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Identification of additional QTLs for flowering time by removing the effect of the maturity gene E1 in soybean

机译:通过消除大豆中成熟基因E1的影响,确定开花时间的其他QTL

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摘要

The adaptability of soybean to be grown at a wide range of latitudes is attributed to natural variation in the major genes and quantitative trait loci (QTLs) that control flowering time and maturity. Thus, the identification of genes controlling flowering time and maturity and the understanding of their molecular basis are critical for improving soybean productivity. However, due to the great effect of the major maturity gene E1 on flowering time, it is difficult to detect other small-effect QTLs. In this study, aiming to reduce the effect of the QTL, associated with the E1 gene, on the detection of other QTLs, we divided a population of 96 recombinant inbred lines (RILs) into two sub-populations: one with the e1(nl) allele and another with the e1(nl) allele. Compared with the results of using all 96 recombinant inbred lines, additional QTLs for flowering time were identified in the sub-populations, two (qFT-B1 and qFT-H) in RILs with the E1 allele and one (qFT-J-2) in the RILs with the e1(nl) allele, respectively. The three QTLs, qFT-B1, qFT-H and qFT-J-2 were true QTLs and played an important role in the regulation of growth period. Our data provides valuable information for the genetic mapping and gene cloning of traits controlling flowering time and maturity and will help a better understanding of the mechanism of photoperiod-regulated flowering and molecular breeding in soybean.
机译:大豆在宽广范围内的适应性归因于主要基因的自然变异和控制开花时间和成熟度的数量性状基因座(QTL)。因此,鉴定控制开花时间和成熟度的基因以及了解其分子基础对提高大豆产量至关重要。然而,由于主要成熟基因E1对开花时间的巨大影响,很难检测到其他小效应QTL。在这项研究中,为了减少与E1基因相关的QTL对其他QTL的影响,我们将96个重组自交系(RIL)分为两个亚群:一个亚群为e1(nl )等位基因,另一个与e1(nl)等位基因。与使用全部96个重组自交系的结果相比,在亚群中鉴定出了更多的开花时间QTL,其中带有E1等位基因的RIL中有两个(qFT-B1和qFT-H),一个(qFT-J-2)在带有e1(nl)等位基因的RIL中分别存在。 qFT-B1,qFT-H和qFT-J-2这三个QTL是真正的QTL,并且在调节生育期中发挥了重要作用。我们的数据为控制开花时间和成熟性状的遗传定位和基因克隆提供了有价值的信息,并将有助于更好地理解光周期调控的大豆开花和分子育种机制。

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