Heterosis regarding of biological indicators in Virginia tobacco hybrids
Keywords:
heterosis; number of leaves; plant height; sizes of leaves; Virginia tobaccoAbstract
Heterosis activities and degrees of dominance in F1 were examined with regard to plant height, number and size of leaves in Virginia tobacco samples. For the purpose were studied populations of P1, P2, F1 of seven hybrid crosses. The results show that inheritance of plant height is partial dominantly and оverdominantly as in the direction of the parent with higher and in direction of the lower values of researches indicator, and the number of leaves is overdominantly and additive and also is in two directions researches indicator. Inheritance of the length of the leaves is overdominantly or incomplete dominantly, and the width of the leaves is overdominantly, dominantly and incomplete dominantly. Both indicators are as in the direction of the parent with a large and a small size of the leaves. Heterosis is with economic importance in terms of sizes of leaves, particular at the width of the leaves. This makes it perspective in use in the selection of Virginia tobacco. And in terms of length and in terms of the width of the leaves observed a direct positive relationship between the degree of dominance and manifestations of heterosis.
References
Киркова, С. 2005. Изследване на местни и вносни тютюни тип Виржиния и тяхната взаимозаменяемост в блендовете цигари. Научна сесия „Техника и технологии, естествени и хуманитарни науки”, НТ- IV, СУБ, 165-168.
Машева, В. 2007. Проучване наследяването на основни признаци при ориенталския тютюн (N. tabacum) и възможност за използване на проли на като стрес - маркер в селекцията. Дисертация.Пловдив.
Циков, Д., Е. Цикова. 1981. Генетика и цито логия на цитоплазмената мъжка стерилност при Nicotiana. София, с. 126-127
Чинчев, Б., Б. Стоянов. 1985. Агробиологична характеристика на Виржиния 0514. Български тютюн, № 1, 40-43
Янкулов, М. 1996. Принципи и методи за генетично подобряване и семепроизводство на растенията. София.
Омаров, Д. С. 1975. К методике учета оценки гетерозиса у растений. Сельскохозяйственная биология, том Х, № 1, 123-127
Aleksoska, A. K. 2008. Heterosis in F1 progeny in various types of tobacco. Tutun, Vol. 58, № 5-6, 113-119
Birchler, J., D. Auger, N. Riddle. 2003. In sarch of the molecular basis of heterosis. The Plant Cells, Vol. 15, № 10, 2236-2239
Birchler, J., H. Yao, S. Chudalayandi, D. Vaiman, R. Veitia. 2010. Heterosis. Plant Cell, Vol. 22, 2105-2112
Butorac, J., Vasilij, D., Kozumplik, V., Beljo, J. 1999. Quantitative parameters of some burley tobacco traits. Rostlinna Vyroba, 4, p. 149-156
Charlesworth, D., J. H, Willis. 2009. The genetics of inbreeding depression. Nature Reviews Genetics, 10, 783-796
Chen, J., James, A., Bircher, J. A. 2013. Poly ploids and hybrid genomics. Genetic rules of heterosis in plant. John Wiley & Sons Inc.
Dimanov, D., Y. Dyulgerski. 2012. Heterosis be havior with regards to the height and number of leaves by tobaccos of Burley variety group. Acta Agriculturae Serbica,Vol. ХVІІ, 33, р. 53-58
Gixhari, B., S. Hoxha. 2002. Study of the combin ing abilities in Samsun tobacco in relation to diallel crossing system. Tutun, vol. 52, 7-8, p. 187-191
Mather, K., J. L. Jinks. 1985. Biometrical Genetics. Chapman and Hall Ltd., London London - New York.
Yonchev, Y. 2008. Reaction of introduced tobacco varieties type Virginia to PVY and TMV – economically important virus diseases. Tobacco, Vol. 58, № 1-2, 41-45
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