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甘薯种质资源的重测序揭示了与多个农艺性状相关的关键位点。

Resequencing of sweetpotato germplasm resources reveals key loci associated with multiple agronomic traits.

作者信息

Xiao Shizhuo, Dai Xibin, Zhao Lingxiao, Zhou Zhilin, Zhao Lukuan, Xu Pan, Gao Bingqian, Zhang An, Zhao Donglan, Yuan Rui, Wang Yao, Wang Jie, Li Qinglian, Cao Qinghe

机构信息

Jiangsu Xuzhou Sweetpotato Research Center/Sweetpotato Research Institute, Chinese Agricultural Academy of Sciences, Xuzhou 221131, China.

College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou 730020, China.

出版信息

Hortic Res. 2022 Oct 19;10(1):uhac234. doi: 10.1093/hr/uhac234. eCollection 2023.

Abstract

Sweetpotato is an important crop that exhibits hexaploidy and high heterozygosity, which limits gene mining for important agronomic traits. Here, 314 sweetpotato germplasm resources were deeply resequenced, and 4 599 509 SNPs and 846 654 InDels were generated, among which 196 124 SNPs were nonsynonymous and 9690 InDels were frameshifted. Based on the Indels, genome-wide marker primers were designed, and 3219 of 40 366 primer pairs were selected to construct the core InDel marker set. The molecular ID of 104 sweetpotato samples verified the availability of these primers. The sweetpotato population structures were then assessed through multiple approaches using SNPs, and diverse approaches demonstrated that population stratification was not obvious for most Chinese germplasm resources. As many as 20 important agronomic traits were evaluated, and a genome-wide association study was conducted on these traits. A total of 19 high-confidence loci were detected in both models. These loci included several candidate genes, such as , and , which might be involved in anthocyanin metabolism, carotenoid metabolism, and leaf morphogenesis, respectively. Among them, and were first reported in sweetpotato. The variants in the promoter and the expression levels of were significantly correlated with flesh color (orange or not orange) in sweetpotato. The expression levels of were also correlated with leaf shape. These results will assist in genetic and breeding studies in sweetpotato.

摘要

甘薯是一种重要的作物,具有六倍体和高杂合性,这限制了对重要农艺性状的基因挖掘。在此,对314份甘薯种质资源进行了深度重测序,共产生了4599509个单核苷酸多态性(SNP)和846654个插入缺失(InDel),其中196124个SNP为非同义突变,9690个InDel为移码突变。基于这些InDel设计了全基因组标记引物,从40366对引物中筛选出3219对构建核心InDel标记集。对104份甘薯样本的分子鉴定验证了这些引物的可用性。然后使用SNP通过多种方法评估甘薯群体结构,多种方法表明大多数中国种质资源的群体分层不明显。评估了多达20个重要农艺性状,并对这些性状进行了全基因组关联研究。在两个模型中总共检测到19个高置信度位点。这些位点包括几个候选基因,如 、 和 ,它们可能分别参与花青素代谢、类胡萝卜素代谢和叶片形态发生。其中, 和 是首次在甘薯中报道。 启动子中的变异及其表达水平与甘薯肉色(橙色或非橙色)显著相关。 的表达水平也与叶形相关。这些结果将有助于甘薯的遗传和育种研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaad/9832839/4ba39380eaf6/uhac234f1.jpg

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