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首页> 外文期刊>African Journal of Biotechnology >Genetic variability, heritability and genetic advance of quantitative traits in black gram by effects of mutation in field trail
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Genetic variability, heritability and genetic advance of quantitative traits in black gram by effects of mutation in field trail

机译:田间径迹突变对黑克数量性状的遗传变异性,遗传力和遗传进展

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Genetic variation has led to an increase in the quantitative traits of crops. The variability on genome is induced by mutation, which enhances the productivity. We evaluated variability on quantitative characters such as, plant height, number of branches/plant, number of leaves/plant, number of fruit clusters/plant, number of pods/plant, number of seeds/pod, yield/plant and 100 seed weight of black gram in M2?generation by the effect of mutation by gamma rays. The results were shown high genetic variability, heritability and genetic advance with significant enhancement (P 0.05 and P 0.01) in growth and yield traits. Hence selection is effective for these traits could be possible through gamma rays. The speculation of effects of gamma rays on genome is that irradiation, induced addition, deletion in DNA pairs and also attributed large chromosomal rearrangement. The result were shown significant enhancement in yield and related traits. It indicates that improvement in quantitative traits would be possible through gamma rays.
机译:遗传变异导致农作物数量性状的增加。基因组的变异性是由突变引起的,从而提高了生产率。我们评估了定量特征的变异性,例如植物高度,枝/植物数,叶/植物数,果簇/植物数,豆荚/植物数,种子/荚果数,产量/植物和100种子重量γ射线诱变在M2α生成中产生的黑克。结果表明,高遗传变异性,遗传力和遗传进展显着增强了生长和产量性状(P 0.05和P 0.01)。因此,通过伽马射线对这些性状进行选择是有效的。伽马射线对基因组的影响的推测是辐射,诱导的添加,DNA对的缺失以及归因于大的染色体重排。结果表明产量和相关性状显着提高。这表明通过伽马射线可以改善数量性状。

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