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A Roadmap for Functional Structural Variants in the Soybean Genome

机译:大豆基因组功能结构变异的路线图

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摘要

Gene structural variation (SV) has recently emerged as a key genetic mechanism underlying several important phenotypic traits in crop species. We screened a panel of 41 soybean (Glycine max) accessions serving as parents in a soybean nested association mapping population for deletions and duplications in more than 53,000 gene models. Array hybridization and whole genome resequencing methods were used as complementary technologies to identify SV in 1528 genes, or approximately 2.8%, of the soybean gene models. Although SV occurs throughout the genome, SV enrichment was noted in families of biotic defense response genes. Among accessions, SV was nearly eightfold less frequent for gene models that have retained paralogs since the last whole genome duplication event, compared with genes that have not retained paralogs. Increases in gene copy number, similar to that described at the Rhg1 resistance locus, account for approximately one-fourth of the genic SV events. This assessment of soybean SV occurrence presents a target list of genes potentially responsible for rapidly evolving and/or adaptive traits.
机译:基因结构变异(SV)最近已成为一种重要的遗传机制,是农作物物种若干重要表型性状的基础。我们筛选了41个大豆(Glycine max)品种作为大豆巢式关联作图群体的亲本,对超过53,000个基因模型中的缺失和重复进行了筛选。阵列杂交和全基因组重测序方法被用作辅助技术,以鉴定1528个基因中的SV,约占大豆基因模型的2.8%。尽管SV遍布整个基因组,但在生物防御反应基因家族中却发现了SV富集。在种质中,自从上次全基因组复制事件以来保留旁系同源物的基因模型与未保留旁系同源物的基因相比,SV的发生频率降低了近八倍。基因拷贝数的增加与Rhg1抗药性基因座处描述的相似,约占基因SV事件的四分之一。对大豆SV发生的评估提供了潜在负责快速进化和/或适应性状的基因的目标清单。

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