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首页> 外文期刊>Plant Breeding >Identification of QTL for seed yield and agronomic traits in 944 soybean (Glycine max) RILs from a diallel cross of early-maturing varieties
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Identification of QTL for seed yield and agronomic traits in 944 soybean (Glycine max) RILs from a diallel cross of early-maturing varieties

机译:早熟品种二甲醛交叉鉴定944大豆(甘氨酸最大)rils种子产量和农艺性状的QTL

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摘要

Increasing soybean yield plays a key role in meeting the high demand for protein in Europe and other countries. The aim of this study was to dissect the genetic architecture underlying seed yield, plant height, protein yield and thousand-seed weight in early-maturing soybean. To this end, we performed QTL mapping based on 944 RILs derived from a half-diallel crossing design of five parents. We identified five to eight QTL for each of the four agronomic traits and some explained a considerable proportion of the genotypic variance. The three major QTL showed pleiotropic effects on two or more traits. Fine characterization revealed the maturity genes E1 and E3, and the stem growth habit gene Dt2 as likely candidates underlying these QTL. In general, the allele increasing seed yield also resulted in taller plants, which needs to be considered during selection due to an increased risk of lodging. Collectively, our results underline the strong effect of some loci like the E1 gene on a range of traits including seed yield, making them attractive targets for a marker-assisted selection.
机译:提高大豆产量在满足欧洲和其他国家对蛋白质的高需求方面起着关键作用。本研究旨在剖析早熟大豆种子产量、株高、蛋白质产量和千粒重的遗传结构。为此,我们利用来自五个亲本的半双列杂交设计的944个RIL进行了QTL定位。我们为四个农艺性状中的每一个鉴定了五到八个QTL,其中一些解释了相当大比例的基因型变异。三个主要QTL对两个或更多性状表现出多效性效应。精细表征显示成熟基因E1和E3以及茎生长习性基因Dt2可能是这些QTL的潜在候选基因。一般来说,等位基因增加种子产量也会导致植株更高,这需要在选择时加以考虑,因为倒伏的风险增加。总的来说,我们的结果强调了E1基因等一些基因座对包括种子产量在内的一系列性状的强烈影响,使它们成为标记辅助选择的有吸引力的目标。

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