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The origin of Herbaceous hybrid Group peony cultivars of the M. M. Gryshko National Botanical Garden of NAS of Ukraine collection and the prospects for their use
2022
В. Ф. Горобець | Т. О. Щербакова
Purpose. To analyze the origin of the Herbaceous Hybrid Group peony cultivar collection of the M. M. Gryshko National Botanical Garden (NBG) National Academy of Sciences of Ukraine (NAS) and to determine the prospects for their use in breeeding work and decorative horticulture.Methods. The object of research was peonies of the Herbaceous Hybrid Gp of the NBG peony collection. The plants are grown on sunny open experimental and exposition plots of the NBG. Cultivars studies and phenological observations of plants were carried out during 2012–2022.Results. Varietal diversity of Herbaceous Hybrid Gp peonies of the NBG collection was analyzed by origin. The analysis showed that 122 varieties were created by US breeders, of which the Saunders breeding is represented by the largest number of varieties in the collection. 38 varieties are of Ukrainian breeding and created in the NBG. The analysis of hybrids obtained by distant crosses made it possible to identify combinations that give fertile offspring and to create promising double and triple hybrids. For decorative horticulture, 165 varieties of world and domestic breeding are recommended. They were grouped into four groups by flower color and two groups by the beginning of flowering. Plants of the early group start flowering before May 22 (± 4 days). The flowering of the late group of varieties occurs at the beginning of the flowering of the variety ‘Red Charm’ (May 22 ± 4 days) and later.Conclusions. For more than 50 years of introductory work with peony Herbaceous Hybrid Gp, 133 varieties of world breeding were tested at NBG. The main number of varieties was included in the collection in the first years of the 21st century. A comparative study of new varieties showed that most of them are sterile. Varieties ‘Dreamtime’, ‘Greenland’, ‘Quitzin’, ‘Lavender Whisper’, ‘Lemon Chiffon’, ‘Pastelegance’, ‘Pastelorama’, ‘Salmon Dream’, ‘Sunny Boy’, ‘Sunny Girl’, ‘Sunny Day’, ‘The Mackinac Grand’, ‘Vanilla Schnapps’, ‘Triphena Parkin’, ‘Pink Vanguard’, ‘Lavender Whisper’, were fertile and can be successfully used in the hybridization process. It was revealed that the source of early flowering of varieties created in the NBG was introduced wild species of herbaceous peonies: P. peregrina, P. wittmanniana, P. arietina. Peonies with double or semi-double flowers can be obtained by using P. officinalis ‘Rubra Plena’ with double flowers as a maternal component, and P. lactiflora varieties (‘President Taft’, ‘La Pionce’, ‘Lord Kitchener’, ‘Adolphe Roussean’, ‘M-lle Janne Riviere’) as paternal one also with terry flowers
显示更多 [+] 显示较少 [-]Studying economically valuable and morphological characteristics in storage root of parental lines and hybrids of forage beet (Beta vulgaris l. subsp. vulgaris var. crassa)
2012
Мілієнко, М. В
Assessment has been carried out for parental lines and hybrid combinations of forage beet by individual indices of productivity and morphological characteristics of root storages. Best combinations have been selected for further crossing and breeding.
显示更多 [+] 显示较少 [-]Perfection of methods of development of female component of MS hybrids of sugar beet (Beta vulgaris L. ssp. vulgaris var.altissita Doell)
2009
Корнєєва, М. О
Development and improvement of a female component of MS hybrids of sugar beet were carried out on the basis of the following methods: inereasing frequency of occurrence of sterility maintainers by means of preliminary saturation of the population with alleles of the x and z genes; the use, as a female form, of simple sterile hybrids from the crossing of sterile lines with unrelated O-types; and also the drawing in of complexes of valuable genes from materials of foreign origin.
显示更多 [+] 显示较少 [-]Breeding of industrial hemp with a high content of cannabigerol by the case of ‘Vik 2020’ cultivar
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
显示更多 [+] 显示较少 [-]Genetic control over characteristic of 1000 seeds weight in hybrids of sugar beet and combining ability of crossbreeding components
2012
Корнєєва, М. О | Ненька, О. В | Ненька, М. М
The article shows experimental data of interline hybrids of sugar beet on the basis of weight of 1000 seeds, genetic determination of characteristic based on the method of Hayman and topcrossed polytested crossbreeding is established, their comparison is made. It also highlights valuable hybrid combinations and valuable for combining pollinating lines used in the breeding to enhance properties of sowing seeds.
显示更多 [+] 显示较少 [-]Inheritance of Quantitative Characteristics F2 of Three-Hybrid Crossing of Winter Rye (Secale cereale L.) under Different Environmental Conditions
2011
Скорик, В. В | Симоненко, Н. В | Давидюк, І. М | Неїжпапа, С. С | Харченко, П. В | Бутунець, О. О | Мазур, З. О | Майстер, І. І
Genetic and statistical analyzes of ten quantitative characteristics inheritance of reciprocal populations F2 of three-hybrid crossing by plant height, leaf blade electroidy and absence of glaucosity on the plants of Winter Rye in three breeding institutions – Nosivskiy Variety Testing Station (VTS), Verhnianskiy VTS and Volynskiy Institute APV. Major portion of phenotype variation has been determined by environmental factors. Genotype variability of those characteristics is predetermined by effects of domination and epitasis, so the breeding aimed at acquirement of heterosis effect when ZKZ (ЗКЗ) and SKZ (СКЗ) are applied is expected to be promising.
显示更多 [+] 显示较少 [-]The new donors of dominant short-stern characteristic of Winter Rye (Secale cereale I.)
2008
Скорик, В. В | Буняк, О. І
New donors of short-stem dominant characteristic Gnom 1 (G1), Gnom 2 (G2), Gnom 3 (G3) have been created to the purpose of further increasing the yield of Winter Rye and effective redistribution of assimilation products to the benefits of the grain. Genetic and Statistical analysis of 10 selective characteristics of these donors has been conducted and options to improve them were determined. Application of G1 in the prospective breeding programs G1 on 10 characteristics would not create considerable difficulties. Engagement in the crossing of G2 and G3 donors may create complications in the expression of- productivity characteristics of the ear and plants in the progenies. Crossing used in transgress and combinative breeding is preferable for applying. Application of G3 may be accompanied with technical inconvenience in perfor-ming directed crossing. Application of G3 attracts by the creating conditions for uniting desirable height of plant with the constitutionnal components of Winter Rye productivity.
显示更多 [+] 显示较少 [-]???????? ??????????? ???????? ?? ?????????? ??????? ???????????? ?? ???????? ????? ???? 2020 | Breeding of industrial hemp with a high content of cannabigerol by the case of ?Vik 2020? cultivar
???????, 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?, ?? ???????????????? ?????????? ??????? ???????????? ? ??????????? ???????????? ????????????.
显示更多 [+] 显示较少 [-]Origin of Winter Wheat breeding at the South of Ukraine before the beginning of October Revolution by the example of Breeding department at Odessa Research Field
2008
Піпан, Х. М
History of Winter Wheat breeding rise at the South of Ukraine since the end of XIX century till the beginning of October Revolution by the example of Breeding department at Odessa Research Field is represented. Odessa Research Field was established in 1894 to study the agrotechnics of agricultural crops, in particular, Winter Wheat. The Breeding department at Odessa Research Field was established in 8th of March, 1912, and headed by Private- Docent of Novorossiysk University, A.O. Sapegin. The main procedure applied in breeding was individual multifold selection of elite ears from the existing local blends and artificial crossing of lines selected to the purpose of improving economically valuable characteristics and identifying the inheritance. Five years of breeding (1912-1917 pp.) resulted in creation of three Winter Wheat varieties: Kooperatorka (0194), Zemka (0158) and Stepniachka(0119). In 1918, the Council of People’s Commissars of USSR has parted the Breeding department of Odessa Research Field to independent Odessa agricultural breeding station recognizing development of plant varieties by the Department.
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