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Epistatic effects on grain yield of soybean [Glycine max (L.) Merrill]

机译:上位性对大豆籽粒产量的影响[Glycine max(L.)Merrill]

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Studies addressing the estimation of genetic parameters in soybean have not emphasized the epistatic effects. The purpose of this study was to estimate the significance of these effects on soybean grain yield, based on the Modified Triple Test Cross design. Thirty-two inbred lines derived from a cross between two contrasting lines were used, which were crossed with two testers (L1 and L2). The experiments were carried out at two locations, in 10 x 10 triple lattice designs with 9 replications, containing 32 lines (Pi ), 64 crosses (32 Pi x L1 and 32 Pi x L2 ) and controls. The variation between ( ͞L1i + ͞L2i - ͞Pi ) revealed the presence of epistasis, as well as an interaction of epistasis x environment. Since the predominant component of epistasis in autogamous species is additive x additive (i type), we suggest postponing the selection for grain yield to later generations of inbreeding in order to exploit the beneficial effects of additive x additive epistasis.
机译:针对大豆遗传参数估计的研究并未强调上位性效应。这项研究的目的是基于改良的三重试验交叉设计来评估这些影响对大豆籽粒产量的重要性。使用了来自两个对比系之间的杂交的32个自交系,它们与两个测试仪(L1和L2)杂交。实验在两个位置进行,以10 x 10的三重格子设计进行9次重复,包含32条品系(Pi),64个杂交(32 Pi x L1和32 Pi x L2)和对照。 (͞L1i+͞L2i-͞Pi)之间的差异揭示了上位性的存在以及上位性x环境的相互作用。由于配子种中上位性的主要成分是加性x加性(i型),我们建议将籽粒产量的选择推迟到近亲繁殖,以利用加性x加性上位性的有益作用。

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