Please use this identifier to cite or link to this item: https://elib.belstu.by/handle/123456789/47567
Title: Compatibility of Vacciniaceae species with tetraploid Vaccinium vitis-idaea L. at remote hybridization
Other Titles: Совместимость видов брусничных при отдаленной гибридизации с тетраплоидной Vaccinium vitis-idaea L.
Authors: Morozov, Oleg Vsevolodovich
Keywords: гибриды
гибридные растения
брусника обыкновенная
брусничные, семейство
тетраплоиды
селекция растений
гибридизация растений
lingonberry
crossing tetrapioid forms
hybrids
lingonberry breeding
Issue Date: 2005
Citation: Morozov, O. V. Compatibility of Vacciniaceae species with tetraploid Vaccinium vitis-idaea L. at remote hybridization / O. V. Morozov // Культура брусничных ягодников: итоги и перспективы : материалы Международной научной конференции, Минск, 15-19 августа 2005 г. / Национальная академия наук Беларуси, Центральный ботанический сад. - Минск, 2005. - С. 151-154
Description: А particularly important problem of lingonberry breeding by remote hybridization is the study on the possibility of producing really hybrid genotypes of plants by crossing its tetrapioid forms (2n=48) (Морозов, 1995) with other Vacciniaceae species of a similar ploidy level. Representatives of aboriginal flora were involved in this crossing: O. palustris and V. uliginosum, as well as cultivated introducers from North America occurring frequently and exhibiting a complex of agronomic traits: V. corymbosum (cvs "Coville" and its seedlings, "Rancocas", "Herbert"), V. angustifolium, O. macrocarpus (cv. "Searles") (Table). Lowbush blueberry plants were grown from seed blend of Canadian cultivars: K510, МЕЗ, K508, K70-62, kindly given to us by T.V. Paa.1, a researcher from Estonia. Tetrapioid American cranberry (grafts) was kindly supplied by the colleagues from Finland (Lehmushovi et al., 1993). We would remind you that diploid Fi hybrids V. vitis-idaea x O. macrocarpus developed by us earlier were sterile but exhibited a number of agronomic traits and properties of vegetative organs (Морозов, 1993). Testing various crossing combinations by using large genetic diversity has given us an opportunity to reveal the most compatible combinations.
URI: https://elib.belstu.by/handle/123456789/47567
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