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中国小麦微核心库穗长芒长的 InDels 鉴定及关联分析

InDels Identification and Association Analysis with Spike and Awn Length in Chinese Wheat Mini-Core Collection.

机构信息

National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Int J Mol Sci. 2022 May 17;23(10):5587. doi: 10.3390/ijms23105587.

Abstract

Diversity surveys of germplasm are important for gaining insight into the genomic basis for crop improvement; especially InDels, which are poorly understood in hexaploid common wheat. Here, we describe a map of 89,923 InDels from exome sequencing of 262 accessions of a Chinese wheat mini-core collection. Population structure analysis, principal component analysis and selective sweep analysis between landraces and cultivars were performed. Further genome-wide association study (GWAS) identified five QTL (Quantitative Trait Loci) that were associated with spike length, two of them, on chromosomes 2B and 6A, were detected in 10 phenotypic data sets. Assisted with RNA-seq data, we identified 14 and 21 genes, respectively that expressed in spike and rachis within the two QTL regions that can be further investigated for candidate genes discovery. Moreover, InDels were found to be associated with awn length on chromosomes 5A, 6B and 4A, which overlapped with previously reported genetic loci (), () and (). One of the genes that was previously shown to affect floral organ development was found at the locus to affect awn length development. Our study shows that trait-associated InDels may contribute to wheat improvement and may be valuable molecular markers for future wheat breeding.

摘要

种质多样性调查对于深入了解作物改良的基因组基础非常重要;特别是在六倍体普通小麦中,插入缺失(InDels)的理解很差。在这里,我们描述了 262 份中国小麦微型核心种质资源的外显子测序的 89923 个 InDels 图谱。进行了群体结构分析、主成分分析和地方品种与品种之间的选择清除分析。进一步的全基因组关联研究(GWAS)鉴定了与穗长相关的五个 QTL(数量性状位点),其中两个位于染色体 2B 和 6A,在 10 个表型数据集均被检测到。借助 RNA-seq 数据,我们分别在两个 QTL 区域内鉴定了 14 个和 21 个在穗和穗轴中表达的基因,可进一步深入研究候选基因的发现。此外,还发现 5A、6B 和 4A 染色体上的 InDels 与芒长有关,与先前报道的遗传位点()、()和()重叠。先前表明影响花器官发育的一个基因在 位点被发现影响芒长的发育。我们的研究表明,与性状相关的 InDels 可能有助于小麦改良,并且可能是未来小麦育种的有价值的分子标记。

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