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Genome-Wide Association Study Reveals Novel Loci for SC7 Resistance in a Soybean Mutant Panel

机译:全基因组关联研究揭示了大豆突变体面板中对SC7抗性的新基因座。

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摘要

Soybean mosaic virus (SMV) is a member of Potyvirus genus that causes severe yield loss and destroys seed quality in soybean [Glycine max (L.) Merr.]. It is important to explore new resistance sources and discover new resistance loci to SMV, which will provide insights to improve breeding strategies for SMV resistance. Here, a genome-wide association study was conducted to accelerate molecular breeding for the improvement of resistance to SMV in soybean. A population of 165 soybean mutants derived from two soybean parents was used in this study. There were 104 SNPs identified significantly associated with resistance to SC7, some of which were located within previous reported quantitative trait loci. Three putative genes on chromosome 1, 9, and 12 were homologous to WRKY72, eEF1Bβ, and RLP9, which were involved in defense response to insect and disease in Arabidopsis. Moreover, the expression levels of these three genes changed in resistance and susceptible soybean accessions after SMV infection. These three putative genes may involve in the resistance to SC7 and be worthy to further research. Collectively, markers significantly associated with resistance to SC7 will be helpful in molecular marker-assisted selection for breeding resistant soybean accessions to SMV, and the candidate genes identified would advance the functional study of resistance to SMV in soybean.
机译:大豆花叶病毒(SMV)是波多病毒属的成员,会导致严重的产量损失并破坏大豆的种子质量[Glycine max(L.)Merr。]。重要的是探索新的抗性来源并发现新的SMV抗性基因座,这将为改善SMV抗性育种策略提供见识。在这里,进行了全基因组关联研究以加速分子育种,以提高大豆对SMV的抗性。这项研究使用了来自两个大豆亲本的165个大豆突变体。已鉴定出104个与SC7抗性显着相关的SNP,其中一些位于先前报道的定量性状基因座内。 1、9和12号染色体上的三个推定基因与WRKY72,eEF1Bβ和RLP9同源,它们参与拟南芥对昆虫和疾病的防御反应。此外,这三个基因的表达水平在SMV感染后的抗性和易感大豆品种中发生了变化。这三个推定基因可能参与了对SC7的抗性,值得进一步研究。总的来说,与SC7抗性显着相关的标记将有助于分子标记辅助选择,从而选育出抗SMV的大豆,并且鉴定出的候选基因将促进大豆对SMV抗性的功能研究。

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