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首页> 外文期刊>Indian Journal of Plant Genetic Resources >Components of Genetic Variances, Heritability and Genetic Advance in Maize Lines for Resistance to Northern Corn Leaf Blight in North-west Himalayas
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Components of Genetic Variances, Heritability and Genetic Advance in Maize Lines for Resistance to Northern Corn Leaf Blight in North-west Himalayas

机译:西北喜马拉雅地区玉米北方抗白叶枯病遗传变异的遗传变异,遗传力和遗传进展

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摘要

The study on components of variances, genetic advance and heritability of northern corn leaf blight (turcicum leaf blight) was conducted at VPKAS, Almora during 1999-2001. Four susceptible (CM 128, V 327, V 128 and V 17) and two resistant inbred lines(V 335 and V 13) and their 15 F_1S, 15 F_2s, 15 BC_1s and 15 BC_2s, were generated for study of components of variances, genetic advance and heritability. Additive genetic variance (D), dominance (H) and environmental variance (E) were more in environment E_1 than in environment E_2 in most of the crosses which showed the importance of additive as well as non-additive components and also environmental variance. The broad and narrow sense heritability varied from cross to cross. However, their magnitudewas higher in E, than E_2. The higher magnitudes of heritability estimates in E, were encouraging as it offered viable scope for selection in this environment. The estimates also revealed greater scope of genetic advance in E_1, nevertheless, high genetic advance expressed as percentage of mean were evident for turcicum leaf blight in both environments. The results showed that all types of gene effects viz., additive, dominance and epistasis were operating in the crosses in controlling resistance to turcicum leaf blight.
机译:在1999-2001年期间,在阿尔莫拉的VPKAS进行了北部玉米叶枯病(斜叶枯病)变异,遗传进展和遗传力组成的研究。为了研究方差成分,生成了四个易感品种(CM 128,V 327,V 128和V 17)和两个抗性自交系(V 335和V 13)及其15 F_1S,15 F_2、15 BC_1和15 BC_2。遗传进展和遗传力。在大多数杂交中,环境E_1中的加性遗传方差(D),优势度(H)和环境方差(E)比环境E_2中的多,这表明加性和非加性成分以及环境方差的重要性。广义和狭义的遗传力因交叉而异。但是,它们的大小在E中要高于E_2。 E中较高的遗传力估计值令人鼓舞,因为它为在这种环境中进行选择提供了可行的范围。估计还揭示了E_1中遗传进展的范围更大,尽管如此,在两种环境中,以平均百分率表示的高遗传进展对于斜叶枯萎病都很明显。结果表明,所有类型的基因效应,即加性,优势性和上位性均在杂交中起作用,以控制对斜叶枯萎病的抗性。

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