首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Effective identification of soybean candidate genes involved in resistance to soybean cyst nematode via direct whole genome re-sequencing of two segregating mutants
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Effective identification of soybean candidate genes involved in resistance to soybean cyst nematode via direct whole genome re-sequencing of two segregating mutants

机译:通过两种分离突变体的直接全基因组重新测序有效鉴定参与抗大豆囊肿线虫的大豆候选基因

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Key message Three soybean candidate genes involved in resistance to soybean cyst nematode race 4 were identified via direct whole genome re-sequencing of two segregating mutants. The genes conferring resistance to soybean cyst nematode (SCN) race 4 (Hg type 1.2.3.5.7) in soybean (Glycine max L. Merr.) remains unknown. Next generation sequencing-based methods identify a wide range of targets, it is difficult to identify genes underlying traits. Use of the MutMap and QTL-seq methods to identify trait candidate genes needs backcrossing and is very time-consuming. Here we report a simple method to effectively identify candidate genes involved in resistance to SCN race 4. Two ethane methylsulfonate mutagenized mutants of soybean 'PI 437654', whose SCN race 4-infection phenotype altered, were selected. Six relevant whole genomes were re-sequenced, and then calling of genomic variants (SNPs and InDels) was conducted and compared to 'Williams 82'. The comparison eliminated many genomic variants from the mutant lines that overlapped two non-phenotypic but mutant progeny plants, wild-type PI 437654 and 'Zhonghuang 13'. Finally, only 27 mutations were found among 10 genes. Of these 10 genes, 3 genes, Glyma.09g054000, Glyma.16g065700 and Glyma.18g192200 were overlapped between two phenotypic mutant progeny plants. Therefore, the three genes may be the candidate genes involved in resistance of PI 437654 to soybean cyst nematode race 4. This method simplifies the effective identification of candidate genes.
机译:关键消息通过两个分离突变体的直接全基因组重新测序鉴定了参与抗大豆囊肿线虫抗性血管谱4的三种大豆候选基因。在大豆(Glycine Max L.Merr.)中赋予耐大豆囊肿线虫(SCN)血管线(SCN)血管线(SCN)的基因(Hg型1.2.3.5.7)。基于下一代的基于测序的方法识别各种靶标,很难识别基因的基本特征。使用Mutmap和QTL-SEQ方法来识别特征候选基因需要回复并且非常耗时。在这里,我们报告了一种简单的方法,以有效地识别患有对SCN种族的抗性的候选基因。选择的SCN比赛4-感染表型改变的大豆'PI 437654'的两种乙烷甲基磺酸盐诱变突变体。重新测序六种相关的全基因组,然后进行基因组变体(SNP和Indels)并将其与“威廉姆斯82”进行比较。比较消除了许多来自突变线的基因组变体,其重叠两种非表型但突变体后代植物,野生型PI 437654和“中华13”。最后,10个基因中只发现了27个突变。在这10个基因中,3个基因,Glyma.09G054000,Glyma.16G065700和Glyma.18G192200与两个表型突变体后代植物之间重叠。因此,三种基因可以是参与PI 437654的抗性的候选基因对大豆囊肿线性的血管4.该方法简化了候选基因的有效鉴定。

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