tratamientos para afecciones cutáneas. Métodos: El estudio se realizó en los 21 municipios que componen la Meseta Purépecha. Se entrevistó a un total de 86 habitantes locales (62 mujeres y 24 hombres). Los datos se analizaron cuantitativamente mediante la determinación del valor de uso, nivel de fidelidad y el factor de consenso informante. Resultados clave: En total 97 especies de plantas pertenecientes a 47 familias fueron documentadas para el tratamiento de 19 afecciones dermatológicas en la Meseta Purépecha. Asteraceae fue la familia principal entre las plantas colectadas (20.61%), seguida de Lamiaceae (13.40%) y Solanaceae (5.15%). La mayor cantidad de plantas se utilizó para tratamiento de heridas (40.20%), inflamación de la piel (37.11%) y erupciones cutáneas (37.11%). La principal parte utilizada de la planta fue la aérea (34.75%). Las plantas medicinales con mayores valores de uso fueron Heterotheca inuloides (0.53), Aloe vera (0.37) y Oenothera rosea (0.21). La comparación de los resultados con la literatura etnomedicinal reveló que 8.25% de las plantas utilizadas en la Meseta Purépecha se registraron por primera vez para tratamiento de afecciones dermatológicas. Conclusiones: Este estudio proporciona nueva información sobre plantas medicinales utilizadas en la Meseta Purépecha para tratamiento de enfermedades cutáneas. Se requieren futuras investigaciones farmacológicas y toxicológicas para demostrar la eficacia y seguridad de estas especies para el tratamiento de afecciones dermatológicas.
Mostrar más [+] Menos [-]Ethnomedicinal plants used for the treatment of dermatological affections on the Purépecha Plateau, Michoacán, Mexico | Flora etnomedicinal utilizada para el tratamiento de afecciones dermatológicas en la Meseta Purépecha, Michoacán, México Texto completo
2018
Esquivel-García, Roberto | Pérez-Calix, Emmanuel | Ochoa-Zarzosa, Alejandra | García-Pérez, Martha Estrella
Background and Aims: Inhabitants of the Purépecha Plateau preserve an excellent ancestral knowledge on medicinal plants used for dermatological affections, which has not been documented. An ethnopharmacological survey was carried out in this region to gather information on the use of medicinal plants and herbal preparations for treating dermatological affections, to disseminate the Purépecha indigenous knowledge and identifying promising plants for developing new formulations for cutaneous conditions.Methods: The study was conducted in the 21 municipalities that compose the Purépecha Plateau. A total of 86 local inhabitants (62 women and 24 men) were interviewed. The data were quantitatively analyzed through the determination of the use value, fidelity level and informant consensus factor.Key results: A total of 97 plant species belonging to 47 families were documented for treating 19 dermatological conditions on the Purépecha Plateau. Asteraceae was the leading family among the collected medicinal plants (20.61%), followed by Lamiaceae (13.40%) and Solanaceae (5.15%). The largest number of plants was used for the treatment of cuts (40.20%), skin inflammation (37.11%) and rash (37.11%). The aerial parts were the most commonly used (34.75%). The medicinal plant species with larger use values were Heterotheca inuloides (0.53), Aloe vera (0.37) and Oenothera rosea (0.21). The comparison of results with ethnomedicinal literature worldwide revealed that 8.25% of plants used on the Purépecha Plateau were recorded for the first time for the treatment of dermatological affections.Conclusions: This study provides new information on medicinal plants used on the Purépecha Plateau to treat cutaneous diseases. Future pharmacological and toxicological investigations are required to demonstrate the efficacy and safety of these species for treating dermatological affections. | Antecedentes y Objetivos: Los habitantes de la Meseta Purépecha conservan un excelente conocimiento ancestral sobre plantas medicinales utilizadas para tratar afecciones dermatológicas que no ha sido documentado. Un estudio etnofarmacológico fue realizado en esta región para recopilar información sobre el uso de plantas medicinales y preparaciones herbarias utilizadas en la zona para el tratamiento de afecciones dermatológicas, con el objetivo de difundir la medicina tradicional Purépecha e identificar plantas prometedoras en el desarrollo de tratamientos para afecciones cutáneas.Métodos: El estudio se realizó en los 21 municipios que componen la Meseta Purépecha. Se entrevistó a un total de 86 habitantes locales (62 mujeres y 24 hombres). Los datos se analizaron cuantitativamente mediante la determinación del valor de uso, nivel de fidelidad y el factor de consenso informante.Resultados clave: En total 97 especies de plantas pertenecientes a 47 familias fueron documentadas para el tratamiento de 19 afecciones dermatológicas en la Meseta Purépecha. Asteraceae fue la familia principal entre las plantas colectadas (20.61%), seguida de Lamiaceae (13.40%) y Solanaceae (5.15%). La mayor cantidad de plantas se utilizó para tratamiento de heridas (40.20%), inflamación de la piel (37.11%) y erupciones cutáneas (37.11%). La principal parte utilizada de la planta fue la aérea (34.75%). Las plantas medicinales con mayores valores de uso fueron Heterotheca inuloides (0.53), Aloe vera (0.37) y Oenothera rosea (0.21). La comparación de los resultados con la literatura etnomedicinal reveló que 8.25% de las plantas utilizadas en la Meseta Purépecha se registraron por primera vez para tratamiento de afecciones dermatológicas.Conclusiones: Este estudio proporciona nueva información sobre plantas medicinales utilizadas en la Meseta Purépecha para tratamiento de enfermedades cutáneas. Se requieren futuras investigaciones farmacológicas y toxicológicas para demostrar la eficacia y seguridad de estas especies para el tratamiento de afecciones dermatológicas.
Mostrar más [+] Menos [-]Content of macro- and microelements in the plants of Artemisia annua L., A. ludoviciana Nutt. and A. austriaca L. Texto completo
2023
О. А. Корабльова | Д. Б. Рахметов | M. І. Шанайда | O. M. Вергун | Л. В. Свиденко | В. І. Войцехівський
The purpose of this study was to investigate mineral composition of the plants species Artemisia annua L., A. ludoviciana Nutt. and A. austriaca L. Methods. Determination of the elemental composition of plant material was carried out by the X-ray fluorescence method. Results. The content of mineral elements in plants depends on their individual ability to absorb elements from the soil and accumulate them in the roots, leaves and flowers. Plant samples of three species of wormwood were grown and studied during the flowering phase under conditions of introduction in M. M. Gryshko National Botanical Garden of National Academy of Sciences of Ukraine (NBG) during 2019–2022. The qualitative and quantitative content of different macro- and microelements in the soil and plants were investigated. It was shown that aerial parts of the investigated plants accumulate the most important elements for the plants life, such as – K, Fe, Cu, Zn and Mn. Mesoelements Ca and S are present in sufficient quantities also. Elements Nb, Y, Ti, V, Cr were detected in soil, but were not determined in plants. Only A. annua plants contains Ni and Se, while A. ludoviciana and A. annua plants contain Pb. The amount of toxic elements in plants did not exceed the maximum permissible concentrations for vegetable raw materials and food products. Conclusion. Content of the main macro- and microelements was determined in the plants A. annua, A. ludoviciana and A. austriaca growing in NBG. The tendency of plants A. ludoviciana to accumulate high concentrations of iron in the roots and aerial part was observed. The obtained data will be useful for forecasting and evaluating the results of introduction of new promising species of the genus Artemisia, in breeding of new varieties of wormwood, to determine their pharmacological properties and to make a decision about the feasibility of using them in herbal tea and food products.
Mostrar más [+] Menos [-]Agrobiological parameters of various varieties and hybrids of sweet sorghum Texto completo
2021
В. В. Любич | Л. І. Сторожик | В. І. Войтовська | І. С. Терещенко | А. І. Лосєва
Agrobiological parameters of various varieties and hybrids of sweet sorghum Texto completo
2021
В. В. Любич | Л. І. Сторожик | В. І. Войтовська | І. С. Терещенко | А. І. Лосєва
Purpose. To reveal the features of agrobiological parameters formation of sweet sorghum various varieties and hybrids in the conditions of the Right-Bank Forest-Steppe of Ukraine. Methods. During 2018–2020 twenty-one varieties and hybrids of sweet sorghum of various ecological and geographical origins (Ukraine, Russia, USA, France, Germany, Hungary, Brazil) were studied in the field. Parameters like plant height and indices of their individual productivity (grain weight per panicle, 1000 grain weight, etc.), yield of dry biomass and grain, content of sugar in juice and protein in grain, as well as estimated sugar and protein yield in a crop. The counts were carried out in the phase of physiological ripeness of the culture. Results. In the group of Ukrainian varieties and hybrids, the plants were from 272 to 306 cm high, in the foreign group – from 274 to 412 cm. Varieties ‘Red Amber’, ‘Sioux’, ‘Affas CJ 899’, ‘Freed’ and ‘Early Orange’ are of high value for breeding practice, their plants were the tallest – from 388 to 412 cm. The panicle length of sweet sorghum cultivars of Ukrainian breeding ranged from 16.0 to 17.3 cm, foreign – from 11.0 to 19.4 cm. Grain weight from one panicle varied from 32.8 to 41.6 g and from 29.2 to 43.5 g, respectively. In a wide range, depending on the varietal characteristics, the indicator of the number of grains per panicle also varied from 1338 to 1708 pcs. The mass of 1000 grains of sweet sorghum ranged from 28.0 to 31.0 g in varieties and hybrids of Ukrainian breeding, in foreign ones – from 19.3 to 31.0 g. The yield of dry vegetative mass of cultivars of Ukrainian breeding was at the level of 8.24–9.11 t/ha. The highest rates were shown in hybrid ‘Mamont’ and ‘Huliver’ variety – 9.05 and 9.11 t/ha, respectively. For cultivars and hybrids of foreign breeding, this indicator varied from 7.00 to 12.17 t/ha. Significantly higher biomass in comparison with the standard variety (‘Sylosne 42’) was produced by ‘Vorai Sumac’, ‘Sorgo Cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 9.03–12.17 t/ha. The sugar content in sweet sorghum juice varied from 15.2 to 17.2%. The estimated sugar yield in Ukrainian cultivars was at the level of 0.82–0.89 t/ha, in foreign ones – from 0.72 to 1.18 t/ha. In all studied varieties it was the highest in ‘Sorgo Cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 0.94–1.18 t/ha. Conclusions. The productivity of sweet sorghum varies greatly depending on the origin of the variety and hybrid. In the conditions of the Right-Bank Forest-Steppe, in order to obtain a high sugar yield, it is advisable to grow ‘Sylosne 42’, ‘Favoryt’, ‘Troistyi’, ‘Dovista’, ‘Huliver’ varieties and ‘Ananas’, ‘Medovyi’, ‘Mamont’ hybrids. Varieties ‘Vaconia Orange’, ‘Vorai Sumac’, ‘Sorgo Cucre’ and hybrids ‘Ald Sorghum’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ provide high yields of vegetative masses. Hybrids ‘Freed’, ‘Affas CJ 899’ and ‘Early Orange’ produce a large vegetative mass (11.08–12.17 t/ha), grain yield (8.00–8.15 t/ha) and a high protein content (9.8–11.3%).
Mostrar más [+] Menos [-]Agrobiological parameters of various varieties and hybrids of sweet sorghum Texto completo
2021
Любич, В. В | Сторожик, Л. І | Войтовська, В. І | Терещенко, І. С | Лосєва, А. І
Purpose. To reveal the features of agrobiological parameters formation of sweet sorghum various varieties and hybrids in the conditions of the Right-Bank Forest-Steppe of Ukraine. Methods. During 2018–2020 twenty-one varieties and hybrids of sweet sorghum of various ecological and geographical origins (Ukraine, Russia, USA, France, Germany, Hungary, Brazil) were studied in the field. Parameters like plant height and indices of their individual productivity (grain weight per panicle, 1000 grain weight, etc.), yield of dry biomass and grain, content of sugar in juice and protein in grain, as well as estimated sugar and protein yield in a crop. The counts were carried out in the phase of physiological ripeness of the culture. Results. In the group of Ukrainian varieties and hybrids, the plants were from 272 to 306 cm high, in the foreign group – from 274 to 412 cm. Varieties ‘Red Amber’, ‘Sioux’, ‘Affas CJ 899’, ‘Freed’ and ‘Early Orange’ are of high value for breeding practice, their plants were the tallest – from 388 to 412 cm. The panicle length of sweet sorghum cultivars of Ukrainian breeding ranged from 16.0 to 17.3 cm, foreign – from 11.0 to 19.4 cm. Grain weight from one panicle varied from 32.8 to 41.6 g and from 29.2 to 43.5 g, respectively. In a wide range, depending on the varietal characteristics, the indicator of the number of grains per panicle also varied from 1338 to 1708 pcs. The mass of 1000 grains of sweet sorghum ranged from 28.0 to 31.0 g in varieties and hybrids of Ukrainian breeding, in foreign ones – from 19.3 to 31.0 g. The yield of dry vegetative mass of cultivars of Ukrainian breeding was at the level of 8.24–9.11 t/ha. The highest rates were shown in hybrid ‘Mamont’ and ‘Huliver’ variety – 9.05 and 9.11 t/ha, respectively. For cultivars and hybrids of foreign breeding, this indicator varied from 7.00 to 12.17 t/ha. Significantly higher biomass in comparison with the standard variety (‘Sylosne 42’) was produced by ‘Vorai Sumac’, ‘Sorgo Cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 9.03–12.17 t/ha. The sugar content in sweet sorghum juice varied from 15.2 to 17.2%. The estimated sugar yield in Ukrainian cultivars was at the level of 0.82–0.89 t/ha, in foreign ones – from 0.72 to 1.18 t/ha. In all studied varieties it was the highest in ‘Sorgo Cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 0.94–1.18 t/ha. Conclusions. The productivity of sweet sorghum varies greatly depending on the origin of the variety and hybrid. In the conditions of the Right-Bank Forest-Steppe, in order to obtain a high sugar yield, it is advisable to grow ‘Sylosne 42’, ‘Favoryt’, ‘Troistyi’, ‘Dovista’, ‘Huliver’ varieties and ‘Ananas’, ‘Medovyi’, ‘Mamont’ hybrids. Varieties ‘Vaconia Orange’, ‘Vorai Sumac’, ‘Sorgo Cucre’ and hybrids ‘Ald Sorghum’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ provide high yields of vegetative masses. Hybrids ‘Freed’, ‘Affas CJ 899’ and ‘Early Orange’ produce a large vegetative mass (11.08–12.17 t/ha), grain yield (8.00–8.15 t/ha) and a high protein content (9.8–11.3%).
Mostrar más [+] Menos [-]Agrobiological parameters of various varieties and hybrids of sweet sorghum | Агробіологічні параметри різних сортів і гібридів сорго цукрового Texto completo
2021
Liubych, V. V. | Storozhyk, L. I. | Voitovska, V. I. | Tereshchenko, I. S. | Losieva, A. I.
Purpose. To reveal the features of agrobiological parameters formation of sweet sorghum various varieties and hybrids in the conditions of the Right-Bank Forest-Steppe of Ukraine. Methods. During 2018–2020 twenty-one varieties and hybrids of sweet sorghum of various ecological and geographical origins (Ukraine, Russia, USA, France, Germany, Hungary, Brazil) were studied in the field. Parameters like plant height and indices of their individual productivity (grain weight per panicle, 1000 grain weight, etc.), yield of dry biomass and grain, content of sugar in juice and protein in grain, as well as estimated sugar and protein yield in a crop. The counts were carried out in the phase of physiological ripeness of the culture. Results. In the group of Ukrainian varieties and hybrids, the plants were from 272 to 306 cm high, in the foreign group – from 274 to 412 cm. Varieties ‘Red Amber’, ‘Sioux’, ‘Affas CJ 899’, ‘Freed’ and ‘Early Orange’ are of high value for breeding practice, their plants were the tallest – from 388 to 412 cm. The panicle length of sweet sorghum cultivars of Ukrainian breeding ranged from 16.0 to 17.3 cm, foreign – from 11.0 to 19.4 cm. Grain weight from one panicle varied from 32.8 to 41.6 g and from 29.2 to 43.5 g, respectively. In a wide range, depending on the varietal characteristics, the indicator of the number of grains per panicle also varied from 1338 to 1708 pcs. The mass of 1000 grains of sweet sorghum ranged from 28.0 to 31.0 g in varieties and hybrids of Ukrainian breeding, in foreign ones – from 19.3 to 31.0 g. The yield of dry vegetative mass of cultivars of Ukrainian breeding was at the level of 8.24–9.11 t/ha. The highest rates were shown in hybrid ‘Mamont’ and ‘Huliver’ variety – 9.05 and 9.11 t/ha, respectively. For cultivars and hybrids of foreign breeding, this indicator varied from 7.00 to 12.17 t/ha. Significantly higher biomass in comparison with the standard variety (‘Sylosne 42’) was produced by ‘Vorai Sumac’, ‘Sorgo Cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 9.03–12.17 t/ha. The sugar content in sweet sorghum juice varied from 15.2 to 17.2%. The estimated sugar yield in Ukrainian cultivars was at the level of 0.82–0.89 t/ha, in foreign ones – from 0.72 to 1.18 t/ha. In all studied varieties it was the highest in ‘Sorgo Cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 0.94–1.18 t/ha. Conclusions. The productivity of sweet sorghum varies greatly depending on the origin of the variety and hybrid. In the conditions of the Right-Bank Forest-Steppe, in order to obtain a high sugar yield, it is advisable to grow ‘Sylosne 42’, ‘Favoryt’, ‘Troistyi’, ‘Dovista’, ‘Huliver’ varieties and ‘Ananas’, ‘Medovyi’, ‘Mamont’ hybrids. Varieties ‘Vaconia Orange’, ‘Vorai Sumac’, ‘Sorgo Cucre’ and hybrids ‘Ald Sorghum’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ provide high yields of vegetative masses. Hybrids ‘Freed’, ‘Affas CJ 899’ and ‘Early Orange’ produce a large vegetative mass (11.08–12.17 t/ha), grain yield (8.00–8.15 t/ha) and a high protein content (9.8–11.3%). | Мета. Установити особливості формування агробіологічних параметрів різних сортів і гібридів сорго цукрового в умовах Правобережного Лісостепу України. Методи. Упродовж 2018–2020 рр. у польових умовах досліджували 21 сорт і гібрид сорго цукрового різного еколого-географічного походження (Україна, Росія, США, Франція, Німеччина, Угорщина, Бразилія). Оцінювали такі параметри, як висота рослин і показники їх індивідуальної продуктивності (маса зерна з однієї волоті, маса 1000 зерен тощо), урожайність сухої біомаси й зерна, уміст цукрів у соку та білка в зерні, а також умовний вихід цукру й білка з урожаєм. Обліки проводили у фазі фізіологічної стиглості культури. Результати. У групі українських сортів і гібридів рослини були заввишки від 272 до 306 см, у групі закордонних – від 274 до 412 см. Високу цінність для селекційної практики мають сорти ‘Red Amber’, ‘Sioux’, ‘Affas CJ 899’, ‘Freed’ та ‘Early Orange’, рослини яких були найвищими – від 388 до 412 см. Довжина волоті сорго цукрового культиварів української селекції становила від 16,0 до 17,3 см, закордонної – від 11,0 до 19,4 см. Маса зерна з однієї волоті змінювалась від 32,8 до 41,6 г і від 29,2 до 43,5 г відповідно. У великому діапазоні залежно від сортових особливостей варіював і показник кількості зерен з однієї волоті – 1338–1708 шт. Маса 1000 зерен сорго цукрового становила від 28,0 до 31,0 г у сортів і гібридів української селекції, у закордонних – від 19,3 до 31,0 г. Урожайність сухої вегетативної маси культиварів української селекції була на рівні 8,24–9,11 т/га. Найвищі показники формували гібрид ‘Мамонт’ і сорт ‘Гулівер’ – 9,05 і 9,11 т/га відповідно. У сортів і гібридів закордонної селекції цей показник змінювався від 7,00 до 12,17 т/га. Істотно вищу біомасу порівняно із сортом-стандартом (‘Силосне 42’) формували ‘Vorai Sumac’, ‘Sorgo cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 9,03–12,17 т/га. Уміст цукрів у соку сорго цукрового змінювався від 15,2 до 17,2%. Умовний вихід цукру в культиварів української селекції був на рівні 0,82–0,89 т/га, у закордонних – від 0,72 до 1,18 т/га. Найвищим серед усіх досліджуваних сортів і гібридів культури він був у ‘Sorgo Cucre’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ – 0,94–1,18 т/га. Висновки. Продуктивність сорго цукрового значною мірою змінюється залежно від походження сорту та гібрида. В умовах Правобережного Лісостепу з метою отримання високого виходу цукру доцільно вирощувати сорти ‘Силосне 42’, ‘Фаворит’, ‘Троїстий’, ‘Довіста’, ‘Гулівер’ і гібриди ‘Ананас’, ‘Медовий’, ‘Мамонт’. Сорти ‘Vaconia Orange’, ‘Vorai Sumac’, ‘Sorgo Cucre’ і гібриди ‘Ald Sorghum’, ‘Sioux’, ‘Freed’, ‘Red Amber’, ‘Mohavk’, ‘Affas CJ 899’, ‘Early Orange’ забезпечують високу врожайність вегетативної маси. Гібриди ‘Freed’, ‘Affas CJ 899’ і ‘Early Orange’ формують велику вегетативну масу (11,08–12,17 т/га), урожайність зерна (8,00–8,15 т/га) та високий уміст білка (9,8–11,3%).
Mostrar más [+] Menos [-]Differentiation and identification of winter bread wheat verieties according to a complex of baking quality indicators Texto completo
2021
О. А. Демидов | В. М. Гудзенко | І. В. Правдзіва
Differentiation and identification of winter bread wheat verieties according to a complex of baking quality indicators Texto completo
2021
О. А. Демидов | В. М. Гудзенко | І. В. Правдзіва
Purpose. Reveal the features of the formation of a quality indicator complex in winter bread wheat depending on the growing seasons, preceding crops and sowing dates, as well as differentiate and identify genotypes with high and stable levels of manifestation. Methods. Field, laboratory, statistical. Results. A different share of the influence of the year conditions, the preceding crop, the sowing date and their interactions on the quality indicators of some varieties was determined. A different reaction of varieties in terms of quality indicators, depending on the investigated factors was revealed. The variation was very low for test weight, water absorption ability of flour, crumb porosity. Strong variation was observed for flour strength after sunflower and soybean as preceding crops, alveograph configuration ratio after sunflower and soybean, index of elasticity dough after corn, valorimetric value after mustard, dough dilution degree after green manure, sunflower, corn and especially after mustard and soybeans. The varieties, which on average for 2016/17–2018/19 reliably exceeded the standard both in individual indicators and in general in terms of physical indicators of grain and flour quality and dough rheological properties. GYT biplot analysis identified the genotypes ‘MIP Vidznaka’ and ‘MIP Assol’ with a more optimal combination of increased yield and a complex of quality indicators in terms of different years, preceding crops and sowing dates. Some varieties, namely, ‘Estafeta myronivs’ka’, ‘Trudivnytsia myronivs’ka’, ‘MIP Valensiia’, ‘MIP Yuvileina’, ‘Balada myronivs’ka’, ‘Vezha myronivs’ka’ were inferior to them, but were significantly superior the others. Conclusions. The selected by quality indicators varieties as genetic sources can be used in breeding process. A more stable level of yield and quality indicators at different sowing dates after different preceding crops should be expected for growing varieties ‘MIP Vidznaka’, ‘MIP Assol’, as well as ‘Estafeta myronivs’ka’, ‘Trudivnytsia myronivs’ka’, ‘MIP Valensiia’, ‘MIP Yuvileina’, ‘Balada myronivs’ka’, ‘Vezha myronivs’ka’. The peculiarities obtained in the research should be taken into account when evaluating and differentiating genotypes in breeding process, as well as developing basic elements of technology for growing the varieties of winter bread wheat.
Mostrar más [+] Menos [-]Differentiation and identification of winter bread wheat verieties according to a complex of baking quality indicators Texto completo
2021
Демидов, О. А | Гудзенко, В. М | Правдзіва, І. В
Purpose. Reveal the features of the formation of a quality indicator complex in winter bread wheat depending on the growing seasons, preceding crops and sowing dates, as well as differentiate and identify genotypes with high and stable levels of manifestation. Methods. Field, laboratory, statistical. Results. A different share of the influence of the year conditions, the preceding crop, the sowing date and their interactions on the quality indicators of some varieties was determined. A different reaction of varieties in terms of quality indicators, depending on the investigated factors was revealed. The variation was very low for test weight, water absorption ability of flour, crumb porosity. Strong variation was observed for flour strength after sunflower and soybean as preceding crops, alveograph configuration ratio after sunflower and soybean, index of elasticity dough after corn, valorimetric value after mustard, dough dilution degree after green manure, sunflower, corn and especially after mustard and soybeans. The varieties, which on average for 2016/17–2018/19 reliably exceeded the standard both in individual indicators and in general in terms of physical indicators of grain and flour quality and dough rheological properties. GYT biplot analysis identified the genotypes ‘MIP Vidznaka’ and ‘MIP Assol’ with a more optimal combination of increased yield and a complex of quality indicators in terms of different years, preceding crops and sowing dates. Some varieties, namely, ‘Estafeta myronivs’ka’, ‘Trudivnytsia myronivs’ka’, ‘MIP Valensiia’, ‘MIP Yuvileina’, ‘Balada myronivs’ka’, ‘Vezha myronivs’ka’ were inferior to them, but were significantly superior the others. Conclusions. The selected by quality indicators varieties as genetic sources can be used in breeding process. A more stable level of yield and quality indicators at different sowing dates after different preceding crops should be expected for growing varieties ‘MIP Vidznaka’, ‘MIP Assol’, as well as ‘Estafeta myronivs’ka’, ‘Trudivnytsia myronivs’ka’, ‘MIP Valensiia’, ‘MIP Yuvileina’, ‘Balada myronivs’ka’, ‘Vezha myronivs’ka’. The peculiarities obtained in the research should be taken into account when evaluating and differentiating genotypes in breeding process, as well as developing basic elements of technology for growing the varieties of winter bread wheat.
Mostrar más [+] Menos [-]Differentiation and identification of winter bread wheat verieties according to a complex of baking quality indicators | Диференціювання та виокремлення сортів пшениці м’якої озимої за комплексом показників хлібопекарської якості Texto completo
2021
Demydov, O. A. | Hudzenko, V. M. | Pravdziva, I. V.
Purpose. Reveal the features of the formation of a quality indicator complex in winter bread wheat depending on the growing seasons, preceding crops and sowing dates, as well as differentiate and identify genotypes with high and stable levels of manifestation. Methods. Field, laboratory, statistical. Results. A different share of the influence of the year conditions, the preceding crop, the sowing date and their interactions on the quality indicators of some varieties was determined. A different reaction of varieties in terms of quality indicators, depending on the investigated factors was revealed. The variation was very low for test weight, water absorption ability of flour, crumb porosity. Strong variation was observed for flour strength after sunflower and soybean as preceding crops, alveograph configuration ratio after sunflower and soybean, index of elasticity dough after corn, valorimetric value after mustard, dough dilution degree after green manure, sunflower, corn and especially after mustard and soybeans. The varieties, which on average for 2016/17–2018/19 reliably exceeded the standard both in individual indicators and in general in terms of physical indicators of grain and flour quality and dough rheological properties. GYT biplot analysis identified the genotypes ‘MIP Vidznaka’ and ‘MIP Assol’ with a more optimal combination of increased yield and a complex of quality indicators in terms of different years, preceding crops and sowing dates. Some varieties, namely, ‘Estafeta myronivs’ka’, ‘Trudivnytsia myronivs’ka’, ‘MIP Valensiia’, ‘MIP Yuvileina’, ‘Balada myronivs’ka’, ‘Vezha myronivs’ka’ were inferior to them, but were significantly superior the others. Conclusions. The selected by quality indicators varieties as genetic sources can be used in breeding process. A more stable level of yield and quality indicators at different sowing dates after different preceding crops should be expected for growing varieties ‘MIP Vidznaka’, ‘MIP Assol’, as well as ‘Estafeta myronivs’ka’, ‘Trudivnytsia myronivs’ka’, ‘MIP Valensiia’, ‘MIP Yuvileina’, ‘Balada myronivs’ka’, ‘Vezha myronivs’ka’. The peculiarities obtained in the research should be taken into account when evaluating and differentiating genotypes in breeding process, as well as developing basic elements of technology for growing the varieties of winter bread wheat. | Мета. Виявити особливості формування комплексу показників якості пшениці м’якої озимої залежно від умов року, попередників і строків сівби, а також диференціювати й виділити сорти з підвищеним та стабільним їх рівнем прояву. Методи. Польові, лабораторні, статистичні. Результати. Установлено різну частку впливу умов року, попередника, строку сівби та їхньої взаємодій на показники якості деяких сортів. Виявлено різну реакцію сортів за показниками якості залежно від досліджених чинників. Низьким був коефіцієнт варіації за показниками натури зерна, водопоглинальної здатності борошна, пористості м’якуша. Високу варіабельність виявлено для сили борошна після попередників соняшник і соя; конфігурації альвеограми після соняшника та сої; індексу еластичності тіста після кукурудзи; валориметричної оцінки після гірчиці; ступеня розрідження тіста після сидерального пару, соняшнику, кукурудзи й особливо після гірчиці та сої. Виділено сорти, які в середньому за 2016/17–2018/19 рр. достовірно переважали стандарт як за окремими, так і низкою фізичних показників якості зерна й борошна та реологічними властивостями тіста. GYT biplot аналізом виділено сорти ‘МІП Відзнака’ і ‘МІП Ассоль’ з оптимальнішим поєднанням підвищеного рівня врожайності та комплексу показників якості у розрізі різних років, попередників та строків сівби. Дещо поступались їм, але відчутно переважали решту, сорти ‘Естафета миронівська’, ‘Трудівниця миронівська’, ‘МІП Валенсія’, ‘МІП Ювілейна’, ‘Балада миронівська’, ‘Вежа миронівська’. Висновки. Виділені за показниками якості сорти, можуть бути використані як генетичні джерела в селекційному процесі. Стабільніший рівень прояву врожайності та показників якості за різних строків сівби після різних попередників слід очікувати за вирощування сортів ‘МІП Відзнака’, ‘МІП Ассоль’, а також ‘Естафета миронівська’, ‘Трудівниця миронівська’, ‘МІП Валенсія’, ‘МІП Ювілейна’, ‘Балада миронівська’, ‘Вежа миронівська’. Виявлені особливості слід ураховувати під час оцінювання та диференціювання генотипів у селекційному процесі, а також розроблення базових елементів технології вирощування сортів пшениці м’якої озимої.
Mostrar más [+] Menos [-]Breeding of industrial hemp with a high content of cannabigerol by the case of ‘Vik 2020’ cultivar Texto completo
2021
С. В. Міщенко | І. М. Лайко | Г. І. Кириченко
Breeding of industrial hemp with a high content of cannabigerol by the case of ‘Vik 2020’ cultivar Texto completo
2021
С. В. Міщенко | І. М. Лайко | Г. І. Кириченко
To create an industrial hemp variety of the Central European ecological and geographical type with a high cannabigerol content and universal application. Methods. Breeding (self-pollination, creation of artificial populations, selection), field, biochemical (thin-layer and gas-liquid chromatography of cannabinoid compounds), instrumental and technological assessment of fibre quality, and statistical methods. Results. Variety ‘Vik 2020’ was obtained as a result of creation of artificial populations. The plants are characterized by higher content of cannabigerol (1.034 ± 0.0323%), and almost zero of other secondary metabolites, such as cannabidivarin, cannabidiol, cannabichromene and psychotropic tetrahydrocannabinol (0.003 ± 0.0011; 0.018 ± 0.0080; 0.012 ± 0.0027, and 0.005 ± 0.0012%, respectively). The t rait of cannabigerol content is quite stable within the population and is not correlated with the trait of tetrahydrocannabinol content (r = -0.23). TLC showed that cannabigerol accumulated mainly in the form of cannabigerolic acid and to a lesser extent as a neutral compound, which is consistent with the theory that this substance is a precursor for the synthesis of other cannabinoids. According to the results of the competitive variety test, when growing to obtain fibre and seeds, the variety features short height, specifically significantly lower total (206.4 cm) and technical stem length (135.6 cm) compared to the standard variety, significantly higher inflorescence length (70.8 cm), which determine the formation of the significant yield of biomass suitable for pharmaceutical use and high seed yield (0.98 t/ha). The yield of total fibre was the same as in the standard variety (29.0%), but its quality and technological value for primary processing were higher. The variety had a homogeneous sex structure, resistance to bioltic and abiotic environmental factors. Plants reached biological maturity in 116 days (BBCH 89). This cultivar is recommended for obtaining seeds, quality fiber and potentially cannabigerol (on condition of changes in legislation). Conclusions. The efficiency of using self-pollinating lines in breeding with their subsequent combining into a synthetic population and improving selection was proved by the case of a new variety of industrial hemp ‘Vik 2020’, characterized by an increased content of cannabigerol and the absence of psychotropic properties
Mostrar más [+] Menos [-]Breeding of industrial hemp with a high content of cannabigerol by the case of ‘Vik 2020’ cultivar Texto completo
2021
Міщенко, С. В | Лайко, І. М | Кириченко, Г. І
To create an industrial hemp variety of the Central European ecological and geographical type with a high cannabigerol content and universal application. Methods. Breeding (self-pollination, creation of artificial populations, selection), field, biochemical (thin-layer and gas-liquid chromatography of cannabinoid compounds), instrumental and technological assessment of fibre quality, and statistical methods. Results. Variety ‘Vik 2020’ was obtained as a result of creation of artificial populations. The plants are characterized by higher content of cannabigerol (1.034 ± 0.0323%), and almost zero of other secondary metabolites, such as cannabidivarin, cannabidiol, cannabichromene and psychotropic tetrahydrocannabinol (0.003 ± 0.0011; 0.018 ± 0.0080; 0.012 ± 0.0027, and 0.005 ± 0.0012%, respectively). The t rait of cannabigerol content is quite stable within the population and is not correlated with the trait of tetrahydrocannabinol content (r = -0.23). TLC showed that cannabigerol accumulated mainly in the form of cannabigerolic acid and to a lesser extent as a neutral compound, which is consistent with the theory that this substance is a precursor for the synthesis of other cannabinoids. According to the results of the competitive variety test, when growing to obtain fibre and seeds, the variety features short height, specifically significantly lower total (206.4 cm) and technical stem length (135.6 cm) compared to the standard variety, significantly higher inflorescence length (70.8 cm), which determine the formation of the significant yield of biomass suitable for pharmaceutical use and high seed yield (0.98 t/ha). The yield of total fibre was the same as in the standard variety (29.0%), but its quality and technological value for primary processing were higher. The variety had a homogeneous sex structure, resistance to bioltic and abiotic environmental factors. Plants reached biological maturity in 116 days (BBCH 89). This cultivar is recommended for obtaining seeds, quality fiber and potentially cannabigerol (on condition of changes in legislation). Conclusions. The efficiency of using self-pollinating lines in breeding with their subsequent combining into a synthetic population and improving selection was proved by the case of a new variety of industrial hemp ‘Vik 2020’, characterized by an increased content of cannabigerol and the absence of psychotropic properties
Mostrar más [+] Menos [-]???????? ??????????? ???????? ?? ?????????? ??????? ???????????? ?? ???????? ????? ???? 2020 | Breeding of industrial hemp with a high content of cannabigerol by the case of ?Vik 2020? cultivar Texto completo
???????, Mishchenko, Serhii, ?. ?. | ?????, Laiko, Iryna, ?. ?. | ?????????, Kyrychenko, Hanna, ?. ?.
To create an industrial hemp variety of the Central European ecological and geographical type with a high cannabigerol content and universal application.Methods. Breeding (self-pollination, creation of artificial populations, selection), field, biochemical (thin-layer and gas-liquid chromatography of cannabinoid compounds), instrumental and technological assessment of fibre quality, and statistical methods.Results. Variety ?Vik 2020? was obtained as a result of creation of artificial populations. The plants are characterized by higher content of cannabigerol (1.034 ? 0.0323%), and almost zero of other secondary metabolites, such as cannabidivarin, cannabidiol, cannabichromene and psychotropic tetrahydrocannabinol (0.003 ? 0.0011; 0.018 ? 0.0080; 0.012 ? 0.0027, and 0.005 ? 0.0012%, respectively). The t rait of cannabigerol content is quite stable within the population and is not correlated with the trait of tetrahydrocannabinol content (r = -0.23). TLC showed that cannabigerol accumulated mainly in the form of cannabigerolic acid and to a lesser extent as a neutral compound, which is consistent with the theory that this substance is a precursor for the synthesis of other cannabinoids. According to the results of the competitive variety test, when growing to obtain fibre and seeds, the variety features short height, specifically significantly lower total (206.4 cm) and technical stem length (135.6 cm) compared to the standard variety, significantly higher inflorescence length (70.8 cm), which determine the formation of the significant yield of biomass suitable for pharmaceutical use and high seed yield (0.98 t/ha). The yield of total fibre was the same as in the standard variety (29.0%), but its quality and technological value for primary processing were higher. The variety had a homogeneous sex structure, resistance to bioltic and abiotic environmental factors. Plants reached biological maturity in 116 days (BBCH 89). This cultivar is recommended for obtaining seeds, quality fiber and potentially cannabigerol (on condition of changes in legislation).Conclusions. The efficiency of using self-pollinating lines in breeding with their subsequent combining into a synthetic population and improving selection was proved by the case of a new variety of industrial hemp ?Vik 2020?, characterized by an increased content of cannabigerol and the absence of psychotropic properties | ???????? ???? ??????????? ???????? ????????????????????? ???????-????????????? ???? ??????????????? ??????? ?????????????? ???????????? ? ??????????? ??????? ????????????.??????. ?????????? (?????????????, ????????? ??????????? ?????????, ?????), ???????, ?????????? (??????????? ?? ??????????? ????????????? ????????????? ??????), ???????????????-???????????? ?????????? ?????? ???????, ???????????.??????????. ? ?????????? ??????????? ???????? ???????? ???? ?????2020?, ??????? ????? ???????????????? ?????????? ??????? ???????????? (1,034???0,0323%), ?? ??? ????? ??????????? ????????????, ? ????? ?????? ??????????? ????? ????????? ??????????? ? ??????????????, ???????????, ????????????? ? ????????????? ???????????????????? (0,003???0,0011; 0,018???0,0080; 0,012???0,0027 ? 0,005???0,0012% ??????????). ?????? ?????? ???????????? ? ?????? ?????????? ? ????? ????????? ? ?? ??????????????? ? ??????? ?????? ???????????????????? (r =?-0,23). ?????????? ???????????? ????????????? ????????, ?? ??????????? ????????????? ????????? ? ????? ??????????????? ??????? ? ?????? ????? ?? ?????????? ???????, ?? ?????? ???????????? ? ???????, ?????? ? ???? ?? ???????? ? ???????????? ??? ??????? ????? ????????????. ?? ???????????? ??????????? ????????????????? ? ???? ??????????? ??? ????????? ??????? ? ??????? ???? ??????? ??????????????, ? ???? ??????? ????? ????????? ?? ??????-?????????? ????????? ????????? (206,4???) ? ????????? ??????? ??????? (135,6 ??), ? ??????? ?????? ??????????? ??????? ???????? (70,8 ??), ??? ???????????? ?????????? ??????? ???????, ????????? ??? ???????????? ?? ????????????? ????, ?? ??????????? ??????? (0,98??/??). ????? ?????????? ??????? ????????, ?? ? ? ?????-?????????, 29,0%, ??? ???? ????????????????? ????? ?????? ? ????????????? ???????? ?? ?????????? ????????????. ???? ??? ????????? ??????? ?????????, ????????? ?? ???- ?? ?????????? ???????? ??????????. ???????????? ?????? ?? ??????????? ????????? (BBCH 89) ??116 ???. ?????????????? ??? ??????????? ? ????? ????????? ???????, ???????? ??????? ? ?????????? ? ???????????? (?? ????? ????? ?????????????).????????. ???????? ???????????? ????????? ?? ???????????? ??????? ????????????? ????? ?? ????????? ?? ??????????? ? ?????????? ????????? ? ?????????????? ??????? ?? ???????? ?????? ????? ??????????? ???????? ???? 2020?, ?? ???????????????? ?????????? ??????? ???????????? ? ??????????? ???????????? ????????????.
Mostrar más [+] Menos [-]Breeding of industrial hemp with a high content of cannabigerol by the case of ‘Vik 2020’ cultivar | Селекція промислових конопель із підвищеним умістом канабігеролу на прикладі сорту ‘Вік 2020 Texto completo
2021
Mishchenko, Serhii | Laiko, Iryna | Kyrychenko, Hanna
To create an industrial hemp variety of the Central European ecological and geographical type with a high cannabigerol content and universal application. Methods. Breeding (self-pollination, creation of artificial populations, selection), field, biochemical (thin-layer and gas-liquid chromatography of cannabinoid compounds), instrumental and technological assessment of fibre quality, and statistical methods. Results. Variety ‘Vik 2020’ was obtained as a result of creation of artificial populations. The plants are characterized by higher content of cannabigerol (1.034 ± 0.0323%), and almost zero of other secondary metabolites, such as cannabidivarin, cannabidiol, cannabichromene and psychotropic tetrahydrocannabinol (0.003 ± 0.0011; 0.018 ± 0.0080; 0.012 ± 0.0027, and 0.005 ± 0.0012%, respectively). The t rait of cannabigerol content is quite stable within the population and is not correlated with the trait of tetrahydrocannabinol content (r = -0.23). TLC showed that cannabigerol accumulated mainly in the form of cannabigerolic acid and to a lesser extent as a neutral compound, which is consistent with the theory that this substance is a precursor for the synthesis of other cannabinoids. According to the results of the competitive variety test, when growing to obtain fibre and seeds, the variety features short height, specifically significantly lower total (206.4 cm) and technical stem length (135.6 cm) compared to the standard variety, significantly higher inflorescence length (70.8 cm), which determine the formation of the significant yield of biomass suitable for pharmaceutical use and high seed yield (0.98 t/ha). The yield of total fibre was the same as in the standard variety (29.0%), but its quality and technological value for primary processing were higher. The variety had a homogeneous sex structure, resistance to bioltic and abiotic environmental factors. Plants reached biological maturity in 116 days (BBCH 89). This cultivar is recommended for obtaining seeds, quality fiber and potentially cannabigerol (on condition of changes in legislation). Conclusions. The efficiency of using self-pollinating lines in breeding with their subsequent combining into a synthetic population and improving selection was proved by the case of a new variety of industrial hemp ‘Vik 2020’, characterized by an increased content of cannabigerol and the absence of psychotropic properties | Створити сорт промислових конопель середньоєвропейського еколого-географічного типу універсального напряму господарського використання з підвищеним умістом канабігеролу. Методи. Селекційні (самозапилення, створення синтетичних популяцій, добір), польові, біохімічні (тонкошарова та газорідинна хроматографія канабіноїдних сполук), інструментально-технологічне оцінювання якості волокна, статистичні. Результати. У результаті синтетичної селекції створено сорт ‘Вік 2020’, рослини якого характеризуються підвищеним умістом канабігеролу (1,034 ± 0,0323%), що має низку лікувальних властивостей, і майже повною відсутністю інших вторинних метаболітів – канабідіваріну, канабідіолу, канабіхромену і психотропного тетрагідроканабінолу (0,003 ± 0,0011; 0,018 ± 0,0080; 0,012 ± 0,0027 і 0,005 ± 0,0012% відповідно). Ознака вмісту канабігеролу є досить стабільною в межах популяції і не взаємопов’язана з ознакою вмісту тетрагідроканабінолу (r = -0,23). Проведення тонкошарової хроматографії показало, що канабігерол накопичувався переважно у формі канабігеролової кислоти і меншою мірою як нейтральна сполука, що цілком узгоджується з теорією, згідно з якою ця речовина є попередником для синтезу інших канабіноїдів. За результатами конкурсного сортовипробування в разі вирощування для отримання волокна й насіння сорт поєднує низькорослість, а саме істотно нижчі порівняно із сортом-стандартом показники загальної (206,4 см) і технічної довжини стебла (135,6 см), з істотно вищими показниками довжини суцвіття (70,8 см), які детермінують формування значної біомаси, придатної для використання на фармацевтичні цілі, та врожайності насіння (0,98 т/га). Вихід загального волокна становив, як і в сорту-стандарту, 29,0%, але воно характеризувалося вищою якістю й технологічною цінністю за первинного перероблення. Сорт мав однорідну статеву структуру, стійкість до біо- та абіотичних чинників середовища. Вегетаційний період до біологічної стиглості (BBCH 89) – 116 діб. Рекомендований для вирощування з метою отримання насіння, якісного волокна й потенційно – канабігеролу (за умови зміни законодавства). Висновки. Доведено ефективність залучення до селекційного процесу самозапилених ліній із подальшим їх об’єднанням у синтетичну популяцію і поліпшувальним добором на прикладі нового сорту промислових конопель ‘Вік 2020’, що характеризується підвищеним умістом канабігеролу й відсутністю психотропних властивостей.
Mostrar más [+] Menos [-]Morphometric and biochemical features of different Bunias orientalis L. genotypes in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine Texto completo
2021
O. M. Vergun | D. B. Rakhmetov | O. V. Shymanska | S. O. Rakhmetova | O. P. Bondarchuk | V. V. Fishchenko
Morphometric and biochemical features of different Bunias orientalis L. genotypes in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine Texto completo
2021
O. M. Vergun | D. B. Rakhmetov | O. V. Shymanska | S. O. Rakhmetova | O. P. Bondarchuk | V. V. Fishchenko
Purpose. Determine a number of morphometric and biochemical parameters of various genotypes of Bunias orientalis L. in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine (NBG). Methods. Plant samples of B. orientalis (6 genotypes created in the NBG) were examined during the flowering stage. Determination of dry matter, ash, calcium was carried out according to Hrytsaienko et al. (2003), phosphorus according to Pochinok (1976), sugars, ascorbic acid and lipids were determined according to Krishchenko (1983), b-carotene according to Pleshkov (1985). The energy value of plants was determined using an IKA C-200 calorimeter. The obtained results were analysed statistically. Results. The height of plants varied from 140.9 (Genotype 1) to 157.5 (Genotype 5) cm, stem diameter from 11.67 (Genotype 1) to 16.1 (Genotype 6) mm, the number of internodes from 18.7 (Genotype 1) to 25.7 (Genotype 6), the number of leaves on a stem from 14.11 (Genotype 1) to 21.8 (Genotype 5), leaf lamina length from 14.2 (Genotype 1) to 23.45 (Genotype 6) cm, leaf lamina width from 6.34 (Genotype 1) to 14.5 (Genotype 4) cm, inflorescence length from 27.4 (Genotype 1) to 45.4 (Genotype 3) cm, inflorescence width from 2.32 (Genotype 1) to 4.92 (Genotype 3) cm, and the number of stems from 2.55 (Genotype 2) to 5.33 (Genotype 1). The study of the content of structural and functional compounds and nutrients at the flowering stage showed that the dry matter content was in the range of 13.58–16.00%, sugars 5.07–8.86%, titratable acidity 3.28–4.25%, lipids 3.33–6.61%, ascorbic acid 382.83–693.82 mg%, b-carotene 0.94–3.48 mg%, ash 6.79–9.2%, calcium 1.00–2.44%, phosphorus 1.61–2.67% and energy value 3337.0–3498.0 cal/g. Conclusions. It was revealed that samples of various genotypes of B. orientalis are a valuable source of nutrients at the flowering stage. The biochemical composition of plants depended on the genotype and stage of growth. Results of the morphometric study showed variability of investigated parameters. The obtained data can be used to predict and evaluate the results of introduction and breeding studies with B. orientalis genotypes as promising crops in Ukraine.
Mostrar más [+] Menos [-]Morphometric and biochemical features of different Bunias orientalis L. genotypes in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine | Морфометричні та біохімічні особливості різних генотипів рослин Bunais orientalis L. у Національному ботанічному саду імені М. М. Гришка НАН України Texto completo
2021
Vergun, O. M. | Rakhmetov, D. B. | Shymanska, O. V. | Rakhmetova, S. O. | Bondarchuk, O. P. | Fishchenko, V. V.
Purpose. Determine a number of morphometric and biochemical parameters of various genotypes of Bunias orientalis L. in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine (NBG). Methods. Plant samples of B. orientalis (6 genotypes created in the NBG) were examined during the flowering stage. Determination of dry matter, ash, calcium was carried out according to Hrytsaienko et al. (2003), phosphorus according to Pochinok (1976), sugars, ascorbic acid and lipids were determined according to Krishchenko (1983), b-carotene according to Pleshkov (1985). The energy value of plants was determined using an IKA C-200 calorimeter. The obtained results were analysed statistically. Results. The height of plants varied from 140.9 (Genotype 1) to 157.5 (Genotype 5) cm, stem diameter from 11.67 (Genotype 1) to 16.1 (Genotype 6) mm, the number of internodes from 18.7 (Genotype 1) to 25.7 (Genotype 6), the number of leaves on a stem from 14.11 (Genotype 1) to 21.8 (Genotype 5), leaf lamina length from 14.2 (Genotype 1) to 23.45 (Genotype 6) cm, leaf lamina width from 6.34 (Genotype 1) to 14.5 (Genotype 4) cm, inflorescence length from 27.4 (Genotype 1) to 45.4 (Genotype 3) cm, inflorescence width from 2.32 (Genotype 1) to 4.92 (Genotype 3) cm, and the number of stems from 2.55 (Genotype 2) to 5.33 (Genotype 1). The study of the content of structural and functional compounds and nutrients at the flowering stage showed that the dry matter content was in the range of 13.58–16.00%, sugars 5.07–8.86%, titratable acidity 3.28–4.25%, lipids 3.33–6.61%, ascorbic acid 382.83–693.82 mg%, b-carotene 0.94–3.48 mg%, ash 6.79–9.2%, calcium 1.00–2.44%, phosphorus 1.61–2.67% and energy value 3337.0–3498.0 cal/g. Conclusions. It was revealed that samples of various genotypes of B. orientalis are a valuable source of nutrients at the flowering stage. The biochemical composition of plants depended on the genotype and stage of growth. Results of the morphometric study showed variability of investigated parameters. The obtained data can be used to predict and evaluate the results of introduction and breeding studies with B. orientalis genotypes as promising crops in Ukraine. | Мета. Визначити деякі морфометричні та біохімічні параметри генотипів Bunias orientalis L. у Національному ботанічному саду імені М. М. Гришка НАН України (НБС). Методи. Рослинну сировину B. orientalis досліджували в період квітування (6 генотипів власної селекції НБС). Визначення сухої речовини, золи, кальцію проводили згідно з Грицаєнко та ін. (2003), фосфор – згідно з Починком (1976), цукри, аскорбінову кислоту та ліпіди – згідно з Крищенком (1983), b-каротин – згідно з Плєшковим (1985). Енергетична цінність визначалась на калориметрі IKA C-200. Дані проаналізовано статистично. Результати. Висота рослин становила від 140,9 (генотип 1) до 157,5 (генотип 5) см, діаметр стебла – від 11,67 (генотип 1) до 16,1 (генотип 6) мм, кількість міжвузлів – від 18,7 (генотип 1) до 25,7 (генотип 6) шт., кількість листків на стеблі – від 14,11 (генотип 1) до 21,8 (генотип 5) шт., довжина листкової пластинки – від 14,2 (генотип 1) до 23,45 (генотип 6) см, ширина листкової пластинки – від 6,34 (генотип 1) до 14,5 (генотип 4) см, довжина суцвіття – від 27,4 (генотип 1) до 45,4 (генотип 3) см, ширина суцвіття – від 2,32 (генотип 1) до 4,92 (генотип 3) см та кількість стебел – від 2,55 (генотип 2) до 5,33 (генотип 1) шт. Дослідження поживних речовин у період квітування показало, що вміст сухої речовини становив 13,58–16,00%, цукрів – 5,07–8,86%, титрована кислотність – 3,28–4,25%, ліпідів – 3,33–6,61%, аскорбінової кислоти – 382,83–693,82 мг%, b-каротину – 0,94–3,48 мг%, золи – 6,79–9,2%, кальцію – 1,00–2,44%, фосфору – 1,61–2,67%, енергетична цінність – 3337,0–3498,0 кал/г. Висновки. Рослинна сировина генотипів B. orientalis – цінне джерело поживних речовин у період квітування. Біохімічний склад рослин залежить від генотипу та фази розвитку. У результаті морфометричних вимірювань показано варіабельність досліджуваних параметрів. Отримані дані можуть бути використані для прогнозування та оцінювання результатів інтродукційної і селекційної роботи з генотипами B. orientalis як перспективних культур в Україні.
Mostrar más [+] Menos [-]Morphometric and biochemical features of different Bunias orientalis L. genotypes in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine Texto completo
2021
Vergun, O. M. | Rakhmetov, D. B. | Shymanska, O. V. | Rakhmetova, S. O. | Bondarchuk, O. P. | Fishchenko, V. V.
Purpose. Determine a number of morphometric and biochemical parameters of various genotypes of Bunias orientalis L. in the M. M. Gryshko National Botanical Garden of the NAS of Ukraine (NBG). Methods. Plant samples of B. orientalis (6 genotypes created in the NBG) were examined during the flowering stage. Determination of dry matter, ash, calcium was carried out according to Hrytsaienko et al. (2003), phosphorus according to Pochinok (1976), sugars, ascorbic acid and lipids were determined according to Krishchenko (1983), b-carotene according to Pleshkov (1985). The energy value of plants was determined using an IKA C-200 calorimeter. The obtained results were analysed statistically. Results. The height of plants varied from 140.9 (Genotype 1) to 157.5 (Genotype 5) cm, stem diameter from 11.67 (Genotype 1) to 16.1 (Genotype 6) mm, the number of internodes from 18.7 (Genotype 1) to 25.7 (Genotype 6), the number of leaves on a stem from 14.11 (Genotype 1) to 21.8 (Genotype 5), leaf lamina length from 14.2 (Genotype 1) to 23.45 (Genotype 6) cm, leaf lamina width from 6.34 (Genotype 1) to 14.5 (Genotype 4) cm, inflorescence length from 27.4 (Genotype 1) to 45.4 (Genotype 3) cm, inflorescence width from 2.32 (Genotype 1) to 4.92 (Genotype 3) cm, and the number of stems from 2.55 (Genotype 2) to 5.33 (Genotype 1). The study of the content of structural and functional compounds and nutrients at the flowering stage showed that the dry matter content was in the range of 13.58–16.00%, sugars 5.07–8.86%, titratable acidity 3.28–4.25%, lipids 3.33–6.61%, ascorbic acid 382.83–693.82 mg%, b-carotene 0.94–3.48 mg%, ash 6.79–9.2%, calcium 1.00–2.44%, phosphorus 1.61–2.67% and energy value 3337.0–3498.0 cal/g. Conclusions. It was revealed that samples of various genotypes of B. orientalis are a valuable source of nutrients at the flowering stage. The biochemical composition of plants depended on the genotype and stage of growth. Results of the morphometric study showed variability of investigated parameters. The obtained data can be used to predict and evaluate the results of introduction and breeding studies with B. orientalis genotypes as promising crops in Ukraine.
Mostrar más [+] Menos [-]Prospects for the introduction of ornamental plants of the genus Sage (Salvia L.) to the Forest-Steppe of Ukraine Texto completo
2021
Перебойчук, О. П | Машковська, С. П
Prospects for the introduction of ornamental plants of the genus Sage (Salvia L.) to the Forest-Steppe of Ukraine Texto completo
2021
Перебойчук, О. П | Машковська, С. П
Purpose. Analysis of species and varietal diversity of the genus Salvia L. cultivated flora of the world, including Ukraine; prognostic assessment and determination of the directions of ornamental representatives of the genus introduction to the conditions of the Forest-steppe of Ukraine. Methods. Analysis and synthesis, comparison and generalization of information data, introduction forecast. Results. The modern assortment of the genus Salvia is presented in quantitative, taxonomic, arealogical and ecological-cenotic terms. Belonging of the species of the genus to 6 main centers of origin of cultivated plants was determined, and a significant diversity of life forms (nanophanerophytes, microphanerophytes, hamephites, hemicryptophytes, theophytes), naturally formed under the influence of factors determined by different geographical and ecological-phytocenotic conditions of plant growth was reflected. Species assortment of the genus Salvia from the collection fund of the M. M. Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine was analyzed in comparison with the collections of other Ukrainian botanical gardens. The list of decorative species of the collection, found in the natural flora of Ukraine, was given. Three groups of species have been identified by origin, what determines the conditions for plant cultivation in the Forest-Steppe of Ukraine. In terms of taxonomic structure, introduced sage species belong to eight (according to Bentham, 1833) out of twelve sections, which represent biomorphological diversity and confirm the high introduction potential of these plants. The species and interspecific hybrids most fully used in breeding work and represented by a significant varietal diversity were distinguished, as well as the sage assortment of the collection of ornamental plants of the NBG was presented. Conclusions. It has been revealed that the species and varietal diversity of the genus Salvia of the world cultivated flora has a significant introduction potential for the Forest-Steppe zone of Ukraine. It was determined that the main base for the introduction of the ornamental species of the genus Salvia in Ukraine is the collection of the M. M. Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine. The main directions of further introduction and breeding work with representatives of the genus Salvia in the Forest-Steppe conditions of Ukraine were highlighted.
Mostrar más [+] Menos [-]Prospects for the introduction of ornamental plants of the genus Sage (Salvia L.) to the Forest-Steppe of Ukraine | ??????????? ??????????? ???????????? ?????? ???? ?????? (Salvia L.) ? ???????? ??????? Texto completo
??????????, Pereboichuk, Oxana, ?. ?. | ??????????, Mashkovska, Svitlana, ?. ?.
Purpose. Analysis of species and varietal diversity of the genus Salvia L. cultivated flora of the world, including Ukraine; prognostic assessment and determination of the directions of ornamental representatives of the genus introduction to the conditions of the Forest-steppe of Ukraine.Methods. Analysis and synthesis, comparison and generalization of information data, introduction forecast.Results. The modern assortment of the genus Salvia is presented in quantitative, taxonomic, arealogical and ecological-cenotic terms. Belonging of the species of the genus to 6 main centers of origin of cultivated plants was determined, and a significant diversity of life forms (nanophanerophytes, microphanerophytes, hamephites, hemicryptophytes, theophytes), naturally formed under the influence of factors determined by different geographical and ecological-phytocenotic conditions of plant growth was reflected. Species assortment of the genus Salvia from the collection fund of the M.?M.?Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine was analyzed in comparison with the collections of other Ukrainian botanical gardens. The list of decorative species of the collection, found in the natural flora of Ukraine, was given. Three groups of species have been identified by origin, what determines the conditions for plant cultivation in the Forest-Steppe of Ukraine. In terms of taxonomic structure, introduced sage species belong to eight (according to Bentham, 1833) out of twelve sections, which represent biomorphological diversity and confirm the high introduction potential of these plants.? The species and interspecific hybrids most fully used in breeding work and represented by a significant varietal diversity were distinguished, as well as the sage assortment of the collection of ornamental plants of the NBG was presented.Conclusions. It has been revealed that the species and varietal diversity of the genus Salvia of the world cultivated flora has a significant introduction potential for the Forest-Steppe zone of Ukraine. It was determined that the main base for the introduction of the ornamental species of the genus Salvia in Ukraine is the collection of the M.?M.?Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine. The main directions of further introduction and breeding work with representatives of the genus Salvia in the Forest-Steppe conditions of Ukraine were highlighted. | ????. ?????? ???????? ?? ????????? ???????????? ???? Salvia L. ????????????? ????? ?????, ??????? ? ???????; ???????????? ?????? ?? ?????????? ???????? ??????????? ???????????? ????????????? ???? ? ????? ????????? ???????.??????. ?????? ? ??????, ?????????? ?? ???????????? ????????????? ?????, ?????????????? ???????. ???????????????????????????????????. ???????????? ???????? ?????????? ???? Salvia ? ???????????, ??????????????, ????????????? ?? ???????-??????????? ??????????. ????????? ????????????? ????? ???? ?? ????? ???????? ??????? ?????????? ?????????? ??????, ? ????? ??????????? ?????? ????????? ???????? ???? (??????????????, ???????????????, ????????, ??????????????, ????????), ??? ??????????? ???????????? ??? ??????? ????????, ?? ??????????? ??????? ????????????? ?? ???????-??????????????? ??????? ????????? ??????. ?????????????? ??????? ?????????? ???? Salvia ???????????? ????? ????????????? ??????????? ???? ????? ?. ?. ?????? ??? ??????? (???) ????????? ? ?????????? ????? ?????????? ????? ???????. ???????? ??????? ???????????? ????? ????????, ?? ???????????? ? ????????? ????? ???????. ???????? ??? ????? ????? ?? ???????????, ??? ? ?????????? ????? ????????????? ?????? ? ????????? ???????. ?? ????????????? ?????????? ????????????? ???? ?????? ???????? ?? ?????? (?????? ? Bentham, 1833) ? ?????????? ??????, ??? ????????????? ??????????????? ???????????? ?? ????????????? ??????? ?????????????? ????????? ??? ??????. ???????? ???? ? ????????? ???????, ??? ???????? ??????? ? ??????????? ?????? ?? ?????????????? ??????? ???????? ??????????, ? ????? ???????????? ????????? ?????? ???????? ??????????-???????????? ?????? ???.????????. ???????????, ?? ?????? ?? ??????? ???????????? ???? Salvia ????????????? ????? ????? ??? ??????? ?????????????? ????????? ??? ???????????? ???? ???????. ?????????, ?? ???????? ????? ??? ??????????????? ???????? ???????????? ????? ???? Sal?via ? ??????? ? ???????? ????????????? ??????????? ????? ????? ?.??.??????? ??? ???????. ??????????? ??????? ??????? ???? ????????? ?????????????? ?? ????????????? ?????? ? ?????????????? ???? Salvia ? ?????? ????????? ???????.
Mostrar más [+] Menos [-]Prospects for the introduction of ornamental plants of the genus Sage (Salvia L.) to the Forest-Steppe of Ukraine Texto completo
2021
О. П. Перебойчук | С. П. Машковська
Purpose. Analysis of species and varietal diversity of the genus Salvia L. cultivated flora of the world, including Ukraine; prognostic assessment and determination of the directions of ornamental representatives of the genus introduction to the conditions of the Forest-steppe of Ukraine. Methods. Analysis and synthesis, comparison and generalization of information data, introduction forecast. Results. The modern assortment of the genus Salvia is presented in quantitative, taxonomic, arealogical and ecological-cenotic terms. Belonging of the species of the genus to 6 main centers of origin of cultivated plants was determined, and a significant diversity of life forms (nanophanerophytes, microphanerophytes, hamephites, hemicryptophytes, theophytes), naturally formed under the influence of factors determined by different geographical and ecological-phytocenotic conditions of plant growth was reflected. Species assortment of the genus Salvia from the collection fund of the M. M. Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine was analyzed in comparison with the collections of other Ukrainian botanical gardens. The list of decorative species of the collection, found in the natural flora of Ukraine, was given. Three groups of species have been identified by origin, what determines the conditions for plant cultivation in the Forest-Steppe of Ukraine. In terms of taxonomic structure, introduced sage species belong to eight (according to Bentham, 1833) out of twelve sections, which represent biomorphological diversity and confirm the high introduction potential of these plants. The species and interspecific hybrids most fully used in breeding work and represented by a significant varietal diversity were distinguished, as well as the sage assortment of the collection of ornamental plants of the NBG was presented. Conclusions. It has been revealed that the species and varietal diversity of the genus Salvia of the world cultivated flora has a significant introduction potential for the Forest-Steppe zone of Ukraine. It was determined that the main base for the introduction of the ornamental species of the genus Salvia in Ukraine is the collection of the M. M. Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine. The main directions of further introduction and breeding work with representatives of the genus Salvia in the Forest-Steppe conditions of Ukraine were highlighted.
Mostrar más [+] Menos [-]Variability of morphometric traits of seeds of different genotypes of Lycium spp Texto completo
2021
Zhurba, M. Yu | Klymenko, S. V. | Szot, Iwona
Variability of morphometric traits of seeds of different genotypes of Lycium spp Texto completo
2021
Zhurba, M. Yu | Klymenko, S. V. | Szot, Iwona
Purpose. The objective of this study was to evaluate the morphological parameters of Lycium spp. seeds from the collections in M. M. Hryshko National Botanical Garden (NBS) NAS of Ukraine. Methods. Cultivars and varieties of three Lycium species (Lycium barbarum, L. chinense, L. truncatum) were studied in the period from 2016 till 2019. The following morphometric measurments were conducted: seeds weight, seeds length, seeds width and index of seeds shape. Basic statistical analyses were performed using PAST 2.17. Hierarchical cluster analyses of similarity between genotypes were computed on the basis of the Bray-Curtis similarity index. Correlation between traits was determined using the Pearson correlation coefficient. Results. Cultivars and varieties of different species of Lycium varied in weight, shape, and size of seeds. Seed weight varied from 0.54 to 3.54 mg, seed length from 1.90 to 3.06 mm, seed width from 1.43 to 2.53 mm. The shape indexes of seeds were found ranging from 0.73 to 0.80. The analysis of coefficient of variation showed the difference of variability in morphometric characteristics between some Lycium spp. cultivars and varieties. The most variable features: seeds weight (8.51–28.22%) and seeds length (5.07–24.81%) are important parameters for selection. The use of cluster analysis made it possible to establish the similarity between the species of the studied Lycium species. Conclusions. Diagnostic signs by seed morphometry for differentiation of Lycium species were revealed. The analysis of coefficient of variation showed the difference of variability in morphometric characteristics between some Lycium cultivars and varieties. The most variable characteristics of the studied genotypes were seed weight and length, which are important parameters for selection because they determine the pulp content and number of seeds, as well as the ratio of these parameters between them. It is through variability that promising varieties with low seed weight and length can be selected, Due to securing them later vegetatively.
Mostrar más [+] Menos [-]Мінливість морфометричних параметрів насіння різних генотипів Lycium spp. | Variability of morphometric traits of seeds of different genotypes of Lycium spp. Texto completo
Шот, Szot, Iwona, І. | Журба, Zhurba, M. Yu., М. Ю. | Клименко, Klymenko, S. V., С. В.
Purpose. The objective of this study was to evaluate the morphological parameters of Lycium spp. seeds from the collections in M. M. Hryshko National Botanical Garden (NBS) NAS of Ukraine.Methods. Cultivars and varieties of three Lycium species (Lycium barbarum, L. chinense, L. truncatum) were studied in the period from 2016 till 2019. The following morphometric measurments were conducted: seeds weight, seeds length, seeds width and index of seeds shape. Basic statistical analyses were performed using PAST 2.17. Hierarchical cluster analyses of similarity between genotypes were computed on the basis of the Bray-Curtis similarity index. Correlation between traits was determined using the Pearson correlation coefficient.Results. Cultivars and varieties of different species of Lycium varied in weight, shape, and size of seeds. Seed weight varied from 0.54 to 3.54 mg, seed length from 1.90 to 3.06 mm, seed width from 1.43 to 2.53 mm. The shape indexes of seeds were found ranging from 0.73 to 0.80. The analysis of coefficient of variation showed the difference of variability in morphometric characteristics between some Lycium spp. cultivars and varieties. The most variable features: seeds weight (8.51–28.22%) and seeds length (5.07–24.81%) are important parameters for selection. The use of cluster analysis made it possible to establish the similarity between the species of the studied Lycium species.Conclusions. Diagnostic signs by seed morphometry for differentiation of Lycium species were revealed. The analysis of coefficient of variation showed the difference of variability in morphometric characteristics between some Lycium cultivars and varieties. The most variable characteristics of the studied genotypes were seed weight and length, which are important parameters for selection because they determine the pulp content and number of seeds, as well as the ratio of these parameters between them. It is through variability that promising varieties with low seed weight and length can be selected, Due to securing them later vegetatively. | Мета. Оцінити морфометричні показники насіння Lycium spp. колекції Національного ботанічного саду імені М. М. Гришка (НБС) НАН України.Методи. Упродовж 2016–2019 рр. досліджено 21 генотип (10 сортів і 11 форм) трьох видів (Lycium barbarum, L. chinense, L. truncatum). Установлено морфометричні показники насіння (маса, довжина, ширина та індекс форми). Статистичний аналіз виконували за допомогою PAST 2.17. Ієрархічний кластерний аналіз подібності генотипів здійснено за індексом подібності Брей-Кертіса. Наявніть зв’язків між параметрами встановлювали за коефіцієнтом кореляції Пірсона.Результати. Сорти та форми різних видів рослин Lycium варіювали за масою, розміром та формою насіння. Морфометричні параметри насіння були такими: маса – від 0,54 до 3,54 мг, довжина – від 1,90 до 3,06 мм, ширина – від 1,43 до 2,53 мм. Величина індексу форми насіння становила від 0,73 до 0,80. Аналіз коефіцієнта варіації показав різну мінливість морфометричних характеристик сортів та форм різних видів Lycium. Наймінливішою є маса насіння (8,51–28,22%) та його довжина (5,07–24,81%), які є важливими параметрами для селекції. Використання кластерного аналізу дало змогу встановити генетичні зв’язки між сортами й формами Lycium та розподілити їх у два основних кластери.Висновки. Виявлено діагностичні ознаки морфометричних параметрів насіння для ідентифікації видів Lycium. Аналіз коефіцієнта варіації показав мінливість морфометричних характеристик між деякими сортами та формами Lycium. Наймінливішими параметрами досліджуваних генотипів були маса та довжина насіння. Останні є важливими для селекції, оскільки від них залежить уміст м’якушу та кількість насіння, а також співвідношення цих параметрів між ними. Завдяки мінливості можна дібрати перспективні сорти з невеликими масою та довжиною насіння, закріпивши їх потім вегетативно.
Mostrar más [+] Menos [-]Variability of morphometric traits of seeds of different genotypes of Lycium spp. Texto completo
2021
M. Yu. Zhurba | S. V. Klymenko | Iwona Szot
Purpose. The objective of this study was to evaluate the morphological parameters of Lycium spp. seeds from the collections in M. M. Hryshko National Botanical Garden (NBS) NAS of Ukraine. Methods. Cultivars and varieties of three Lycium species (Lycium barbarum, L. chinense, L. truncatum) were studied in the period from 2016 till 2019. The following morphometric measurments were conducted: seeds weight, seeds length, seeds width and index of seeds shape. Basic statistical analyses were performed using PAST 2.17. Hierarchical cluster analyses of similarity between genotypes were computed on the basis of the Bray-Curtis similarity index. Correlation between traits was determined using the Pearson correlation coefficient. Results. Cultivars and varieties of different species of Lycium varied in weight, shape, and size of seeds. Seed weight varied from 0.54 to 3.54 mg, seed length from 1.90 to 3.06 mm, seed width from 1.43 to 2.53 mm. The shape indexes of seeds were found ranging from 0.73 to 0.80. The analysis of coefficient of variation showed the difference of variability in morphometric characteristics between some Lycium spp. cultivars and varieties. The most variable features: seeds weight (8.51–28.22%) and seeds length (5.07–24.81%) are important parameters for selection. The use of cluster analysis made it possible to establish the similarity between the species of the studied Lycium species. Conclusions. Diagnostic signs by seed morphometry for differentiation of Lycium species were revealed. The analysis of coefficient of variation showed the difference of variability in morphometric characteristics between some Lycium cultivars and varieties. The most variable characteristics of the studied genotypes were seed weight and length, which are important parameters for selection because they determine the pulp content and number of seeds, as well as the ratio of these parameters between them. It is through variability that promising varieties with low seed weight and length can be selected, Due to securing them later vegetatively.
Mostrar más [+] Menos [-]Adaptability of F1 sunflower hybrids, created according to an integrated system of line selection for economically valuable traits in various agroclimatic zones Texto completo
2021
Бабич, В. О | Боровська, І. Ю | Шарипіна, Я. Ю | Парій, Я. Ф | Симоненко, Ю. В
Adaptability of F1 sunflower hybrids, created according to an integrated system of line selection for economically valuable traits in various agroclimatic zones Texto completo
2021
Бабич, В. О | Боровська, І. Ю | Шарипіна, Я. Ю | Парій, Я. Ф | Симоненко, Ю. В
Purpose. Determine the ecological plasticity and productivity of F1 sunflower hybrids created on the basis of maternal and parental lines, selected according to an accelerated selection system of lines resistant to herbicides (imidazoline and sulfonylurea groups) and broomrape (Orobanche cumana Wallr.). Methods. Statistical analysis of F1 sunflower hybrids was carried out using the methods of variation statistics, regression and analysis of variance using the Microsoft Office Excel 2016 application package. Molecular biological, biotechnological and classical selection methods were used for the accelerated system of line selection. Thus, for the purpose of targeted selection of sunflower sterility fixers, we used HRG01 molecular SCAR marker to identify the gene for the restoration of pollen fertility (Rf1). To accelerate the creation of parental lines resistant to tribenuron-methyl, we used a culture of immature embryos in vitro. Results. The results of testing of F1 sunflower hybrids at Kyiv, Chernihiv, Cherkasy (Uman and Shpolianskyi districts), Khmelnytskyi, Kharkiv, Kherson and Odesa regions. The hybrids were created on the basis of selected lines, chosen according to an accelerated selection system for herbicide-resistant lines (imidazoline (IMI-hybrids) and sulfonylurea (SU-hybrids) groups) and broomrape (Orobanche cumana Wall). The standards for comparison with hybrids were: for IMI hybrids – hybrids ‘NK Neoma’ (Syngenta) and ‘ES Genesis’ (Euralis), and for SU-hybrids – ‘SY Sumiko’ (Syngenta) and ‘P64LE25’ (Pioneer). As a result, it was found that among SU-hybrids, UA 2/106 had a 3.9% higher yield when compared to the standards (‘SY Sumiko’ and ‘P64LE25’). And for IMI-hybrids it was found that hybrids UA 1/67, UA 1/66, UA 1/84 have the same yield of 2.76 t/ha as the ‘NK Neoma’ standard. IMI hybrids UA 1/92, UA 1/102 have the same yield of 2.91 t/ha as ‘ES Genesis’. Conclusions. F1 hybrids were created on the basis of the original breeding material selected due to the accelerated system of sunflower lines selection. The hybrids were analyzed according to the yield indicator. The most productive among the tested SU-hybrids was UA 2/106 hybrid, among the IMI hybrids – UA 1/67, UA 1/66, UA 1/84, UA 1/92 and UA 1/102.
Mostrar más [+] Menos [-]Adaptability of F1 sunflower hybrids, created according to an integrated system of line selection for economically valuable traits in various agroclimatic zones Texto completo
2021
В. О. Бабич | І. Ю. Боровська | Я. Ю. Шарипіна | Я. Ф. Парій | Ю. В. Симоненко
Purpose. Determine the ecological plasticity and productivity of F1 sunflower hybrids created on the basis of maternal and parental lines, selected according to an accelerated selection system of lines resistant to herbicides (imidazoline and sulfonylurea groups) and broomrape (Orobanche cumana Wallr.). Methods. Statistical analysis of F1 sunflower hybrids was carried out using the methods of variation statistics, regression and analysis of variance using the Microsoft Office Excel 2016 application package. Molecular biological, biotechnological and classical selection methods were used for the accelerated system of line selection. Thus, for the purpose of targeted selection of sunflower sterility fixers, we used HRG01 molecular SCAR marker to identify the gene for the restoration of pollen fertility (Rf1). To accelerate the creation of parental lines resistant to tribenuron-methyl, we used a culture of immature embryos in vitro. Results. The results of testing of F1 sunflower hybrids at Kyiv, Chernihiv, Cherkasy (Uman and Shpolianskyi districts), Khmelnytskyi, Kharkiv, Kherson and Odesa regions. The hybrids were created on the basis of selected lines, chosen according to an accelerated selection system for herbicide-resistant lines (imidazoline (IMI-hybrids) and sulfonylurea (SU-hybrids) groups) and broomrape (Orobanche cumana Wall). The standards for comparison with hybrids were: for IMI hybrids – hybrids ‘NK Neoma’ (Syngenta) and ‘ES Genesis’ (Euralis), and for SU-hybrids – ‘SY Sumiko’ (Syngenta) and ‘P64LE25’ (Pioneer). As a result, it was found that among SU-hybrids, UA 2/106 had a 3.9% higher yield when compared to the standards (‘SY Sumiko’ and ‘P64LE25’). And for IMI-hybrids it was found that hybrids UA 1/67, UA 1/66, UA 1/84 have the same yield of 2.76 t/ha as the ‘NK Neoma’ standard. IMI hybrids UA 1/92, UA 1/102 have the same yield of 2.91 t/ha as ‘ES Genesis’. Conclusions. F1 hybrids were created on the basis of the original breeding material selected due to the accelerated system of sunflower lines selection. The hybrids were analyzed according to the yield indicator. The most productive among the tested SU-hybrids was UA 2/106 hybrid, among the IMI hybrids – UA 1/67, UA 1/66, UA 1/84, UA 1/92 and UA 1/102.
Mostrar más [+] Menos [-]Sampling for vegetative propagation: A phytosanitary status survey of grapevines collection by One Step RT-PCR method Texto completo
2021
Ізейрай, М
Sampling for vegetative propagation: A phytosanitary status survey of grapevines collection by One Step RT-PCR method Texto completo
2021
Ізейрай, М
Purpose. Grapevines (Vitis spp.) are affected by many viral diseases which cause serious pathological problems. GLRaV-3 is among the most widespread leafroll viruses, while Grapevine Fanleaf Virus (GFLV) is a destructive pathogen which reduces the lifespan of grapevine. Considering the impact and the spread of these diseases, our objective was to analyse the presence of these two viruses in several grapevine varieties in grapevine collection at ATTC Vlore. Data gathered from plant pathogens serve to better understand and prevent the spread of pathogens, as a mandatory rule for the quality control of certified plant material during vegetative propagation. Method. The presence of two common viruses were tested using virus specific primers; LC1/LC2 primer pair designed from the hHSP70 gene for detecting Grapevine Leafroll-associated Virus-3 (GLRaV3) and C3390/H2999 primer pair, designed from coat protein coding regions for detecting Grapevine Fanleaf Virus (GFLV), in six varieties; ‘Merlot’, ‘Kallmet’, ‘Shesh i zi’, ‘Shesh i bardhё’, ‘Debinё’, and ‘Pulёz’, provided through a randomised sampling procedure. One Step Reverse Transcription Polymerase Chain Reaction assay was used to detect the viral presence. Results showed a high (100%) prevalence of GLRaV3 virus in all of analysed samples, as the most frequent among the two pathogens. Analysis for of GFLV virus showed low infection rate, being present in only one sample. Conclusions. We herein show an efficient, fast and reproducible method for detecting grapevine viruses through one step RT-PCR. Our results suggest that sampling of the infected plant material should be avoided due to the presence of viral infections.
Mostrar más [+] Menos [-]Sampling for vegetative propagation: A phytosanitary status survey of grapevines collection by One Step RT-PCR method Texto completo
2021
М. Ізейрай
Purpose. Grapevines (Vitis spp.) are affected by many viral diseases which cause serious pathological problems. GLRaV-3 is among the most widespread leafroll viruses, while Grapevine Fanleaf Virus (GFLV) is a destructive pathogen which reduces the lifespan of grapevine. Considering the impact and the spread of these diseases, our objective was to analyse the presence of these two viruses in several grapevine varieties in grapevine collection at ATTC Vlore. Data gathered from plant pathogens serve to better understand and prevent the spread of pathogens, as a mandatory rule for the quality control of certified plant material during vegetative propagation. Method. The presence of two common viruses were tested using virus specific primers; LC1/LC2 primer pair designed from the hHSP70 gene for detecting Grapevine Leafroll-associated Virus-3 (GLRaV3) and C3390/H2999 primer pair, designed from coat protein coding regions for detecting Grapevine Fanleaf Virus (GFLV), in six varieties; ‘Merlot’, ‘Kallmet’, ‘Shesh i zi’, ‘Shesh i bardhё’, ‘Debinё’, and ‘Pulёz’, provided through a randomised sampling procedure. One Step Reverse Transcription Polymerase Chain Reaction assay was used to detect the viral presence. Results showed a high (100%) prevalence of GLRaV3 virus in all of analysed samples, as the most frequent among the two pathogens. Analysis for of GFLV virus showed low infection rate, being present in only one sample. Conclusions. We herein show an efficient, fast and reproducible method for detecting grapevine viruses through one step RT-PCR. Our results suggest that sampling of the infected plant material should be avoided due to the presence of viral infections.
Mostrar más [+] Menos [-]?????????? ??????????????? ??????? ???????? ????????? ??????? ????????????? ??-??? | Sampling for vegetative propagation: A phytosanitary status survey of grapevines collection by One Step RT-PCR method Texto completo
???????, Yzeiraj, M., ?.
Purpose. Grapevines (Vitis spp.) are affected by many viral diseases which cause serious pathological problems. GLRaV-3 is among the most widespread leafroll viruses, while Grapevine Fanleaf Virus (GFLV) is a destructive pathogen which reduces the lifespan of grapevine. Considering the impact and the spread of these diseases, our objective was to analyse the presence of these two viruses in several grapevine varieties in grapevine collection at ATTC Vlore. Data gathered from plant pathogens serve to better understand and prevent the spread of pathogens, as a mandatory rule for the quality control of certified plant material during vegetative propagation. Method. The presence of two common viruses were tested using virus specific primers; LC1/LC2 primer pair designed from the hHSP70 gene for detecting Grapevine Leafroll-associated Virus-3 (GLRaV3) and C3390/H2999 primer pair, designed from coat protein coding regions for detecting Grapevine Fanleaf Virus (GFLV), in six varieties; ?Merlot?, ?Kallmet?, ?Shesh i zi?, ?Shesh i bardh??, ?Debin??, and ?Pul?z?, provided through a randomised sampling procedure. One Step Reverse Transcription Polymerase Chain Reaction assay was used to detect the viral presence. Results showed a high (100%) prevalence of GLRaV3 virus in all of analysed samples, as the most frequent among the two pathogens. Analysis for of GFLV virus showed low infection rate, being present in only one sample. Conclusions. We herein show an efficient, fast and reproducible method for detecting grapevine viruses through one step RT-PCR. Our results suggest that sampling of the infected plant material should be avoided due to the presence of viral infections. | ????. ??????? ????????? (Vitis spp.) ?????????? ???????? ????????? ??????????, ?? ??????????? ???? ???????? ????????????. ?? ?????????????? ???????? ????? ??????????? ????? ????????? (GLRaV-3) ?? ????? ???????????? ????????? (GFLV), ????????????? ???????, ???? ??????? ?????????? ????? ??????????? ????. ? ?????? ?? ?????????? ? ????????? ???????????, ?? ????????????? ????????? ????????, ????? ????? ???? ?????????????? ???? ??????????? ? ?????? ????????? ? ???????? ?????? ????????? ??????? ?????????? (ATTC Vlore). ???????? ???? ??? ???????? ???????? ???????? ??? ??????????? ??????? ????????? ? ? ????????????? ??? ????????????? ?????? ??????????????? ?????????? ????????? ??? ??? ???? ????????????? ???????????. ??????. ????????? ??????? ?????????? ??????? ????????????? ??-??? ? ????????????? ?????-??????????? ?????????: ???? ????????? LC1 / LC2, ?? ?????????? ??? ???????????? ???? hHSP70 ?????? ??????????? ????? ??????????-3 (GLRaV3), ? ???? ????????? C3390 / H2999, ??? ?????????? ??????????? ?????????????? ????? ???????? ?????? ???????????? ????????? (GFLV). ?????? ????? ?????? ???????? ? ?Merlot?, ?Kallmet?, ?Shesh i zi?, ?Shesh i bardh??, ?Debin?? ? ?Pul?z? ? ??????????? ? ????????????? ????????? ?????????????? ???????. ??????????. ?????????????? ??????? ??? ??????????? ??????? ???????? GLRaV3, ???? ?????????? ? 100% ??????????????? ??????. ?????????? ?????? GFLV ???????? ??????? ?????? ???????????, ????? ??? ???? ? ?????? ??????. ????????. ???????? ?????????? ???????????? ????????????? ??-??? ?? ???????????, ???????? ? ?????????????? ?????? ????????? ??????? ??????????? ????.
Mostrar más [+] Menos [-]Effects of catnip (Nepeta cataria L.) and Mexican sunflower (Tithonia diversifolia L.) density on growth, yield, and proximate composition of jute mallow (Corchorus olitorius L.) Texto completo
2021
Айоделе, О.П | Алуко, О.А | Адегбаджу, О. Д
Effects of catnip (Nepeta cataria L.) and Mexican sunflower (Tithonia diversifolia L.) density on growth, yield, and proximate composition of jute mallow (Corchorus olitorius L.) Texto completo
2021
Айоделе, О.П | Алуко, О.А | Адегбаджу, О. Д
Purpose. Jute mallow (Corchorus olitorius L.) is a mucilaginous vegetable and fiber crop cultivated in the tropics, where catnip (Nepeta cataria L.) and Mexican sunflower (Tithonia diversifolia L.) are common weeds. Hence, the study investigated the growth, yield, and nutrient level of jute mallow in weed-free, catnip, and Mexican sunflower environments. Methods. The study involved two screen-house experiments in a Completely Randomized Design (CRD) with six replications. The treatments were 0 (control), 2, 4, 6, 8, and 10 weed plants per pot in both experiments. These are 0, 100, 200, 300, 400, and 500 weed count per square meter equivalent, based on the surface area of the pots used. Mexican sunflower and catnip plants interacted with jute plants in the first and second experiments, respectively. Growth parameters of jute mallow were recorded weekly from 5 to 8 weeks after sowing (WAS), and harvesting was done at 8 WAS. The proximate composition of jute was evaluated using standard procedures outlined by AOAC. The data collected were subjected to analysis of variance (ANOVA), and means were separated using Duncan Multiple Range Test (DMRT) at P < 0.05. Results. Catnip and Mexican sunflower negatively impacted the morphological features of jute mallow from 100 plants per square meter upwards. Catnip and Mexican sunflower, at 300 and 100–500 plants per square meter, respectively, reduced the dry weight of jute mallow. The crude protein content of jute mallow was also lessened by Mexican sunflower at some point. Conclusions. The study recommends that the density of catnip and Mexican sunflower plants interacting with jute mallow should be maintained below 100 plants per square meter to prevent yield loss.
Mostrar más [+] Menos [-]Effects of catnip (Nepeta cataria L.) and Mexican sunflower (Tithonia diversifolia L.) density on growth, yield, and proximate composition of jute mallow (Corchorus olitorius L.) Texto completo
2021
О.П. Айоделе | О.А. Алуко | О. Д. Адегбаджу
Purpose. Jute mallow (Corchorus olitorius L.) is a mucilaginous vegetable and fiber crop cultivated in the tropics, where catnip (Nepeta cataria L.) and Mexican sunflower (Tithonia diversifolia L.) are common weeds. Hence, the study investigated the growth, yield, and nutrient level of jute mallow in weed-free, catnip, and Mexican sunflower environments. Methods. The study involved two screen-house experiments in a Completely Randomized Design (CRD) with six replications. The treatments were 0 (control), 2, 4, 6, 8, and 10 weed plants per pot in both experiments. These are 0, 100, 200, 300, 400, and 500 weed count per square meter equivalent, based on the surface area of the pots used. Mexican sunflower and catnip plants interacted with jute plants in the first and second experiments, respectively. Growth parameters of jute mallow were recorded weekly from 5 to 8 weeks after sowing (WAS), and harvesting was done at 8 WAS. The proximate composition of jute was evaluated using standard procedures outlined by AOAC. The data collected were subjected to analysis of variance (ANOVA), and means were separated using Duncan Multiple Range Test (DMRT) at P < 0.05. Results. Catnip and Mexican sunflower negatively impacted the morphological features of jute mallow from 100 plants per square meter upwards. Catnip and Mexican sunflower, at 300 and 100–500 plants per square meter, respectively, reduced the dry weight of jute mallow. The crude protein content of jute mallow was also lessened by Mexican sunflower at some point. Conclusions. The study recommends that the density of catnip and Mexican sunflower plants interacting with jute mallow should be maintained below 100 plants per square meter to prevent yield loss.
Mostrar más [+] Menos [-]Effects of catnip (Nepeta cataria L.) and Mexican sunflower (Tithonia diversifolia L.) density on growth, yield, and proximate composition of jute mallow (Corchorus olitorius L.) | ????? ????????? ??????? ????? ?????????? (Nepeta cataria L.) ? ?????????????? ????????? (Tithonia diversifolia L.) ?? ????, ??????????? ?? ????? ?????? ?????? ? ???????? ????? ????????????? (Corchorus olitorius L.) Texto completo
?????????, Adegbaju, O. D., ?. ?. | ?????, Aluko, O. A., ?.?. | ???????, Ayodele, O. P., ?.?.
Purpose. Jute mallow (Corchorus olitorius L.) is a mucilaginous vegetable and fiber crop cultivated in the tropics, where catnip (Nepeta cataria L.) and Mexican sunflower (Tithonia diversifolia L.) are common weeds. Hence, the study investigated the growth, yield, and nutrient level of jute mallow in weed-free, catnip, and Mexican sunflower environments.Methods. The study involved two screen-house experiments in a Completely Randomized Design (CRD) with six replications. The treatments were 0 (control), 2, 4, 6, 8, and 10 weed plants per pot in both experiments. These are 0, 100, 200, 300, 400, and 500 weed count per square meter equivalent, based on the surface area of the pots used. Mexican sunflower and catnip plants interacted with jute plants in the first and second experiments, respectively. Growth parameters of jute mallow were recorded weekly from 5 to 8 weeks after sowing (WAS), and harvesting was done at 8 WAS. The proximate composition of jute was evaluated using standard procedures outlined by AOAC. The data collected were subjected to analysis of variance (ANOVA), and means were separated using Duncan Multiple Range Test (DMRT) at P < 0.05.Results. Catnip and Mexican sunflower negatively impacted the morphological features of jute mallow from 100 plants per square meter upwards. Catnip and Mexican sunflower, at 300 and 100?500 plants per square meter, respectively, reduced the dry weight of jute mallow. The crude protein content of jute mallow was also lessened by Mexican sunflower at some point.Conclusions. The study recommends that the density of catnip and Mexican sunflower plants interacting with jute mallow should be maintained below 100 plants per square meter to prevent yield loss. | ????. ???? ???????????? (Corchorus olitorius L) ? ?? ??????? ? ??????? ????????, ??? ????????? ? ????????. ?????????? ?????????, ?? ?????????? ???? ??????, ? ?????? ????? ???????? (Nepeta cataria L.) ? ????????????? ???????? (Tithonia diversifolia?L). ? ?????? ??????????? ??????? ????, ??????????? ? ????? ?????? ??????????? ? ???????? ????? ????????????? ?? ????? ??????????? ??????? ????? ?????????? ? ?????????????? ????????? ?? ? ??????????, ???????? ??? ????????.??????. ??????????? ???????? ??? ???????????? ???????????? ?? ???????? ?????????????? ?????? ? ????? ???????????. ????? ??????? ? ????????????? ???? ?????: 0 (????????), 2, 4, 6, 8 ? 10 ???????? ?? ??????? ??? ???????????. ? ??????????? ????? ???????? ???????????? ????????, ???? ????????? ??????????? 0, 100, 200, 300, 400 ? 500 ???????? ?? 1??2. ????????? ????? ????? ????????????? ??????????? ??????? ? 5 ?? 8 ????? ????? ?????, ? ?????? ??????? ????? 8 ??????. ????? ?????? ?????? ? ???????? ????? ????????? ? ????????????? ??????????? ????????, ?????????? ?????????? ????????? ????????????????????? ???????. ???????? ?????????? ???? ????????? ?? ????????????? ??????? ????????????? ??????? (ANOVA).??????????. ?????? ????? ???????? ? ?????????????? ???????? ?? ????????? ??? 100 ?????? ?? ???????????? ???? ??????? ????????? ???????? ?? ???????????? ???????????????? ????? ?????????????. ?? ???????, ?? ??????????? 100?500 ?????? ?? ?????????? ????, ??????????? ????? ????????? ????? ???? ????? ?????????????. ?? ????????????, ????????????? ???????? ???? ????? ??????????? ????????? ?????? ?????? ???????? ? ????? ?????????????.????????. ??? ??????????? ????? ?????? ?????????????? ???????????? ??????????? ?????? ??????? ????? ??????????? ?? ?????????????? ????????? ? ??????? ????? ??????????????? ?????? ??? 100 ??./?2.
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