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Determination of gene action for yield and its related traits in soybean under North-Western Himalayas conditions of India

机译:印度西北喜马拉雅山条件下大豆产量及其相关性状的基因作用及其相关性状

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摘要

Aim : To understand the nature and magnitude of gene action for yield and its related traits in soybean.Methodology : Fifty four triple test cross progenies developed by crossing 18 lines with three testers Him soya and Hera soya (P-1 and P-2) and their F(1)s were used as testers 'L-1', 'L-2', and 'L-3'. F1 seeds were produced by crossing Him soya with Hara soya during kharif 2011. By crossing these three testers with 18 lines (females), 54 triple test cross hybrids were developed during kharif 2012. The fifty four F1 hybrids along with 18 lines and 3 testers were sown during kharif 2013 in a randomized block design with three replications.Results : In the triple test cross progenies, sufficient genetic variations were found for all the traits, except petiole length. Epistasis was observed to be an integral part of genetic variations for traits like plant height, branches per plant, nodes on main stem, internode length, pods per plant, pod length, biological yield per plant, seed yield per plant, oil content, crude protein content. Epistatic interaction for most traits was additive x dominance and dominance x dominance (j+I) type. In addition to additive x dominance and dominance x dominance (j+I), additive x additive (i) type epistasis was observed for plant height, internode length, pods per plant and biological yield per plant. For the inheritance of most traits, fixable type of gene action was found as additive component (D), was more pronounced than dominance component (H), except pod length.Interpretation : For improvement of traits, selection in the early generations will be useful as additive gene action was observed. The importance of additive x dominance a) and dominance x dominance (I) type of epistasis in the inheritance of seed yield and other related traits signifying the importance of recurrent selection in order to develop high yielding varieties. For pod length, both additive and dominant components were observed. Thus genetic improvement in seed yield would be easier through indirect selection for pod length.
机译:目的:了解大豆基因作用的性质和程度及其在大豆中的相关性状。方法:通过三个测试人员划线18线开发的五十四个三重试验交叉子宫,他是大豆和英雄大豆(P-1和P-2)他们的f(1)s用作测试人员的L-1','L-2'和'L-3'。通过在Kharif 2011年在Kharif 2011期间通过Hara Soya穿过Hara Soya而产生F1种子。通过将这三种测试仪穿过18条线(女性),在Kharif 2012期间开发了54个三重试验交叉杂交物。五十四个F1杂种以及18条线和3个测试人员在Kharif 2013期间在随机块设计中播种了三种复制。结果:在三重试验交叉后代,除了叶柄长度外,所有特征都发现了足够的遗传变化。观察到外科是植物高度,每株植物分支等特征的遗传变异的组成部分,主要茎的节点,每个植物的节点,每株植物的荚,生物屈服,每株种子产量,油含量,油状物蛋白质含量。大多数特征的认证互动是添加剂x优势和优势x优势(J + i)类型。除了添加剂X优势和优势X优势(J + I),植物高度,每个植物的节间长度,荚和每个植物的生物产量,观察到添加剂X添加剂(I)型外观。对于大多数特征的遗传,发现可固定类型的基因作用作为添加剂组分(D),除了POD长度之外,比优势组分(H)更明显。解释:为了改善特征,早期的选择将有用随着添加基因作用被观察到。添加剂X优势A)和优势X优势(i)种子产量遗传和其他相关特征的超越术语,旨在表示经常选择的重要性,以便开发高产品种。对于荚的长度,观察到添加剂和显性成分。因此,通过对荚长度的间接选择,种子产量的遗传改善将更容易。

著录项

  • 来源
    《Journal of environmental biology》 |2020年第1期|79-84|共6页
  • 作者

    Rialch I.; Sharma J. D.;

  • 作者单位

    Punjab Agr Univ Dept Plant Breeding & Genet Ludhiana 141004 Punjab India|Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vi Dept Plant Breeding & Genet Palampur 176062 Himachal Prades India;

    Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vi Dept Plant Breeding & Genet Palampur 176062 Himachal Prades India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Epistasis; Gene action; Modified triple test cross; Soybean;

    机译:简化;基因动作;改性三重试验十字;大豆;

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