首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of the quantitative trait loci (QTL) underlying water soluble protein content in soybean.
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Identification of the quantitative trait loci (QTL) underlying water soluble protein content in soybean.

机译:鉴定大豆中水溶性蛋白质含量的定量性状位点(QTL)。

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摘要

Water soluble protein content (SPC) plays an important role in the functional efficacy of protein in food products. Therefore, for the identification of quantitative trait loci (QTL) associated with SPC, 212 F2:9 lines of the recombinant inbred line (RIL) population derived from the cross of ZDD09454 x Yudou12 were grown along with the parents, in six different environments (location x year) to determine inheritance and map solubility-related genes. A linkage map comprising of 301 SSR markers covering 3,576.81 cM was constructed in the RIL population. Seed SPC was quantified with a macro-Kjeldahl procedure in samples collected over multiple years from three locations (Nantong in 2007 and 2008, Zhengzhou in 2007 and 2008, and Xinxiang in 2008 and 2009). SPC demonstrated transgressive segregation, indicating a complementary genetic structure between the parents. Eleven putative QTL were associated with SPC explaining 4.5-18.2% of the observed phenotypic variation across the 6 year/location environments. Among these, two QTL (qsp8-4, qsp8-5) near GMENOD2B and Sat_215 showed an association with SPC in multiple environments, suggesting that they were key QTL related to protein solubility. The QTL x environment interaction demonstrated the complex genetic mechanism of SPC. These SPC-associated QTL and linked markers in soybean will provide important information that can be utilized by breeders to improve the functional quality of soybean varieties.
机译:水溶性蛋白质含量(SPC)在食品中蛋白质的功能功效中起着重要作用。因此,为鉴定与SPC相关的数量性状基因座(QTL),在6种不同的环境中,将ZDD09454 x Yudou12杂交获得的212个F2:9重组自交系(RIL)群体与亲本一起生长(位置x年)以确定遗传并绘制与溶解度相关的基因。在RIL群体中构建了包含301个SSR标记的连锁图谱,覆盖了3,576.81 cM。使用宏凯氏定氮法对从三个地点(2007年和2008年的南通,2007年和2008年的郑州以及2008年和2009年的新乡)多年收集的样品中的种子SPC进行了定量。 SPC表现出过犯性隔离,表明父母之间的互补遗传结构。 11个推定的QTL与SPC相关,解释了在6年/位置环境中观察到的表型变异的4.5-18.2%。其中,在GMENOD2B和Sat_215附近的两个QTL(qsp8-4,qsp8-5)在多种环境中均与SPC相关,表明它们是与蛋白质溶解度相关的关键QTL。 QTL x环境相互作用证明了SPC的复杂遗传机制。大豆中与SPC相关的QTL和连锁标记将提供重要信息,育种者可以利用这些信息来改善大豆品种的功能质量。

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