黑穗槐F2群体数量性状的遗传分析玫瑰)

A. Surendhar, P. Jayamani, K. Iyanar, G. Senthilraja, P. S. Shanmugam
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引用次数: 0

摘要

背景:芒萁是印度一种重要的脉冲作物。通过杂交或突变育种创造新的变异将产生具有重要产量性状的新分离群。如果性状具有良好的遗传变异估计,那么从群体中进行选择将是有效的。方法:对2022年rabi期间鉴定的黑图杂交组合co5 × VBN 9和co6 × VBN 11的F2居群进行遗传变异参数分析。结果:通过变异系数分析发现,居群在株高、单株分枝数、单株簇数、单株荚果数、单株荚果数和单株制种产量等性状上均表现出足够的遗传变异和高至中等遗传力,遗传超前程度高,表明存在加性基因作用,可通过前代的简单选择加以改善。co5 × VBN 9的F2群体的单株分枝数、每簇荚果数、每株荚果数、百粒重和单株种子产量与co6 × VBN 11的F2群体的单株簇数、每簇荚果数、每株荚果数和单株种子产量均呈正偏态。以上性状均可通过集约选择进行快速改良。co5 × VBN 9群体百粒重性状和co6 × VBN 11群体单株簇数、单株荚果数、荚果长、单株荚果数和单株籽粒产量性状的垂峰分布表明,这些性状受少数小基因控制。因此,可以从这两个群体中选择较好的分离系来提高产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic Analysis of F2 Populations for Quantitative Traits in Blackgram [Vigna mungo (L.) Hepper]
Background: Blackgram is an important pulse crop grown in India. The creation of new variability through hybridization or mutation breeding will produce novel segregants for important yield attributing traits. The selection from the population will be effective if the traits have good genetic variability estimates. Methods: The present investigation was conducted on analysing genetic variability parameters in F2 populations of the blackgram crosses CO 5 × VBN 9 and CO 6 × VBN 11 which were evaluated during rabi, 2022. Results: Based on the coefficient of variations, it was found that sufficient amount of genetic variability and high to moderate heritability with high genetic advance were present in the populations for the traits viz., plant height, number of branches per plant, number of clusters per plant, number of pods per cluster, number of pods per plant and seed yield per plant indicates the presence of additive gene action which can be improved by simple selection in the earlier generations. The positive skewness was observed for the traits viz., number of branches per plant, number of pods per cluster, number of pods per plant, hundred seed weight and seed yield per plant in F2 population of CO 5 × VBN 9 and number of clusters per plant, number of pods per cluster, number of pods per plant and seed yield per plant in the F2 population of CO 6 × VBN 11. The above traits could be improved by intensive selection for rapid improvement. The leptokurtic nature of the distribution for the trait hundred seed weight in CO 5 × VBN 9 population and the traits viz., number of clusters per plant, number of pods per plant, pod length, number of seeds per pod and seed yield per plant in CO 6 × VBN 11 population indicates these traits are controlled by few minor genes. Hence, the good segregants could be selected from these two populations for yield improvement.
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