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Features of the morphological structure of plants and biochemical properties of introduced and domestic varieties of Cannabis sativa L. Полный текст
2020
А. С. Полякова | Л. М. Горшкова | Д. Б. Рахметов
Features of the morphological structure of plants and biochemical properties of introduced and domestic varieties of Cannabis sativa L. Полный текст
2020
А. С. Полякова | Л. М. Горшкова | Д. Б. Рахметов
Purpose. Identifying the features of the seasonal growth rhythm, development of the plants, morphological and biological differences in monoecious introduced and domestic varieties of Cannabis sativa L. in the North-east region of Ukraine. Methods. The research was conducted from 2014 till 2019. The following research methods were employed: field (phenological observations, sampling for laboratory analysis), microscopic (study of the morphological structure of glandular and cystolithic hairs on vegetative and generative organs, determination of the size and density of hair formation), laboratory and analytical (determination of the content of cannabinoid substances by thin layer and gas-liquid chromatography), biomorphological methods (analysis of morphological characteristics of plants). Chemical analysis for the content of cannabinoid substances was carried out in the laboratory of the breeding and seed production department of the Institute of Bast Crops of the NAAS of Ukraine (Glukhiv, 2014–2019). The content of neutral substances [cannabinol (CBN), cannabidiol (CBD), tetrahydrocannabinol (THC)] and acids (CBDA, THCA) was determined by using a thin layer chromatography (TLC) and gas-liquid chromatography (GLC) methods. For the study, 11 monoecious varieties of C. sativa: ‘YuSO 1’, ‘YuSO 31’, ‘Hliana’, ‘Viktoriia’, ‘Hlesiia’, ‘Hlukhivskyi 46’, ‘Hlukhivski 51’, ‘Zolotoniski 15’ and 3 introduced varieties: ‘Fedora 17’, ‘Felina 32’, ‘Futura 77’ (France) which differed among themselves in morphological, biological, genetic, ecological-geographical and economically valuable characteristics were selected. Results. Biological and morphological characteristics of modern monoecious varieties of C. sativa were investigated depending on the ecological and geographical zones of origin, conditions of the growing season and the stage of ontogenesis. The functional interdependence between the formation of specialized excretory structures and the content of cannabinoid substances in plants of different varieties of C. sativa was revealed. The following promising varieties of C. sativa in a ration of ((THC + CBN) ≤ CBD) point the possibility to use them as the source material for creating the medicinal varieties of plants with a high content of CBD. Conclusions. Nowadays C. sativa is the main source of phyto material for industrial production of natural CBD. In recent years, high-yielding varieties of C. sativa have been created, which, together with high commercially valuable traits, did not contain psychoactive THC and had an insignificant amount of CBD. The results of the research indicated the features of the seasonal growth rhythm, development of the plants and the morphological and biological features of modern monoecious introduced and domestic varieties of C. sativa in the North-east region of Ukraine. The low correlation between the content of cannabinoid substances and their acids in varieties, which are characterized by the low content of cannabinoid compounds was established. According to the developed own classification (THC + KBN): CBD, varieties with a predominant CBD content ‘Hlukhivskyi 46’, ‘Zolotoniski 15’, ‘Hliana’ which are of significant medicinal value were identified.
Показать больше [+] Меньше [-]Features of the morphological structure of plants and biochemical properties of introduced and domestic varieties of Cannabis sativa L Полный текст
2020
Полякова, А. С | Горшкова, Л. М | Рахметов, Д. Б
Purpose. Identifying the features of the seasonal growth rhythm, development of the plants, morphological and biological differences in monoecious introduced and domestic varieties of Cannabis sativa L. in the North-east region of Ukraine. Methods. The research was conducted from 2014 till 2019. The following research methods were employed: field (phenological observations, sampling for laboratory analysis), microscopic (study of the morphological structure of glandular and cystolithic hairs on vegetative and generative organs, determination of the size and density of hair formation), laboratory and analytical (determination of the content of cannabinoid substances by thin layer and gas-liquid chromatography), biomorphological methods (analysis of morphological characteristics of plants). Chemical analysis for the content of cannabinoid substances was carried out in the laboratory of the breeding and seed production department of the Institute of Bast Crops of the NAAS of Ukraine (Glukhiv, 2014–2019). The content of neutral substances [cannabinol (CBN), cannabidiol (CBD), tetrahydrocannabinol (THC)] and acids (CBDA, THCA) was determined by using a thin layer chromatography (TLC) and gas-liquid chromatography (GLC) methods. For the study, 11 monoecious varieties of C. sativa: ‘YuSO 1’, ‘YuSO 31’, ‘Hliana’, ‘Viktoriia’, ‘Hlesiia’, ‘Hlukhivskyi 46’, ‘Hlukhivski 51’, ‘Zolotoniski 15’ and 3 introduced varieties: ‘Fedora 17’, ‘Felina 32’, ‘Futura 77’ (France) which differed among themselves in morphological, biological, genetic, ecological-geographical and economically valuable characteristics were selected. Results. Biological and morphological characteristics of modern monoecious varieties of C. sativa were investigated depending on the ecological and geographical zones of origin, conditions of the growing season and the stage of ontogenesis. The functional interdependence between the formation of specialized excretory structures and the content of cannabinoid substances in plants of different varieties of C. sativa was revealed. The following promising varieties of C. sativa in a ration of ((THC + CBN) ≤ CBD) point the possibility to use them as the source material for creating the medicinal varieties of plants with a high content of CBD. Conclusions. Nowadays C. sativa is the main source of phyto material for industrial production of natural CBD. In recent years, high-yielding varieties of C. sativa have been created, which, together with high commercially valuable traits, did not contain psychoactive THC and had an insignificant amount of CBD. The results of the research indicated the features of the seasonal growth rhythm, development of the plants and the morphological and biological features of modern monoecious introduced and domestic varieties of C. sativa in the North-east region of Ukraine. The low correlation between the content of cannabinoid substances and their acids in varieties, which are characterized by the low content of cannabinoid compounds was established. According to the developed own classification (THC + KBN): CBD, varieties with a predominant CBD content ‘Hlukhivskyi 46’, ‘Zolotoniski 15’, ‘Hliana’ which are of significant medicinal value were identified.
Показать больше [+] Меньше [-]Crop photosynthetic capacity of grain sorghum (Sorghum bicolor (L.) Moench) depending on sowing time and planting depth Полный текст
2020
Л. А. Правдива
Crop photosynthetic capacity of grain sorghum (Sorghum bicolor (L.) Moench) depending on sowing time and planting depth Полный текст
2020
Л. А. Правдива
Purpose. To establish the optimal seeding time and depth of ‘Dniprovskyi 39’ and ‘Vinets’ sorghum varieties, to prove their effect on the crop photosynthetic capacity in the Right-Bank Forest-Steppe of Ukraine. Methods. Field, laboratory, comparative, analytical, generalizing, mathematical and statistical. Results. It was proved that the best results of crop photosynthetic capacity of sorghum were obtained by sowing in the first decade of May (the second sowing period) at a seeding depth of 4–6 cm. Accordingly, the leaf surface area in these variants reached its maximum during the “panicle-blooming” period and equated 36.13–38.81 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 34.23–36.91 thousand m2/ha for the ‘Vinets’ variety. By sowing seeds in the third decade of April (the first sowing period) at the seedining depth values described above the leaf surface area of the varieties was slightly smaller and amounted to 29.56–31.20 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 27.76–29.40 thousand m2/ha for the ‘Vinets’ variety. By sowing seeds in the second decade of May (the third sowing period), the leaf surface area was 30.68–32.92 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 29.08–31.32 thousand m2/ha for the ‘Vinets’ variety. The highest photosynthetic potential was obtained for sorghum plants in the second sowing period at the seeding depth of 4–6 cm and was 1.27 and 1.34 million m2/ha for the ‘Dniprovskyi 39’ variety and 1.16 and 1.22 million m2/ha for the variety ‘Vinets’. In the first sowing period, this indicator was slightly lower and amounted to 1.18 and 1.23 million m2/ha for the ‘Dniprovskyi 39’ variety and 0.98 and 1.02 million m2/ha for the ‘Vinets’ variety respectively. In the third sowing period, it was the smallest one and equated 1.09 and 1.13 million m2/ha for the ‘Dniprovskyi 39’ variety, and 0.88 and 0.93 million m2/ha for the ‘Vinets’ variety at the optimal seeding depth. The photosynthetic potential was lower at the seeding depth of 2 and 8 cm, which is explained by the different soil and climatic parameters during a certain period of sorghum plant vegetation. The highest value of the photosynthetic capacity net indicator was obtained by sowing seeds at the optimal time and the optimal seeding depth and it equated 3.84–4.02 g/m2 per day for the ‘Dniprovskyi 39’ variety and 3.79 – 3.98 g/m2 per day for the ‘Vinets’ variety. Conclusions. It has been established that the sorghum plants had better vegetation and formed photosynthetic capacity by sowing seeds in the first decade of May at the planting depth of 4–6 cm, which we recommend for growing this crop in the Right-Bank Forest-Steppe of Ukraine.
Показать больше [+] Меньше [-]Crop photosynthetic capacity of grain sorghum (Sorghum bicolor (L.) Moench) depending on sowing time and planting depth Полный текст
2020
Правдива, Л. А
Purpose. To establish the optimal seeding time and depth of ‘Dniprovskyi 39’ and ‘Vinets’ sorghum varieties, to prove their effect on the crop photosynthetic capacity in the Right-Bank Forest-Steppe of Ukraine. Methods. Field, laboratory, comparative, analytical, generalizing, mathematical and statistical. Results. It was proved that the best results of crop photosynthetic capacity of sorghum were obtained by sowing in the first decade of May (the second sowing period) at a seeding depth of 4–6 cm. Accordingly, the leaf surface area in these variants reached its maximum during the “panicle-blooming” period and equated 36.13–38.81 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 34.23–36.91 thousand m2/ha for the ‘Vinets’ variety. By sowing seeds in the third decade of April (the first sowing period) at the seedining depth values described above the leaf surface area of the varieties was slightly smaller and amounted to 29.56–31.20 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 27.76–29.40 thousand m2/ha for the ‘Vinets’ variety. By sowing seeds in the second decade of May (the third sowing period), the leaf surface area was 30.68–32.92 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 29.08–31.32 thousand m2/ha for the ‘Vinets’ variety. The highest photosynthetic potential was obtained for sorghum plants in the second sowing period at the seeding depth of 4–6 cm and was 1.27 and 1.34 million m2/ha for the ‘Dniprovskyi 39’ variety and 1.16 and 1.22 million m2/ha for the variety ‘Vinets’. In the first sowing period, this indicator was slightly lower and amounted to 1.18 and 1.23 million m2/ha for the ‘Dniprovskyi 39’ variety and 0.98 and 1.02 million m2/ha for the ‘Vinets’ variety respectively. In the third sowing period, it was the smallest one and equated 1.09 and 1.13 million m2/ha for the ‘Dniprovskyi 39’ variety, and 0.88 and 0.93 million m2/ha for the ‘Vinets’ variety at the optimal seeding depth. The photosynthetic potential was lower at the seeding depth of 2 and 8 cm, which is explained by the different soil and climatic parameters during a certain period of sorghum plant vegetation. The highest value of the photosynthetic capacity net indicator was obtained by sowing seeds at the optimal time and the optimal seeding depth and it equated 3.84–4.02 g/m2 per day for the ‘Dniprovskyi 39’ variety and 3.79 – 3.98 g/m2 per day for the ‘Vinets’ variety. Conclusions. It has been established that the sorghum plants had better vegetation and formed photosynthetic capacity by sowing seeds in the first decade of May at the planting depth of 4–6 cm, which we recommend for growing this crop in the Right-Bank Forest-Steppe of Ukraine.
Показать больше [+] Меньше [-]Crop photosynthetic capacity of grain sorghum (Sorghum bicolor (L.) Moench) depending on sowing time and planting depth | Фотосинтетическая продуктивность посевов сорго зернового (Sorghum bicolor (L.) Moench) в зависимости от сроков сева и глубины заделки семян | Фотосинтетична продуктивність посівів сорго зернового (Sorghum bicolor (L.) Moench) залежно від строків сівби та глибини загортання насіння Полный текст
2020
Правдива, Л. А.
Цель. Установить оптимальные сроки сева и глубину заделки семян сорго зернового сортов ‘Дніпровський 39’ и ‘Вінець’, обосновать их влияние на фотосинтетическую продуктивность посевов в условиях Правобережной Лесостепи Украины.Методы. Полевой, лабораторный, сравнительный, аналитический, обобщающий, математически-статистический.Результаты. Наилучшие результаты фотосинтетической продуктивности посевов сорго зернового получены во время сева в I декаде мая (второй срок) на глубине заделки семян 4–6 см. Соответственно, площадь листовой поверхности в этих вариантах в период «выбрасывания метелки–цветения» достигала максимума и составляла 36,13–38,81 тыс. м2/га у сорта ‘Дніпровський 39’ и 34,23 – 36,91 тыс. м2/га у сорта ‘Вінець’. При севе семян в III декаде апреля (первый срок) при вышеуказанных значениях глубины заделки площадь листовой поверхности у сортов была несколько меньше и составляла 29,56–31,20 тыс. м2/га у сорта ‘Дніпровський 39’ и 27,76–29,40 тыс. м2/га у сорта ‘Вінець’. При севе семян во II декаде мая (третий срок) площадь листовой поверхности составляла 30,68–32,92 тыс. м2/га у сорта ‘Дніпровський 39’ и 29,08–31,32 тыс. м2/га у сорта ‘Вінець’. Фотосинтетический потенциал был самым высоким в растениях сорго зернового во втором сроке сева семян на глубине заделки 4–6 см и составлял 1,27 и 1,34 млн м2/га у сорта ‘Дніпровський 39’ и 1,16 и 1,22 млн м2/га у сорта ‘Вінець’. В первом сроке сева этот показатель был несколько ниже и составлял 1,18 и 1,23 млн м2/га у сорта ‘Дніпровський 39’ и 0,98 и 1,02 млн м2/га у сорта ‘Вінець’, соответственно. В третьем сроке сева он был самым низким, у сорта ‘Дніпровський 39’ этот показатель составлял 1,09 и 1,13 млн м2/га, у сорта ‘Вінець’ – 0,88 и 0,93 млн м2/га при оптимальных значениях глубины заделки семян. На глубине заделки семян 2 и 8 см фотосинтетический потенциал был ниже, что объясняют различными почвенно-климатическими условиями в определенный период развития растений сорго. Наивысшее значение показателя чистой продуктивности фотосинтеза было получено при севе семян в оптимальные сроки и оптимальной глубине заделки семян и составляло 3,84–4,02 г/м2 в сутки у сорта ‘Дніпровський 39’ и 3,79–3,98 г/м2 в сутки у сорта ‘Вінець’, соответственно.Выводы. Лучше развивались и формировали фотосинтетическую продуктивность растения сорго зернового при севе семян в первой декаде мая на глубине заделки 4–6 см, которые и рекомендованы для выращивания данной культуры в Правобережной Лесостепи Украины. | Purpose. To establish the optimal seeding time and depth of ‘Dniprovskyi 39’ and ‘Vinets’ sorghum varieties, to prove their effect on the crop photosynthetic capacity in the Right-Bank Forest-Steppe of Ukraine. Methods. Field, laboratory, comparative, analytical, generalizing, mathematical and statistical. Results. It was proved that the best results of crop photosynthetic capacity of sorghum were obtained by sowing in the first decade of May (the second sowing period) at a seeding depth of 4–6 cm. Accordingly, the leaf surface area in these variants reached its maximum during the “panicle-blooming” period and equated 36.13–38.81 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 34.23–36.91 thousand m2/ha for the ‘Vinets’ variety. By sowing seeds in the third decade of April (the first sowing period) at the seedining depth values described above the leaf surface area of the varieties was slightly smaller and amounted to 29.56–31.20 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 27.76–29.40 thousand m2/ha for the ‘Vinets’ variety. By sowing seeds in the second decade of May (the third sowing period), the leaf surface area was 30.68–32.92 thousand m2/ha for the ‘Dniprovskyi 39’ variety and 29.08–31.32 thousand m2/ha for the ‘Vinets’ variety. The highest photosynthetic potential was obtained for sorghum plants in the second sowing period at the seeding depth of 4–6 cm and was 1.27 and 1.34 million m2/ha for the ‘Dniprovskyi 39’ variety and 1.16 and 1.22 million m2/ha for the variety ‘Vinets’. In the first sowing period, this indicator was slightly lower and amounted to 1.18 and 1.23 million m2/ha for the ‘Dniprovskyi 39’ variety and 0.98 and 1.02 million m2/ha for the ‘Vinets’ variety respectively. In the third sowing period, it was the smallest one and equated 1.09 and 1.13 million m2/ha for the ‘Dniprovskyi 39’ variety, and 0.88 and 0.93 million m2/ha for the ‘Vinets’ variety at the optimal seeding depth. The photosynthetic potential was lower at the seeding depth of 2 and 8 cm, which is explained by the different soil and climatic parameters during a certain period of sorghum plant vegetation. The highest value of the photosynthetic capacity net indicator was obtained by sowing seeds at the optimal time and the optimal seeding depth and it equated 3.84–4.02 g/m2 per day for the ‘Dniprovskyi 39’ variety and 3.79 – 3.98 g/m2 per day for the ‘Vinets’ variety.Conclusions. It has been established that the sorghum plants had better vegetation and formed photosynthetic capacity by sowing seeds in the first decade of May at the planting depth of 4–6 cm, which we recommend for growing this crop in the Right-Bank Forest-Steppe of Ukraine. | Мета. Встановити оптимальні строки сівби та глибину загортання насіння сорго зернового сортів ‘Дніпровський 39’ та ‘Вінець’, обґрунтувати їхній вплив на фотосинтетичну продуктивність посівів в умовах Правобережного Лісостепу України. Методи. Польовий, лабораторний, порівняльний, аналітичний, узагальнюючий, математично-статистичний. Результати. Найкращі результати фотосинтетичної продуктивності посівів сорго зернового отримано за сівби у І декаді травня (другий строк) на глибину загортання насіння 4–6 см. Відповідно, площа листкової поверхні за цих факторів у період «викидання волоті – цвітіння» сягала максимуму і дорівнювала 36,13–38,81 тис. м2/га у сорту ‘Дніпровський 39’ та 34,23–36,91 тис. м2/га у сорту ‘Вінець’. За сівби насіння у ІІІ декаді квітня (перший строк) за таких самих значень глибини загортання площа листкової поверхні у сортів була дещо меншою і становила 29,56–31,20 тис. м2/га у сорту ‘Дніпровський 39’ та 27,76–29,40 тис. м2/га у сорту ‘Вінець’. За сівби насіння у ІІ декаді травня (третій строк) площа листкової поверхні дорівнювала 30,68–32,92 тис. м2/га у сорту ‘Дніпровський 39’ та 29,08–31,32 тис. м2/га у сорту ‘Вінець’. Фотосинтетичний потенціал був найвищим у рослин сорго зернового за ІІ строку сівби насіння та глибини загортання 4–6 см й дорівнював 1,27 та 1,34 млн м2/га у сорту ‘Дніпровський 39’ і 1,16 та 1,22 млн м2/га у сорту ‘Вінець’. За І строку сівби цей показник був дещо меншим і відповідно становив 1,18 та 1,23 млн м2/га у сорту ‘Дніпровський 39’ й 0,98 і 1,02 млн м2/га у сорту ‘Вінець’. За ІІІ строку сівби він був найменшим та у сорту ‘Дніпровський 39’ дорівнював 1,09 і 1,13 млн м2/га, у сорту ‘Вінець’ 0,88 і 0,93 млн м2/га за оптимальних значень глибини загортання насіння. За глибини загортання насіння 2 та 8 см фотосинтетичний потенціал був нижчим, що пояснюють різними ґрунтово-кліматичними умовами у певний період розвитку рослин сорго. Найбільше значення показника чистої продуктивності фотосинтезу було отримано за сівби насіння в оптимальні строки та за оптимальної глибини загортання насіння і становило у сорту ‘Дніпровський 39’, відповідно, 3,84–4,02 г/м2 за добу, у сорту ‘Вінець’ 3,79–3,98 г/м2 за добу.Висновки. Найкраще розвивались та формували фотосинтетичну продуктивність рослини сорго зернового за сівби насіння у першій декаді травня на глибину загортання 4–6 см, які й рекомендовано для вирощування даної культури в Правобережному Лісостепу України.
Показать больше [+] Меньше [-]Economic and biological evaluation of Сhinese cabbage [Brassica rapa L. var. pekinensis (Lour.) Kitam.] hybrids grown in the Right-Bank Forest Steppe of Ukraine Полный текст
2020
Ковтунюк, З. І | Войтовська, В. І | Сторожик, Л. І
Economic and biological evaluation of Сhinese cabbage [Brassica rapa L. var. pekinensis (Lour.) Kitam.] hybrids grown in the Right-Bank Forest Steppe of Ukraine Полный текст
2020
Ковтунюк, З. І | Войтовська, В. І | Сторожик, Л. І
Purpose. To study the economic and biological characteristics and to reveal the genetic potential of various hybrids of Chinese cabbage depending on the climatic zone of cultivation. Methods. In the experiment, hybrids of Chinese cabbage ‘Pioner F1’ (control), ‘Villi F1’, ‘Manoko F1’, ‘Orient Star F1’, ‘Vitimo F1’, ‘Sprinkin F1’, ‘Summer Highland F1’, ‘Suprin F1’, and ‘Richi F1’ were evaluated. The experiment was laid out in a randomized block design with four replications with a single plot area of 21 m2. The container seedlings (40 days old) were planted in the middle of April according to the scheme 70 cm by 25 cm. Results. Having been planted at the same time, seed germination over the studied hybrids was not simultaneous. The first sprouted seeds (4 days after seeding) belonged to hybrids ‘Villi F1’, ‘Manoko F1’, ‘Orient Star F1’, and‘Summer Highland F1’. Seeds of the other hybrids started active germination on the 5–6 days after seeding. The highest yield of the cabbage heads was obtained from hybrids ‘Villi F1’ (31.7 t/ha) and ‘Sprinkin F1’ (28.7 t/ha), which was 10.0 and 7.0 t/ha more than in the control variant. The yield of ‘Summer Highland F1’ was 24.9 t/ha and ‘Suprin F1’ 24.6 t/ha. Under the conditions of unstable soil moisture, hybrids ‘Villi F1’and ‘Sprinkin F1’ appeared the most productive and ensured yield increase of 10.0 t/ha and 7.0 t/ha, respectively, compared to the control; and crop commercial quality was high. The highest percentage of dry matter (DM) content was in ‘Summer Highland F1’ (6.2%) followed by ‘Sprinkin F1’ (5.9%), which was 1.1% and 0.8% more than in the control. There was no significant difference between the values of the total sugars content over the variants. They ranged between 1.7 and 2.1%, which was similar to the control values. The content of nitrates in the cabbage heads of the studied Chinese cabbage hybrids was within the tolerance limit and amounted to 600 mg/kg (raw mass). Conclusions. Phenological observations of plant development and their biometric indices, depending on the varietal characteristics, indicate that under the conditions of unstable soil moisture, hybrids ‘Villi F1’ and ‘Sprinkin F1’ were more yielding and ensured yield increase of 10.0 t/ha and 7.0 t/ha, respectively, compared to the control. The crop commercial quality was high. The long growing season of ‘Richi F1’ (93 days) did not affect the crop quality and yield and demonstrated the lowest productivity compared to the control and the other experiment variants.
Показать больше [+] Меньше [-]Economic and biological evaluation of Сhinese cabbage [Brassica rapa L. var. pekinensis (Lour.) Kitam.] hybrids grown in the Right-Bank Forest Steppe of Ukraine Полный текст
2020
З. І. Ковтунюк | В. І. Войтовська | Л. І. Сторожик
Purpose. To study the economic and biological characteristics and to reveal the genetic potential of various hybrids of Chinese cabbage depending on the climatic zone of cultivation. Methods. In the experiment, hybrids of Chinese cabbage ‘Pioner F1’ (control), ‘Villi F1’, ‘Manoko F1’, ‘Orient Star F1’, ‘Vitimo F1’, ‘Sprinkin F1’, ‘Summer Highland F1’, ‘Suprin F1’, and ‘Richi F1’ were evaluated. The experiment was laid out in a randomized block design with four replications with a single plot area of 21 m2. The container seedlings (40 days old) were planted in the middle of April according to the scheme 70 cm by 25 cm. Results. Having been planted at the same time, seed germination over the studied hybrids was not simultaneous. The first sprouted seeds (4 days after seeding) belonged to hybrids ‘Villi F1’, ‘Manoko F1’, ‘Orient Star F1’, and‘Summer Highland F1’. Seeds of the other hybrids started active germination on the 5–6 days after seeding. The highest yield of the cabbage heads was obtained from hybrids ‘Villi F1’ (31.7 t/ha) and ‘Sprinkin F1’ (28.7 t/ha), which was 10.0 and 7.0 t/ha more than in the control variant. The yield of ‘Summer Highland F1’ was 24.9 t/ha and ‘Suprin F1’ 24.6 t/ha. Under the conditions of unstable soil moisture, hybrids ‘Villi F1’and ‘Sprinkin F1’ appeared the most productive and ensured yield increase of 10.0 t/ha and 7.0 t/ha, respectively, compared to the control; and crop commercial quality was high. The highest percentage of dry matter (DM) content was in ‘Summer Highland F1’ (6.2%) followed by ‘Sprinkin F1’ (5.9%), which was 1.1% and 0.8% more than in the control. There was no significant difference between the values of the total sugars content over the variants. They ranged between 1.7 and 2.1%, which was similar to the control values. The content of nitrates in the cabbage heads of the studied Chinese cabbage hybrids was within the tolerance limit and amounted to 600 mg/kg (raw mass). Conclusions. Phenological observations of plant development and their biometric indices, depending on the varietal characteristics, indicate that under the conditions of unstable soil moisture, hybrids ‘Villi F1’ and ‘Sprinkin F1’ were more yielding and ensured yield increase of 10.0 t/ha and 7.0 t/ha, respectively, compared to the control. The crop commercial quality was high. The long growing season of ‘Richi F1’ (93 days) did not affect the crop quality and yield and demonstrated the lowest productivity compared to the control and the other experiment variants.
Показать больше [+] Меньше [-]Хозяйственно-биологическая оценка гибридов капусты пекинской [Brassica rapa L. var. pekinensis (Lour.) Kitam.], выращенных в условиях Правобережной Лесостепи Украины | Господарсько-біологічна оцінка гібридів капусти пекінської [Brassica rapa L. var. pekinensis (Lour.) Kitam.] за вирощування в умовах Правобережного Лісостепу України | Economic and biological evaluation of Сhinese cabbage [Brassica rapa L. var. pekinensis (Lour.) Kitam.] hybrids grown in the Right-Bank Forest Steppe of Ukraine Полный текст
2020
Сторожик, Л. І. | Ковтунюк, З. І. | Войтовська, В. І.
Цель. Исследовать хозяйственно-биологические особенности и раскрыть генетический потенциал различных гибридов капусты пекинской в зависимости от климатической зоны выращивания. Методы. Вариантами опыта были гибриды капусты пекинской ‘Pioner F1’ (контроль), ‘Vili F1’, ‘Manoko F1’, ‘Orient Star F1’, ‘Vitimo F1’, ‘Sprinkin F1’, ‘Summer Highland F1’, ‘Suprin F1’, ‘Richi F1’. Площадь учетного участка 21 м2. Опыт закладывался в четырех повторениях, исследуемые варианты размещали методом рендомизированных блоков. Кассетную рассаду в возрасте 40 суток высаживали во второй декаде апреля по схеме 70 × 25 см. Результаты. В один срок посева у гибридов всходы появлялись не одновременно и первые отмечены у гибридов ‘Vili F1’, ‘Manoko F1’, ‘Orient Star F1’ и ‘Summer Highland F1’ – на 4 сутки после посева, а в остальных – массовые всходы наблюдались несколько позже, на 5–6 сутки после посева. Самый высокий товарный урожай головок получили у гибридов ‘Vili F1’ (31,7 т/га) и ‘Sprinkin F1’ (28,7 т/га), что на 10,0 и 7,0 т/га больше, чем в контроле. Существенно ниже была урожайность у гибридов ‘Summer Highland F1’ – 24,9 и ‘Suprin F1’ – 24,6 т/га. В условиях неустойчивого увлажнения более урожайными были гибриды ‘Vili F1’ и ‘Sprinkin F1’, которые обеспечили прирост урожая к контролю 10,0 и 7,0 т/га, а продукция имела высокое товарное качество. Самый высокий процент сухих растворимых веществ установлен в головках гибридов ‘Summer Highland F1’ (6,2%) и ‘Sprinkin F1’ (5,9%), что на 1,1 и 0,8% больше контроля. По сумме сахаров не отмечено существенной разницы между вариантами, данный показатель был на уровне контроля (1,7–2,1%). Содержание нитратов в головках исследуемых гибридов капусты пекинской было в пределах допустимой нормы 600 мг/кг сырой массы. Выводы. Фенологические наблюдения за развитием растений и их биометрические показатели в зависимости от сортовых особенностей указывают, что в условиях неустойчивого увлажнения более урожайными были гибриды ‘Vili F1’ и ‘Sprinkin F1’, которые обеспечили прирост урожая к контролю 10,0 и 7,0 т/га, а продукция была высокого товарного качества. Длительный период вегетации у гибрида ‘Richi F1’ – 93 суток не повлиял на качество и урожайность культуры и обеспечил низкие показатели относительно контрольного и исследуемых вариантов. | Мета. Дослідити господарсько-біологічні особливості та розкрити генетичний потенціал різних гібридів капусти пекінської залежно від кліматичної зони вирощування.Методи. Варіантами досліду були гібриди капусти пекінської ‘Pioner F1’ (контроль), ‘Vili F1’, ‘Manoko F1’, ‘Orient Star F1’, ‘Vitimo F1’, ‘Sprinkin F1’, ‘Summer Highland F1’, ‘Suprin F1’, ‘Richi F1’. Площа облікової ділянки 21 м2. Дослід закладався в чотирьох повтореннях, досліджувані варіанти розміщували методом рендомізованих блоків. Касетну розсаду віком 40 діб висаджували в другій декаді квітня за схемою 70 × 25 см.Результати. За одного строку сівби у гібридів сходи з’являлись неодночасно і перші відмічено у гібридів ‘Vili F1’, ‘Manoko F1’, ‘Orient Star F1’та ‘Summer Highland F1’ – на 4 добу після сівби, а у решти – масові сходи спостерігали дещо пізніше, на 5–6 добу після сівби. Найвищий товарний врожай головок одержали у гібридів ‘Vili F1’ (31,7 т/га) та ‘Sprinkin F1’ (28,7 т/га), що на 10,0 і 7,0 т/га більше, ніж у контролі. Істотно нижчою була врожайність у гібридів ‘Summer Highland F1’ – 24,9 і ‘Suprin F1’ – 24,6 т/га. В умовах нестійкого зволоження врожайнішими були гібриди ‘Vili F1’та ‘Sprinkin F1’, які забезпечили приріст урожаю до контролю 10,0 і 7,0 т/га, а продукція була високої товарної якості. Найвищий відсоток сухих розчинних речовин був у головках гібридів ‘Summer Highland F1’ (6,2%) і ‘Sprinkin F1’ (5,9%), що на 1,1 і 0,8% більше за контроль. За сумою цукрів не відмічено істотної різниці між варіантами, даний показник був на рівні контролю (1,7–2,1%). Уміст нітратів у головках досліджуваних гібридів капусти пекінської був у межах допустимої норми – 600 мг/кг сирої маси.Висновки. Фенологічні спостереження за розвитком рослин та їхні біометричні показники залежно від сортових особливостей вказують, що в умовах нестійкого зволоження врожайнішими були гібриди ‘Vili F1’та ‘Sprinkin F1’, які забезпечили приріст урожаю до контролю 10,0 і 7,0 т/га, а продукція була високої товарної якості. Тривалий період вегетації у гібриду ‘Richi F1’– 93 доби, не вплинув на якість і врожайність та забезпечив найнижчі показники відносно контрольного і досліджуваних варіантів. | Purpose. To study the economic and biological characteristics and to reveal the genetic potential of various hybrids of Chinese cabbage depending on the climatic zone of cultivation.Methods. In the experiment, hybrids of Chinese cabbage ‘Pioner F1’ (control), ‘Villi F1’, ‘Manoko F1’, ‘Orient Star F1’, ‘Vitimo F1’, ‘Sprinkin F1’, ‘Summer Highland F1’, ‘Suprin F1’, and ‘Richi F1’ were evaluated. The experiment was laid out in a randomized block design with four replications with a single plot area of 21 m2. The container seedlings (40 days old) were planted in the middle of April according to the scheme 70 cm by 25 cm.Results. Having been planted at the same time, seed germination over the studied hybrids was not simultaneous. The first sprouted seeds (4 days after seeding) belonged to hybrids ‘Villi F1’, ‘Manoko F1’, ‘Orient Star F1’, and‘Summer Highland F1’. Seeds of the other hybrids started active germination on the 5–6 days after seeding. The highest yield of the cabbage heads was obtained from hybrids ‘Villi F1’ (31.7 t/ha) and ‘Sprinkin F1’ (28.7 t/ha), which was 10.0 and 7.0 t/ha more than in the control variant. The yield of ‘Summer Highland F1’ was 24.9 t/ha and ‘Suprin F1’ 24.6 t/ha. Under the conditions of unstable soil moisture, hybrids ‘Villi F1’and ‘Sprinkin F1’ appeared the most productive and ensured yield increase of 10.0 t/ha and 7.0 t/ha, respectively, compared to the control; and crop commercial quality was high. The highest percentage of dry matter (DM) content was in ‘Summer Highland F1’ (6.2%) followed by ‘Sprinkin F1’ (5.9%), which was 1.1% and 0.8% more than in the control. There was no significant difference between the values of the total sugars content over the variants. They ranged between 1.7 and 2.1%, which was similar to the control values. The content of nitrates in the cabbage heads of the studied Chinese cabbage hybrids was within the tolerance limit and amounted to 600 mg/kg (raw mass).Conclusions. Phenological observations of plant development and their biometric indices, depending on the varietal characteristics, indicate that under the conditions of unstable soil moisture, hybrids ‘Villi F1’ and ‘Sprinkin F1’ were more yielding and ensured yield increase of 10.0 t/ha and 7.0 t/ha, respectively, compared to the control. The crop commercial quality was high. The long growing season of ‘Richi F1’ (93 days) did not affect the crop quality and yield and demonstrated the lowest productivity compared to the control and the other experiment variants.
Показать больше [+] Меньше [-]Introduction and use of plants of the species of the genus Physalis L. in Ukraine Полный текст
2020
Бондарчук, О. П | Вергун, О. М | Фіщенко, В. В | Рахметов, Д. Б
Introduction and use of plants of the species of the genus Physalis L. in Ukraine Полный текст
2020
Бондарчук, О. П | Вергун, О. М | Фіщенко, В. В | Рахметов, Д. Б
Purpose. Development of scientific and applied foundations for the introduction, selection and use of plants of the species of the genus Physalis L. to ensure food security in Ukraine. Methods. Subject of study – plants of the genus Physalis. The study was conducted in 2014–2018. on the introduction plots of the department of cultural flora of the M. M. Hryshko National Botanical Garden, NAS of Ukraine (NBG). The work used general scientific and special methods: field, introduction, biological and morphological; laboratory (chemical, biochemical), statistical (methods of analysis of variance and statistical estimation of average data using Microsoft Excel (2010). Results. The features of ontomorphogenesis were established, the biological and morphological parameters of plants of the species of the genus Physalis L. were investigated under conditions of introduction in the Right-Bank Forest-Steppe Ukraine. It was found that the content of dry matter in plant fruits varied from 10 to 18.34%, sugars – from 39.34 to 67.97%, tannins – 1.57 to 3.35% and carotene – from 0.200 to 0.583%, ascorbic acid – from 123.91 to 284.95 mg/100 g, depending on the species, varietal and shape characteristics. Conclusions. It was found that the introduced plant species of the genus Physalis in conditions of culture have four age periods and 10 developmental states: seeds (se), sprouts (p), juvenile (j), immature (im), virginal (v), generative (g), subsenilny (ss) and senile (se). Ph. ixocarpa ‘Likhtaryk’ of the NBG selection was distinguished among the studied introduced species in terms of biological and morphological parameters and biochemical composition. The obtained data can be used for further research and determining the prospects for the introduction of these introduced species into a wide culture
Показать больше [+] Меньше [-]Introduction and use of plants of the species of the genus Physalis L. in Ukraine Полный текст
2020
О. П. Бондарчук | О. М. Вергун | В. В. Фіщенко | Д. Б. Рахметов
Purpose. Development of scientific and applied foundations for the introduction, selection and use of plants of the species of the genus Physalis L. to ensure food security in Ukraine. Methods. Subject of study – plants of the genus Physalis. The study was conducted in 2014–2018. on the introduction plots of the department of cultural flora of the M. M. Hryshko National Botanical Garden, NAS of Ukraine (NBG). The work used general scientific and special methods: field, introduction, biological and morphological; laboratory (chemical, biochemical), statistical (methods of analysis of variance and statistical estimation of average data using Microsoft Excel (2010). Results. The features of ontomorphogenesis were established, the biological and morphological parameters of plants of the species of the genus Physalis L. were investigated under conditions of introduction in the Right-Bank Forest-Steppe Ukraine. It was found that the content of dry matter in plant fruits varied from 10 to 18.34%, sugars – from 39.34 to 67.97%, tannins – 1.57 to 3.35% and carotene – from 0.200 to 0.583%, ascorbic acid – from 123.91 to 284.95 mg/100 g, depending on the species, varietal and shape characteristics. Conclusions. It was found that the introduced plant species of the genus Physalis in conditions of culture have four age periods and 10 developmental states: seeds (se), sprouts (p), juvenile (j), immature (im), virginal (v), generative (g), subsenilny (ss) and senile (se). Ph. ixocarpa ‘Likhtaryk’ of the NBG selection was distinguished among the studied introduced species in terms of biological and morphological parameters and biochemical composition. The obtained data can be used for further research and determining the prospects for the introduction of these introduced species into a wide culture
Показать больше [+] Меньше [-]Bioinformatic analysis of nucleotide sequences of the acetolactate synthase (als) gene of different members of the Poaceae family Полный текст
2020
Кирієнко, А. В | Щербак, Н. Л | Симоненко, Ю. В
Bioinformatic analysis of nucleotide sequences of the acetolactate synthase (als) gene of different members of the Poaceae family Полный текст
2020
Кирієнко, А. В | Щербак, Н. Л | Симоненко, Ю. В
Purpose. Provide bioinformatic analysis and comparison of target regions of the acetolactate synthase (als) gene in several members of the Poaceae family and, on the basis of the obtained data, explore the possibility of creating a unified genetic construct for als gene editing using the CRISPR-Cas9 system. Methods. The als gene sequences of various members of the Poaceae family were obtained from the NCBI: Nucleotide database. For comparison, a fragment of the imi-2 gene of wheat of the soft line ‘TealIMI11A’ was used in two regions of the 367–390 and 1729–1749 nucleotide sequences. The Sequence Viewer 3.37.0 tool was used to assess the presence of nucleotide substitutions in the working sequence of the imi-2 gene. The dendrogram was built using the “Blast Tree” tool from the NCBI: Blast: Nucleotide resource. Results. A comparative analysis of the nucleotide sequences of seven different species was carried out: soft wheat (Triticum aestivum L.), common wild oat (Avena fatua L.), barley (Hordeum vulgare L.), Asian rice (Oryza sativa L.), maize (Zea mays L.), aleppo grass (Sorghum halepense Pers.) and Tausch’s goatgrass (Aegilops tauschii Coss.). The dendrogram is based on the gene sequence als, showed that all studied genotypes can be divided into two blocks: the first block included maize and aleppo grass, and the second block, a separate branch includes Asian rice and common wild oat, barley, soft wheat and Tausch’s goatgrass. 367–390 nucleotide sequences of soft wheat showed the highest 100% homology to Asian rice, Tausch’s goatgrass and common wild oat. The lowest homology was for maize and aleppo grass at 83.3%. Evaluation of the nucleotide sequence 1729–1749 showed no complete homology at the 100% level. It was the highest for barley and Tausch’s goatgrass – 95.2%, and the lowest for rice, maize and aleppo grass – 80.9% each. Conclusions. The analysis confirms a significant degree of homology of the als gene sequence for various species of the Poaceae family, which allows us to create a universal genetic vector. However, taking into account the high degree of sequence homology for species such as soft wheat, Tausch’s goatgrass, barley, Asian rice and common wild oat, it can be assumed that the corresponding genetic vector can be used with the greatest efficiency to alter the als gene of these genotypes.
Показать больше [+] Меньше [-]Bioinformatic analysis of nucleotide sequences of the acetolactate synthase (als) gene of different members of the Poaceae family | Биоинформатический анализ нуклеотидных последовательностей гена ацетолактат синтазы (als) различных представителей семейства Злаковых | Біоінформатичний аналіз нуклеотидних послідовностей гена ацетолактат синтази (als) різних представників родини Злакових Полный текст
2020
Симоненко, Ю. В. | Кирієнко, А. В. | Щербак, Н. Л.
Purpose. Provide bioinformatic analysis and comparison of target regions of the acetolactate synthase (als) gene in several members of the Poaceae family and, on the basis of the obtained data, explore the possibility of creating a unified genetic construct for als gene editing using the CRISPR-Cas9 system.Methods. The als gene sequences of various members of the Poaceae family were obtained from the NCBI: Nucleotide database. For comparison, a fragment of the imi-2 gene of wheat of the soft line ‘TealIMI11A’ was used in two regions of the 367–390 and 1729–1749 nucleotide sequences. The Sequence Viewer 3.37.0 tool was used to assess the presence of nucleotide substitutions in the working sequence of the imi-2 gene. The dendrogram was built using the “Blast Tree” tool from the NCBI: Blast: Nucleotide resource. Results. A comparative analysis of the nucleotide sequences of seven different species was carried out: soft wheat (Triticum aestivum L.), common wild oat (Avena fatua L.), barley (Hordeum vulgare L.), Asian rice (Oryza sativa L.), maize (Zea mays L.), aleppo grass (Sorghum halepense Pers.) and Tausch’s goatgrass (Aegilops tauschii Coss.). The dendrogram is based on the gene sequence als, showed that all studied genotypes can be divided into two blocks: the first block included maize and aleppo grass, and the second block, a separate branch includes Asian rice and common wild oat, barley, soft wheat and Tausch’s goatgrass. 367–390 nucleotide sequences of soft wheat showed the highest 100% homology to Asian rice, Tausch’s goatgrass and common wild oat. The lowest homology was for maize and aleppo grass at 83.3%. Evaluation of the nucleotide sequence 1729–1749 showed no complete homology at the 100% level. It was the highest for barley and Tausch’s goatgrass – 95.2%, and the lowest for rice, maize and aleppo grass – 80.9% each.Conclusions. The analysis confirms a significant degree of homology of the als gene sequence for various species of the Poaceae family, which allows us to create a universal genetic vector. However, taking into account the high degree of sequence homology for species such as soft wheat, Tausch’s goatgrass, barley, Asian rice and common wild oat, it can be assumed that the corresponding genetic vector can be used with the greatest efficiency to alter the als gene of these genotypes. | Цель. Провести биоинформатический анализ и сравнить целевые участки гена ацетолактат синтазы (als) у нескольких представителей семейства Злаковых и на основе полученных данных исследовать возможность создания унифицированной генетической конструкции для направленного изменения гена als с помощью системы CRISPR-Cas9.Методы. Сиквенсы гена als различных представителей семейства Злаковых были получены из базы данных NCBI: Nucleotide. Для сравнения был использован фрагмент гена imi-2 пшеницы мягкой линии ‘TealIMI11A’ в двух участках сиквенса 367–390 и 1729–1749 нуклеотидов. Для оценки наличия нуклеотидных замен в рабочих сиквенсах гена imi-2 использовали инструмент ‘Sequence Viewer 3.37.0’. Дендрограмму строили с использованием инструмента “Blast Tree” с ресурса NCBI: Blast: Nucleotide. Результаты. Был проведен сравнительный анализ нуклеотидных последовательностей семи различных видов: пшеницы мягкой (Triticum aestivum L.), овсюга обыкновенного (Avena fatua L.), ячменя обыкновенного (Hordeum vulgare L.), риса посевного (Oryza sativa L.), кукурузы (Zea mays L.), сорго алепского (Sorghum halepense Pers.) и эгилопса Тауша (Aegilops tauschii Coss.). На основе сравнительного анализа сиквенса участков гена іmi-2 для 7-ми генотипов построили филогенетическое дерево, которое показало, что исследованные виды можно разделить на два блока. В первый блок вошли кукуруза и сорго алеппское, а ко второму блоку – рис посевной, овсюг обыкновенный, ячмень обыкновенный, пшеница мягкая и эгилопс Тауша. Определение степени гомологии между последовательностью 367–390 нуклеотида пшеницы мягкой и другими видами показала, что абсолютной была гомология с соответствующими последовательностями риса посевного, эгилопса Тауша и овсюга обыкновенного (100%). Наименьшим нуклеотидное родство оказалось для кукурузы и сорго алеппского – по 83,3%. На участке 1729–1749 нуклеотидов гена іmi-2 никакой из 6 сиквенсов не показал 100% гомологии с последовательностью пшеницы мягкой. Самой высокой она была для ячменя обыкновенного и эгилопса Тауша – 95,2%, а наименьшей для риса посевного, кукурузы и сорго алеппского – по 80,9%.Выводы. Проведенный анализ подтверждает значительную степень гомологии последовательности гена als для различных видов семейства Злаковых. Это позволяет допустить возможность создания универсальной генетической конструкции, с помощью которой можно осуществлять редактирование генома и получения растений, устойчивых к гербициду разных представителей этой семьи. Учитывая высокую степень гомологии последовательностей для таких видов как пшеница мягкая, эгилопс Тауша, ячмень обыкновенный, рис посевной и овсюг обыкновенный, можно предположить, что с наибольшей эффективностью соответствующая генетическая конструкция может быть использована для редактирования гена als именно этих генотипов. | Провести біоінформатичний аналіз та порівняти цільові ділянки гена ацетолактат синтази (als) у декількох представників родини Злакових і на основі отриманих даних дослідити можливість створення уніфікованої генетичної конструкції для направленого редагування гена als за допомогою системи CRISPR-Cas9. Методи. Сиквенси гена als різних представників родини Злакових було отримано з бази даних NCBI: Nucleotide. Для порівняння було використано фрагмент гена іmi-2 пшениці м’якої лінії ‘TealIMI11A’ у двох ділянках сиквенсу: 367–390 та 1729–1749 нуклеотидів. Для оцінювання наявності нуклеотидних замін в робочих сиквенсах гена іmi-2 використовували інструмент “SequenceViewer 3.37.0”. Дендрограму будували з використанням інструменту ‘BlastTree’ з ресурсу NCBI: Blast: Nucleotide. Результати. Було проаналізовано нуклеотидні послідовності сімох різних видів: пшениці м’якої (TriticumaestivumL.), вівсюга звичайного (AvenafatuaL.), ячменю звичайного (HordeumvulgareL.), рису посівного (OryzasativaL.), кукурудзи (ZeamaysL.), сорго алепського (SorghumhalepensePers.) та егілопса Тауша (AegilopstauschiiCoss.). На основі порівняльного аналізу сиквенсу ділянок гена іmi-2 для 7-ми генотипів було побудовано філогенетичне дерево, яке показало, що досліджені види можна поділити на два блоки. До одного з них увійшли кукурудза та сорго алепське, а до другого – рис посівний, вівсюг звичайний, ячмінь звичайний, пшениця м’яка та егілопс Тауша. Визначення ступеня гомології між послідовністю 367–390 нуклеотиду пшениці м’якої та іншими видами показало, що абсолютною була гомологія з відповідними послідовностями рису посівного, егілопса Тауша та вісюга звичайного (100%). Найменшою нуклеотидна спорідненість виявилась для кукурудзи та сорго алепського – 83,3%. У ділянці 1729–1749 нуклеотидів гена іmi-2 жоден з 6 сиквенсів не показав 100% гомології з послідовністю пшениці м’якої. Найвищою вона була до ячменю звичайного та егілопсу Тауша – 95,2%, а найменшою для рису посівного, кукурудзи та сорго алепського – по 80,9%. Висновки. Проведений аналіз підтверджує значний ступінь гомології послідовності гена als для різних видів родини Злакових. Це дозволяє зробити припущення про можливість створення універсальної генетичної конструкції, за допомогою якої можна редагувати геном та отримувати рослини, стійкі до гербіцидів різних представників цієї родини. Зважаючи на вищий ступінь гомології послідовностей для таких видів як пшениця м’яка, егілопс Тауша, ячмінь звичайний, рис посівний та вівсюг звичайний, можна припустити, що ефективнішою відповідна генетична конструкція буде для редагування гена als саме цих генотипів.
Показать больше [+] Меньше [-]Bioinformatic analysis of nucleotide sequences of the acetolactate synthase (als) gene of different members of the Poaceae family Полный текст
2020
А. В. Кирієнко | Н. Л. Щербак | Ю. В. Симоненко
Purpose. Provide bioinformatic analysis and comparison of target regions of the acetolactate synthase (als) gene in several members of the Poaceae family and, on the basis of the obtained data, explore the possibility of creating a unified genetic construct for als gene editing using the CRISPR-Cas9 system. Methods. The als gene sequences of various members of the Poaceae family were obtained from the NCBI: Nucleotide database. For comparison, a fragment of the imi-2 gene of wheat of the soft line ‘TealIMI11A’ was used in two regions of the 367–390 and 1729–1749 nucleotide sequences. The Sequence Viewer 3.37.0 tool was used to assess the presence of nucleotide substitutions in the working sequence of the imi-2 gene. The dendrogram was built using the “Blast Tree” tool from the NCBI: Blast: Nucleotide resource. Results. A comparative analysis of the nucleotide sequences of seven different species was carried out: soft wheat (Triticum aestivum L.), common wild oat (Avena fatua L.), barley (Hordeum vulgare L.), Asian rice (Oryza sativa L.), maize (Zea mays L.), aleppo grass (Sorghum halepense Pers.) and Tausch’s goatgrass (Aegilops tauschii Coss.). The dendrogram is based on the gene sequence als, showed that all studied genotypes can be divided into two blocks: the first block included maize and aleppo grass, and the second block, a separate branch includes Asian rice and common wild oat, barley, soft wheat and Tausch’s goatgrass. 367–390 nucleotide sequences of soft wheat showed the highest 100% homology to Asian rice, Tausch’s goatgrass and common wild oat. The lowest homology was for maize and aleppo grass at 83.3%. Evaluation of the nucleotide sequence 1729–1749 showed no complete homology at the 100% level. It was the highest for barley and Tausch’s goatgrass – 95.2%, and the lowest for rice, maize and aleppo grass – 80.9% each. Conclusions. The analysis confirms a significant degree of homology of the als gene sequence for various species of the Poaceae family, which allows us to create a universal genetic vector. However, taking into account the high degree of sequence homology for species such as soft wheat, Tausch’s goatgrass, barley, Asian rice and common wild oat, it can be assumed that the corresponding genetic vector can be used with the greatest efficiency to alter the als gene of these genotypes.
Показать больше [+] Меньше [-]Alleles of Ppd-1 genes that control sensitivity to photoperiod in a number of bread winter wheat genotypes Полный текст
2020
Бакума, А. О | Чеботар, Г. О | Tkachuk, A. V. | Чеботар, С. В | Москалець, Т. З | Москалeць, В. В
Alleles of Ppd-1 genes that control sensitivity to photoperiod in a number of bread winter wheat genotypes Полный текст
2020
Бакума, А. О | Чеботар, Г. О | Tkachuk, A. V. | Чеботар, С. В | Москалець, Т. З | Москалeць, В. В
Purpose. Analysis of the allelic state of Ppd-1 genes, which control sensitivity to photoperiod, in varieties and lines of bread winter wheat, and comparison of the results obtained with field observations on the duration of periods before heading and flowering, whose originators were the Nosivska Breeding and Research Station of the V. M. Remeslo Myronivka Institute of Wheat National Academy of Agrarian Sciences of Ukraine and Poltava State Agrarian Academy of the Ministry of Education and Science of Ukraine. Methods. The following methods were used in the work: DNA extraction, allele-specific PCR, agarose and polyacrylamide gel electrophoresis, analysis of variance. Results. It was revealed that ‘Yuvivata 60’ variety has a recessive Ppd-1 genotype and belongs to the III haplotype by a combination of mutations in the structure of Ppd-D1 gene. Line ‘L41/95’ was heterogeneous by alleles of Ppd-D1 gene, which corresponded to the presence of haplotypes III and VII. All other tested cultivars and lines were characterized by alleles Ppd-A1b, Ppd-B1b and Ppd-D1a, and assigned to haplotype VII. According to the results of statistical data processing, the duration of the period from May, 1 to heading was the smallest for the variety ‘Donskaya polukarlikovaya’ in the conditions of both the Forest-Steppe and Polissia-Forest-Steppe regions of Ukraine, the longest – in the varieties ‘Yuvivata 60’, ‘Myronivska 61’ and ‘L41/95’. The differences between these groups were significant and amounted to 10 days. Conclusions. A breeding material with a high adaptive ability for growing conditions in Polissia-Forest-Steppe zone was studied by the allelic state of the Ppd-1 genes. A low level of polymorphism in the studied varieties and lines was revealed by the alleles of Ppd-1 genes [12.5% – Ppd-D1b (²²²), 12.5% – Ppd-D1à/b (²²²/VII), 75% – Ppd-D1a (VII)], that agrees with the hypothesis that breeders gave a greater preference for the photoperiod-insensitive wheat genotype under Ukrainian conditions. The genotypes with the dominant Ppd-D1a (VII) gene almost completely dominate in the south of Ukraine. At the same time, in northern latitudes, weather conditions negate the advantages of the genotypes with Ppd-D1a gene
Показать больше [+] Меньше [-]Алельний стан Ppd-1 генів, що контролюють чутливість до фотоперіоду, у низки генотипів пшениці м’якої озимої | Alleles of Ppd-1 genes that control sensitivity to photoperiod in a number of bread winter wheat genotypes Полный текст
2020
Ткачук, А. В. | Чеботар, С. В. | Москалeць, В. В. | Чеботар, Г. О. | Москалець, Т. З. | Бакума, А. О.
Purpose. Analysis of the allelic state of Ppd-1 genes, which control sensitivity to photoperiod, in varieties and lines of bread winter wheat, and comparison of the results obtained with field observations on the duration of periods before heading and flowering, whose originators were the Nosivska Breeding and Research Station of the V. M. Remeslo Myronivka Institute of Wheat National Academy of Agrarian Sciences of Ukraine and Poltava State Agrarian Academy of the Ministry of Education and Science of Ukraine.Methods. The following methods were used in the work: DNA extraction, allele-specific PCR, agarose and polyacrylamide gel electrophoresis, analysis of variance.Results. It was revealed that ‘Yuvivata 60’ variety has a recessive Ppd-1 genotype and belongs to the III haplotype by a combination of mutations in the structure of Ppd-D1 gene. Line ‘L41/95’ was heterogeneous by alleles of Ppd-D1 gene, which corresponded to the presence of haplotypes III and VII. All other tested cultivars and lines were characterized by alleles Ppd-A1b, Ppd-B1b and Ppd-D1a, and assigned to haplotype VII. According to the results of statistical data processing, the duration of the period from May, 1 to heading was the smallest for the variety ‘Donskaya polukarlikovaya’ in the conditions of both the Forest-Steppe and Polissia-Forest-Steppe regions of Ukraine, the longest – in the varieties ‘Yuvivata 60’, ‘Myronivska 61’ and ‘L41/95’. The differences between these groups were significant and amounted to 10 days.Conclusions. A breeding material with a high adaptive ability for growing conditions in Polissia-Forest-Steppe zone was studied by the allelic state of the Ppd-1 genes. A low level of polymorphism in the studied varieties and lines was revealed by the alleles of Ppd-1 genes [12.5% – Ppd-D1b (²²²), 12.5% – Ppd-D1à/b (²²²/VII), 75% – Ppd-D1a (VII)], that agrees with the hypothesis that breeders gave a greater preference for the photoperiod-insensitive wheat genotype under Ukrainian conditions. The genotypes with the dominant Ppd-D1a (VII) gene almost completely dominate in the south of Ukraine. At the same time, in northern latitudes, weather conditions negate the advantages of the genotypes with Ppd-D1a gene | Мета. Визначення алельного стану генів Ppd-1, що контролюють чутливість до фотоперіоду, у сортів та ліній пшениці м’якої озимої Носівської селекційно-дослідної станції Миронівського інституту пшениці ім. В. М. Ремесла НААН (НСДС МІП) і Полтавської державної аграрної академії МОН України (ПДАА), та зіставлення отриманих результатів молекулярно-генетичного аналізу з даними польових спостережень щодо строків колосіння та цвітіння.Методи. Виділення ДНК, алель-специфічна ПЛР, електрофорез фрагментів ампліфікації в агарозних та поліакриаламідних гелях, дисперсійний аналіз.Результати. Визначено, що сорт ‘Ювівата 60’ має рецесивний генотип Ppd-1 та належить до ІІІ гаплотипу за комбінацією мутацій у структурі Ppd-D1 гена. Лінія ‘Л41/95’ виявилася гетерогенною за алелями гена Ppd-D1, що відповідало наявності гаплотипів III і VII. Усі інші досліджені зразки характеризувалися алелями Ppd-A1b, Ppd-B1b та Ppd-D1а та належали до гаплотипу VII. За результатами статистичної обробки даних тривалість періоду від першого травня до колосіння була найменшою в сорту ‘Донская полукарликовая’ в умовах як Лісостепу, так і Полісся–Лісостепу України, найбільшою – у сортів ‘Ювівата 60’, ‘Миронівська 61’ та лінії ‘Л41/95’. Відмінності між зазначеними групами були достовірними й становили приблизно 10 діб.Висновки. За алельним станом генів Ppd-1 досліджено селекційний матеріал з високою адаптивною здатністю для умов вирощування в перехідній зоні Полісся–Лісостеп. За алелями генів Ppd-1 досліджені сорти та лінії виявили невисокий рівень поліморфізму [12,5% – Ppd-D1b (ІІІ), 12,5% – Ppd-D1а/b (ІІІ/VII), 75% – Ppd-D1a (VII)], що узгоджується з гіпотезою надання селекціонерами більшої переваги слабкочутливим до фотоперіоду генотипам пшениці в умовах України. Генотипи з домінантним алелем Ppd-D1a (VII) в умовах Півдня України практично повністю домінують. Водночас у північніших широтах погодні умови нівелюють переваги, що мають генотипи з Ppd-D1a.
Показать больше [+] Меньше [-]Alleles of Ppd-1 genes that control sensitivity to photoperiod in a number of bread winter wheat genotypes Полный текст
2020
А. О. Бакума | Г. О. Чеботар | А. В. Ткачук | С. В. Чеботар | Т. З. Москалець | В. В. Москалeць
Purpose. Analysis of the allelic state of Ppd-1 genes, which control sensitivity to photoperiod, in varieties and lines of bread winter wheat, and comparison of the results obtained with field observations on the duration of periods before heading and flowering, whose originators were the Nosivska Breeding and Research Station of the V. M. Remeslo Myronivka Institute of Wheat National Academy of Agrarian Sciences of Ukraine and Poltava State Agrarian Academy of the Ministry of Education and Science of Ukraine. Methods. The following methods were used in the work: DNA extraction, allele-specific PCR, agarose and polyacrylamide gel electrophoresis, analysis of variance. Results. It was revealed that ‘Yuvivata 60’ variety has a recessive Ppd-1 genotype and belongs to the III haplotype by a combination of mutations in the structure of Ppd-D1 gene. Line ‘L41/95’ was heterogeneous by alleles of Ppd-D1 gene, which corresponded to the presence of haplotypes III and VII. All other tested cultivars and lines were characterized by alleles Ppd-A1b, Ppd-B1b and Ppd-D1a, and assigned to haplotype VII. According to the results of statistical data processing, the duration of the period from May, 1 to heading was the smallest for the variety ‘Donskaya polukarlikovaya’ in the conditions of both the Forest-Steppe and Polissia-Forest-Steppe regions of Ukraine, the longest – in the varieties ‘Yuvivata 60’, ‘Myronivska 61’ and ‘L41/95’. The differences between these groups were significant and amounted to 10 days. Conclusions. A breeding material with a high adaptive ability for growing conditions in Polissia-Forest-Steppe zone was studied by the allelic state of the Ppd-1 genes. A low level of polymorphism in the studied varieties and lines was revealed by the alleles of Ppd-1 genes [12.5% – Ppd-D1b (²²²), 12.5% – Ppd-D1à/b (²²²/VII), 75% – Ppd-D1a (VII)], that agrees with the hypothesis that breeders gave a greater preference for the photoperiod-insensitive wheat genotype under Ukrainian conditions. The genotypes with the dominant Ppd-D1a (VII) gene almost completely dominate in the south of Ukraine. At the same time, in northern latitudes, weather conditions negate the advantages of the genotypes with Ppd-D1a gene
Показать больше [+] Меньше [-]Yield plasticity of sunflower hybrids in the conditions of the Left-Bank Forest-Steppe of Ukraine Полный текст
2020
Риженко, А. С | Каленська, С. М | Присяжнюк, О. І | Мокрієнко, В. А
Yield plasticity of sunflower hybrids in the conditions of the Left-Bank Forest-Steppe of Ukraine Полный текст
2020
Риженко, А. С | Каленська, С. М | Присяжнюк, О. І | Мокрієнко, В. А
Purpose. To determine the level of productivity of sunflower hybrids, their stability and plasticity for cultivation in the Left Bank Forest-Steppe of Ukraine. Methods. The field experiment was performed in the conditions of the Left-Bank Forest-Steppe of Ukraine in 2016–2018. The peculiarities of plant growth and development, formation of yield of hybrids ‘Ukrainskyi F1’ (k), ‘P64LL125’, ‘P63LE10’, ‘P64F50’, ‘P64F66’, ‘P63LL06’, ‘NK Konti’ (k), ‘NK Brio’, ‘P64LE99’, ‘Laskala’, ‘Kupava’. Yield plasticity was calculated and analyzed by the Ebergard – Russell method. Results. Over the years of research, the average yield of sunflower hybrids in the Left-Bank Forest-Steppe of Ukraine varied from 2.71 to 4.04 t/ha. The lowest yield was shown by the ‘Ukrainskyi F1’ hybrid – 2.42–3.05 t/ha, the highest ‘Laskala’ – 3.79–4.26 t/ha. It was determined that in the conditions of the Left-Bank Forest-Steppe, there is no absolute predominance of medium-ripe hybrids in terms of yield. Conclusions. According to the results of the analysis of yield plasticity of sunflower hybrids, it was determined that the group of samples with high yield plasticity includes ‘Ukrainskyi F1’, ‘P64F50’, ‘P64F66’, ‘NK Konti’, ‘NK Brio’, ‘P64LE99’, ‘Lascala’ and ‘Kupava’. They respond to the improvement of the level of agricultural technology and provide the maximum yield only under the conditions of optimal factors. Hybrids ‘P64LL125’, ‘P63LE10’ and ‘P63LL06’ are more stable in response to changes in growing conditions without reductions in yield. As for the shares of the influence of the studied factors, the yield of the hybrid ‘Ukrainskyi F1’ was most influenced by the conditions of the year, ‘NK Brio’ – the sowing rate. For the ‘NK Ferti’ hybrid, the conditions of the year and the sowing rate are equally important.
Показать больше [+] Меньше [-]Yield plasticity of sunflower hybrids in the conditions of the Left-Bank Forest-Steppe of Ukraine Полный текст
2020
А. С. Риженко | С. М. Каленська | О. І. Присяжнюк | В. А. Мокрієнко
Purpose. To determine the level of productivity of sunflower hybrids, their stability and plasticity for cultivation in the Left Bank Forest-Steppe of Ukraine. Methods. The field experiment was performed in the conditions of the Left-Bank Forest-Steppe of Ukraine in 2016–2018. The peculiarities of plant growth and development, formation of yield of hybrids ‘Ukrainskyi F1’ (k), ‘P64LL125’, ‘P63LE10’, ‘P64F50’, ‘P64F66’, ‘P63LL06’, ‘NK Konti’ (k), ‘NK Brio’, ‘P64LE99’, ‘Laskala’, ‘Kupava’. Yield plasticity was calculated and analyzed by the Ebergard – Russell method. Results. Over the years of research, the average yield of sunflower hybrids in the Left-Bank Forest-Steppe of Ukraine varied from 2.71 to 4.04 t/ha. The lowest yield was shown by the ‘Ukrainskyi F1’ hybrid – 2.42–3.05 t/ha, the highest ‘Laskala’ – 3.79–4.26 t/ha. It was determined that in the conditions of the Left-Bank Forest-Steppe, there is no absolute predominance of medium-ripe hybrids in terms of yield. Conclusions. According to the results of the analysis of yield plasticity of sunflower hybrids, it was determined that the group of samples with high yield plasticity includes ‘Ukrainskyi F1’, ‘P64F50’, ‘P64F66’, ‘NK Konti’, ‘NK Brio’, ‘P64LE99’, ‘Lascala’ and ‘Kupava’. They respond to the improvement of the level of agricultural technology and provide the maximum yield only under the conditions of optimal factors. Hybrids ‘P64LL125’, ‘P63LE10’ and ‘P63LL06’ are more stable in response to changes in growing conditions without reductions in yield. As for the shares of the influence of the studied factors, the yield of the hybrid ‘Ukrainskyi F1’ was most influenced by the conditions of the year, ‘NK Brio’ – the sowing rate. For the ‘NK Ferti’ hybrid, the conditions of the year and the sowing rate are equally important.
Показать больше [+] Меньше [-]Analysis of the biological efficiency and quality factors of mushrooms of the genus Pleurotus (Fr.) P.Kumm as a model of effective cultivation of lignicolous fungi with high functional value Полный текст
2020
Бандура, І. І | Кулик, А. С | Бісько, Н. А | Хареба, О. В | Цизь, О. М | Хареба, В. В
Analysis of the biological efficiency and quality factors of mushrooms of the genus Pleurotus (Fr.) P.Kumm as a model of effective cultivation of lignicolous fungi with high functional value Полный текст
2020
Бандура, І. І | Кулик, А. С | Бісько, Н. А | Хареба, О. В | Цизь, О. М | Хареба, В. В
Purpose. Morphological and organoleptic evaluation of oyster mushroom strains for selection of highly productive cultivars assortment with valuable consumer properties for winter and summer cultivation and suitability for sale in fresh or processed form were investigated. Methods. The scheme of the experiment included six strains of oyster mushrooms belonging to two species: Pleurotus ostreatus (5 strains: 2301, Z, 2316, 2456, 431) and P. pulmonarius (2314). Laboratory, laboratory-industrial and statistical methods are used. Results. The dynamics of agrochemical parameters of substrates obtained by the method of aerobic fermentation in the high layer proved their optimality according to the main criteria and compliance to regulatory documentation. The biological efficiency of the strains was in the range of 40–78.9%. The highest weight of clusters was found in the “summer” strain 431 (430.7 g). The highest weight of the fruiting body was determined for the strain 2301 (15.2 g), the lowest – for the 2456 (3.3 g). Conclusions. The values of biological efficiency of strains was determined. The highest average values for the first flush of fruiting had strains 2316 (78.9%) from the “winter” group (A) and 431 (78.4%) from the “summer” group (B). According to the results of statistical analysis, significant differences were revealed between the studied strains in the main morphological indicators of clusters. It was found that the mass of clusters of «winter» cultivars is much less dependent on the strain type (220.8–273.4 g) than that of «summer» cultivars (83.4–430.7 g). The index of the asymmetry coefficient of the cluster, which can be useful for calculating the required container sizes was proposed. It was determined that the morphological features of fruiting bodies had significant differences in all studied parameters. In particular, the A group strains differed in size and weight. It was proposed the index of weight loss of the crop coefficient, which shows the ratio between the cap and stipe of the fruiting body and make it possible to predict the amount of mushroom raw material that will be sold in the form of caps, and the amount of raw material that can be processed into minced mushroom, powder and others. The best coefficient was obtained for the fruiting bodies of strain 2314 (0.87), and the worst – for 2456 (0.59), which, accordingly, is not recommended for sale by individual fruiting bodies. It was found that the fruiting bodies of high-yielding strains 2316 and 431 had a number of organoleptic defects.
Показать больше [+] Меньше [-]Analysis of the biological efficiency and quality factors of mushrooms of the genus Pleurotus (Fr.) P.Kumm as a model of effective cultivation of lignicolous fungi with high functional value Полный текст
2020
І. І. Бандура | А. С. Кулик | Н. А. Бісько | О. В. Хареба | О. М. Цизь | В. В. Хареба
Purpose. Morphological and organoleptic evaluation of oyster mushroom strains for selection of highly productive cultivars assortment with valuable consumer properties for winter and summer cultivation and suitability for sale in fresh or processed form were investigated. Methods. The scheme of the experiment included six strains of oyster mushrooms belonging to two species: Pleurotus ostreatus (5 strains: 2301, Z, 2316, 2456, 431) and P. pulmonarius (2314). Laboratory, laboratory-industrial and statistical methods are used. Results. The dynamics of agrochemical parameters of substrates obtained by the method of aerobic fermentation in the high layer proved their optimality according to the main criteria and compliance to regulatory documentation. The biological efficiency of the strains was in the range of 40–78.9%. The highest weight of clusters was found in the “summer” strain 431 (430.7 g). The highest weight of the fruiting body was determined for the strain 2301 (15.2 g), the lowest – for the 2456 (3.3 g). Conclusions. The values of biological efficiency of strains was determined. The highest average values for the first flush of fruiting had strains 2316 (78.9%) from the “winter” group (A) and 431 (78.4%) from the “summer” group (B). According to the results of statistical analysis, significant differences were revealed between the studied strains in the main morphological indicators of clusters. It was found that the mass of clusters of «winter» cultivars is much less dependent on the strain type (220.8–273.4 g) than that of «summer» cultivars (83.4–430.7 g). The index of the asymmetry coefficient of the cluster, which can be useful for calculating the required container sizes was proposed. It was determined that the morphological features of fruiting bodies had significant differences in all studied parameters. In particular, the A group strains differed in size and weight. It was proposed the index of weight loss of the crop coefficient, which shows the ratio between the cap and stipe of the fruiting body and make it possible to predict the amount of mushroom raw material that will be sold in the form of caps, and the amount of raw material that can be processed into minced mushroom, powder and others. The best coefficient was obtained for the fruiting bodies of strain 2314 (0.87), and the worst – for 2456 (0.59), which, accordingly, is not recommended for sale by individual fruiting bodies. It was found that the fruiting bodies of high-yielding strains 2316 and 431 had a number of organoleptic defects.
Показать больше [+] Меньше [-]Economic and biological assessment of Tartary buckwheat variety ‘Kalyna’ Полный текст
2020
Вільчинська, Л. А | Хоменко, Т. М | Ночвіна, О. В
Economic and biological assessment of Tartary buckwheat variety ‘Kalyna’ Полный текст
2020
Вільчинська, Л. А | Хоменко, Т. М | Ночвіна, О. В
Purpose. To evaluate Tartary buckwheat variety ‘Kalyna’ according to morphological, productive and quality indicators in the conditions of the Research Center “State Agrarian and Engineering University in Podilia”. Methods. The studies were carried out in the field crop rotation of the Research Center “Podillia” of the State Agrarian and Engineering University in Podilia (SAEU) in 2015–2020. The soil cover of the experimental field is represented mainly by low-humus, weakly leached soils. Experiment setting, material evaluation, analysis of plants, yield and grain quality were carried out in accordance with the generally accepted methods of state variety testing. An assessment of the Tartary buckwheat variety ‘Kalyna’ was carried out in comparison with the common buckwheat variety ‘Victoriia’. Results. The growing season duration of Tartary buckwheat variety ‘Kalyna’ was 87 days (38 days vegetative and 49 days generative). In the studied variety, a larger number of the 1st order branches up to 5.5 pcs was observed. The number of leaves on the plant was 22–28 pcs./plants. In the studied variety, more than 50% of the grains were located on the main stem and the first order branches, while in common buckwheat this indicator was only 30%. Productivity was 2,28 t/ha, the number of grains in inflorescences was 4,4 grains, in common buckwheat – 0,72 t/ha, and 2.2 grains/inflorescence, respectively. The thousand kernel weight in Tartary buckwheat variety ‘Kalyna’ is 10.2 g less than in common buckwheat variety ‘Victoriia’ and is 17.4 g, with hulls – 19.5%, which is 3.2% less then in common buckwheat variety.Assessment of Tartary buckwheat variety ‘Kalyna’ for resistance to the effects of bio- and abiotic factors indicates that it was at the level of common buckwheat variety ‘Victoriia’.In terms of resistance to abiotic factors, ‘Kalyna’ variety is characterized by high resistance to spontaneous fallof grain (5 scores) and has simultaneous grain ripening (5 scores). Conclusions.The morphological and economic-biological indicators of Tartary buckwheat variety ‘Kalyna’ are significantly higher than the common buckwheat variety ‘Victoriia’. It is recommended to grow Tartary buckwheat variety ‘Kalyna’ as a valuable cereal crop in the Western Forest-Steppe zone.
Показать больше [+] Меньше [-]Economic and biological assessment of Tartary buckwheat variety ‘Kalyna’ Полный текст
2020
Л. А. Вільчинська | Т. М. Хоменко | О. В. Ночвіна
Purpose. To evaluate Tartary buckwheat variety ‘Kalyna’ according to morphological, productive and quality indicators in the conditions of the Research Center “State Agrarian and Engineering University in Podilia”. Methods. The studies were carried out in the field crop rotation of the Research Center “Podillia” of the State Agrarian and Engineering University in Podilia (SAEU) in 2015–2020. The soil cover of the experimental field is represented mainly by low-humus, weakly leached soils. Experiment setting, material evaluation, analysis of plants, yield and grain quality were carried out in accordance with the generally accepted methods of state variety testing. An assessment of the Tartary buckwheat variety ‘Kalyna’ was carried out in comparison with the common buckwheat variety ‘Victoriia’. Results. The growing season duration of Tartary buckwheat variety ‘Kalyna’ was 87 days (38 days vegetative and 49 days generative). In the studied variety, a larger number of the 1st order branches up to 5.5 pcs was observed. The number of leaves on the plant was 22–28 pcs./plants. In the studied variety, more than 50% of the grains were located on the main stem and the first order branches, while in common buckwheat this indicator was only 30%. Productivity was 2,28 t/ha, the number of grains in inflorescences was 4,4 grains, in common buckwheat – 0,72 t/ha, and 2.2 grains/inflorescence, respectively. The thousand kernel weight in Tartary buckwheat variety ‘Kalyna’ is 10.2 g less than in common buckwheat variety ‘Victoriia’ and is 17.4 g, with hulls – 19.5%, which is 3.2% less then in common buckwheat variety.Assessment of Tartary buckwheat variety ‘Kalyna’ for resistance to the effects of bio- and abiotic factors indicates that it was at the level of common buckwheat variety ‘Victoriia’.In terms of resistance to abiotic factors, ‘Kalyna’ variety is characterized by high resistance to spontaneous fallof grain (5 scores) and has simultaneous grain ripening (5 scores). Conclusions.The morphological and economic-biological indicators of Tartary buckwheat variety ‘Kalyna’ are significantly higher than the common buckwheat variety ‘Victoriia’. It is recommended to grow Tartary buckwheat variety ‘Kalyna’ as a valuable cereal crop in the Western Forest-Steppe zone.
Показать больше [+] Меньше [-]Expression of gus and gfp genes in amphidiploid spelt wheat (Triticum spelta L.) after Agrobacterium-mediated transformation Полный текст
2020
Кирієнко, А. В | Кучук, М. В | Щербак, Н. Л | Парій, М. Ф | Симоненко, Ю. В
Expression of gus and gfp genes in amphidiploid spelt wheat (Triticum spelta L.) after Agrobacterium-mediated transformation Полный текст
2020
Кирієнко, А. В | Кучук, М. В | Щербак, Н. Л | Парій, М. Ф | Симоненко, Ю. В
Purpose. To study the expression of gus and gfp genes in callus explants of amphidiploid spelt wheat (Triticum spelta L.) after Agrobacterium-mediated genetic transformation. Methods. Winter spelt wheat of ‘Europa’ variety was chosen for transformation. Calli obtained from mature embryos were used as explants. Callus pre-cultivation was carried out on MS nutrient medium (Murashige–Skoog) supplemented with 2 mg/L 2.4-D (2.4-Dichlorophenoxyacetic acid) and 10 mg/L silver nitrate. For genetic transformation, Agrobacterium tumefaciens Conn., strain GV3101 and a genetic construct with reporter genes beta-glucuronidase (GUS) and green fluorescent protein (GFP) were used. Calli were transformed by inoculation with agrobacteria and vacuum infiltration. Then they were co-cultured on MS medium with 2 mg/L 2.4-D and 10 mg/L AgNO3, but without antibiotics. The expression of the gus gene was checked by histochemical and the gfp gene by visual analysis (fluorescence of the GFP protein in UV light). Gfp and gus gene expression levels were evaluated using ImajeJ software. The integration of the gfp and gus genes into the spelt genome was verified by PCR. Results. Genetic transformation of spelt callus explants by inoculation in a nutrient medium with agrobacteria and vacuum infiltration occurred at different frequencies. The level of expression of the gus gene during vacuum infiltration was 4.66 ± 0.74%, with inoculation – 4.00 ± 0.91%; and the gfp gene with vacuum infiltration – 3.66 ± 0.74%, with inoculation – 4.66 ± 1.39%. The level of expression of the gfp gene was higher when using inoculation with agrobacteria, and the gus gene was higher during vacuum infiltration. Using PCR analysis, the integration of the gfp and gus genes into the callus of spelt genome was confirmed. The length of the PCR product with primers for the gus gene was 240 bp, and 717 bp for the gfp gene. Conclusions. The use of vacuum infiltration and inoculation methods for spelt genetic transformation gave different results. The frequency of genetic transformation ranged from 3.66 to 4.66%. Agrobacterium-mediated genetic transformation of amphidiploid spelt wheat allows us to study the expression of gus and gfp reporter genes using callus explants derived from mature embryos
Показать больше [+] Меньше [-]Expression of gus and gfp genes in amphidiploid spelt wheat (Triticum spelta L.) after Agrobacterium-mediated transformation | Експресія генів gus та gfp у амфідиплоїдної пшениці спельти (Triticum spelta L.) після Agrobacterium-опосередкованої трансформації | Экспрессия генов gus и gfp у амфидиплоидной пшеницы спельты (Triticum spelta L.) после Agrobacterium-опосредованной трансформации Полный текст
2020
Кучук, М. В. | Симоненко, Ю. В. | Парій, М. Ф. | Кирієнко, А. В. | Щербак, Н. Л.
Purpose. To study the expression of gus and gfp genes in callus explants of amphidiploid spelt wheat (Triticum spelta L.) after Agrobacterium-mediated genetic transformation.Methods. Winter spelt wheat of ‘Europa’ variety was chosen for transformation. Calli obtained from mature embryos were used as explants. Callus pre-cultivation was carried out on MS nutrient medium (Murashige–Skoog) supplemented with 2 mg/L 2.4-D (2.4-Dichlorophenoxyacetic acid) and 10 mg/L silver nitrate. For genetic transformation, Agrobacterium tumefaciens Conn., strain GV3101 and a genetic construct with reporter genes beta-glucuronidase (GUS) and green fluorescent protein (GFP) were used. Calli were transformed by inoculation with agrobacteria and vacuum infiltration. Then they were co-cultured on MS medium with 2 mg/L 2.4-D and 10 mg/L AgNO3, but without antibiotics. The expression of the gus gene was checked by histochemical and the gfp gene by visual analysis (fluorescence of the GFP protein in UV light). Gfp and gus gene expression levels were evaluated using ImajeJ software. The integration of the gfp and gus genes into the spelt genome was verified by PCR.Results. Genetic transformation of spelt callus explants by inoculation in a nutrient medium with agrobacteria and vacuum infiltration occurred at different frequencies. The level of expression of the gus gene during vacuum infiltration was 4.66 ± 0.74%, with inoculation – 4.00 ± 0.91%; and the gfp gene with vacuum infiltration – 3.66 ± 0.74%, with inoculation – 4.66 ± 1.39%. The level of expression of the gfp gene was higher when using inoculation with agrobacteria, and the gus gene was higher during vacuum infiltration. Using PCR analysis, the integration of the gfp and gus genes into the callus of spelt genome was confirmed. The length of the PCR product with primers for the gus gene was 240 bp, and 717 bp for the gfp gene.Conclusions. The use of vacuum infiltration and inoculation methods for spelt genetic transformation gave different results. The frequency of genetic transformation ranged from 3.66 to 4.66%. Agrobacterium-mediated genetic transformation of amphidiploid spelt wheat allows us to study the expression of gus and gfp reporter genes using callus explants derived from mature embryos | Цель. Исследовать экспрессию генов gus и gfp в каллюсных эксплантах амфидиплоидной пшеницы спельты (Triticum spelta L.) после Agrobacterium-опосредованной генетической трансформации. Методы. Для трансформации был выбран сорт пшеницы спельты озимой ‘Европа’. В качестве эксплантов использовали каллюсы, полученные из зрелых зародышей. Для прекультивации каллюсов использовали питательную среду МС (Мурасиге–Скуга), дополненную 2 мг/л 2,4-Д (2,4-дихлорфеноксиуксусная кислота) и 10 мг/л нитратом серебра. Для генетической трансформации использовали Agrobacterium tumefaciens Conn., штамм GV3101, и генетическую конструкцию, содержащую репортерные гены gus (ген бета-глюкуронидазы) и gfp (ген зеленого флюоресцентного белка GFP). Каллюсы трансформировали путем инокуляции с агробактериями и вакуумной инфильтрацией. Далее их ко-культивировали на среде МС с 2 мг/л 2,4-Д и 10 мг/л AgNO3, но без антибиотиков. Экспрессию гена gus проверяли с помощью гистохимического анализа, а гена gfp – визуального (флуоресценция белка GFP в UV свете). Уровни экспрессии генов gfp и gus оценивали с помощью программного обеспечения ImajeJ. Интеграцию генов gfp и gus в геном спельты проверяли методом ПЦР. Результаты. Генетическая трансформация каллюсных эксплантов спельты путём их инокуляции в питательной среде с агробактериями и вакуумной инфильтрацией происходила с разной частотой. Уровень экспрессии гена gus при вакуумной инфильтрации составил 4,66 ± 0,74%, а при инокуляции – 4,00 ± 0,91%, а гена gfp при вакуумной инфильтрации – 3,66 ± 0,74%, а при инокуляции – 4,66 ± 1,39%. Уровень экспресии гена gfp был выше в случае использования инокуляции с агробактериями, а гена gus – при вакуумной инфильтрации. При помощи ПЦР анализа была подтверждена интеграция генов gfp и gus в геном каллюсов спельты. Длина ПЦР продукта с праймерами к гену gus составила 240 п. н., а для гена gfp – 717 п. н. Выводы. Использование методов вакуумной инфильтрации и инокуляции для генетической трансформации спельты дали разные результаты. Частота генетической трансформации колебалась от 3,66 до 4,66%. Agrobacterium-опосредованная генетическая трансформация амфидиплоидной пшеницы спельты позволяет исследовать экспрессию репортерных генов gus и gfp при использовании каллюсных эксплантов, полученных из зрелых зародышей. | Мета. Дослідити експресію генів gus та gfp в калюсних експлантах амфідиплоїдної пшениці спельти (Triticum spelta L.) після Agrobacterium-опосередкованої генетичної трансформації. Методи. Для трансформації було обрано сорт пшениці спельти озимої ‘Європа’. Як експланти використовували калюси, отримані зі зрілих зародків. Прекультивацію калюсів здійснювали на живильному середовищі МС (Мурасіге–Скуга), доповненому 2 мг/л 2,4-Д (2,4-дихлорфеноксиоцтова кислота) та 10 мг/л нітратом срібла. Для генетичної трансформації використовували Agrobacterium tumefaciens Conn., штам GV3101, та генетичну конструкцію з репортерними генами gus (ген бета-глюкуронідази (-glucuronidase)) та gfp (ген зеленого флюоресцентного білка (Green Fluorescent Protein, GFP)). Калюси трансформували шляхом інокуляції з агробактеріями та вакуумною інфільтрацією. Далі їх ко-культивували на середовищі МС із 2 мг/л 2,4-Д та 10 мг/л AgNO3, але без антибіотиків. Експресію гена gus перевіряли за допомогою гістохімічного, а гена gfp – візуального аналізу (флуоресценція білка GFP в УФ світлі). Рівні експресії генів gfp та gus оцінювали за допомогою програмного забезпечення ImajeJ. Інтеграцію генів gfp та gus в геном спельти перевіряли методом ПЛР.Результати. Генетична трансформація калюсних експлантів спельти шляхом їхньої інокуляції в живильному середовищі з агробактеріями та вакуумною інфільтрацією відбувалась з різною частотою. Рівень експресії гена gus за вакуумної інфільтрації становив 4,66 ± 0,74%, за інокуляції – 4,00 ± 0,91%; а гена gfp за вакуумної інфільтрації – 3,66 ± 0,74%, за інокуляції – 4,66 ± 1,39%. Рівень експресії гена gfp був вищим у разі використання інокуляції з агробактеріями, а гена gus – при вакуумній інфільтрації. За допомогою ПЛР-аналізу було підтверджено інтеграцію генів gfp та gus в геном калюсів спельти. Довжина ПЛР продукту із праймерами до гена gus становила 240 п. н., а до гена gfp – 717 п. н.Висновки. Використання методів вакуумної інфільтрації та інокуляції для генетичної трансформації спельти дали різні результати. Частота генетичної трансформації коливалась від 3,66 до 4,66%. Agrobacterium-опосередкована генетична трансформація амфідиплоїдної пшениці спельти дозволяє дослідити експресію репортерних генів gus та gfp за використання калюсних експлантів, отриманих із зрілих зародків.
Показать больше [+] Меньше [-]Expression of gus and gfp genes in amphidiploid spelt wheat (Triticum spelta L.) after Agrobacterium-mediated transformation Полный текст
2020
А. В. Кирієнко | М. В. Кучук | Н. Л. Щербак | М. Ф. Парій | Ю. В. Симоненко
Purpose. To study the expression of gus and gfp genes in callus explants of amphidiploid spelt wheat (Triticum spelta L.) after Agrobacterium-mediated genetic transformation. Methods. Winter spelt wheat of ‘Europa’ variety was chosen for transformation. Calli obtained from mature embryos were used as explants. Callus pre-cultivation was carried out on MS nutrient medium (Murashige–Skoog) supplemented with 2 mg/L 2.4-D (2.4-Dichlorophenoxyacetic acid) and 10 mg/L silver nitrate. For genetic transformation, Agrobacterium tumefaciens Conn., strain GV3101 and a genetic construct with reporter genes beta-glucuronidase (GUS) and green fluorescent protein (GFP) were used. Calli were transformed by inoculation with agrobacteria and vacuum infiltration. Then they were co-cultured on MS medium with 2 mg/L 2.4-D and 10 mg/L AgNO3, but without antibiotics. The expression of the gus gene was checked by histochemical and the gfp gene by visual analysis (fluorescence of the GFP protein in UV light). Gfp and gus gene expression levels were evaluated using ImajeJ software. The integration of the gfp and gus genes into the spelt genome was verified by PCR. Results. Genetic transformation of spelt callus explants by inoculation in a nutrient medium with agrobacteria and vacuum infiltration occurred at different frequencies. The level of expression of the gus gene during vacuum infiltration was 4.66 ± 0.74%, with inoculation – 4.00 ± 0.91%; and the gfp gene with vacuum infiltration – 3.66 ± 0.74%, with inoculation – 4.66 ± 1.39%. The level of expression of the gfp gene was higher when using inoculation with agrobacteria, and the gus gene was higher during vacuum infiltration. Using PCR analysis, the integration of the gfp and gus genes into the callus of spelt genome was confirmed. The length of the PCR product with primers for the gus gene was 240 bp, and 717 bp for the gfp gene. Conclusions. The use of vacuum infiltration and inoculation methods for spelt genetic transformation gave different results. The frequency of genetic transformation ranged from 3.66 to 4.66%. Agrobacterium-mediated genetic transformation of amphidiploid spelt wheat allows us to study the expression of gus and gfp reporter genes using callus explants derived from mature embryos
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