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基于全基因组关联分析挖掘水稻芽期耐盐性SNP位点及预测候选基因

Mining Salt Tolerance SNP Loci and Prediction of Candidate Genes in the Rice Bud Stage by Genome-Wide Association Analysis.

作者信息

Wang Rui, Zhou Zhenzhen, Xiong Mengyuan, Du Mingyu, Lin Xingxing, Liu Cuiping, Lu Mingwei, Liu Zhengbo, Chang Yinping, Liu Erbao

机构信息

College of Agronomy, Anhui Agricultural University, Hefei 230036, China.

出版信息

Plants (Basel). 2023 May 30;12(11):2163. doi: 10.3390/plants12112163.

Abstract

Mining salt tolerance genes is significant for breeding high-quality salt-tolerant rice varieties in order to improve the utilization of saline-alkaline land. In this study, 173 rice accessions were measured for their germination potential (GP), germination rate (GR), seedling length (SL), root length (RL), germination potential relative to salt damage rate (GPR), germination rate relative to salt damage rate (GRR), seedling length relative to salt damage rate (SLR), relative salt damage rate at the germination stage (RSD) and comprehensive relative salt damage rate in the early seedling stage (CRS) under normal and salt stress conditions. Genome-wide association analysis was performed with 1,322,884 high-quality SNPs obtained by resequencing. Eight quantitative trait loci (QTLs) related to salt tolerance traits at the germination stage were detected in 2020 and 2021. They were related to the GPR () and SLR (), which were newly discovered in this study. Three genes were predicted as salt tolerance candidate genes: , and . At present, marker-assisted selection (MAS) and gene-edited breeding are becoming more widespread. Our discovery of candidate genes provides a reference for research in this field. The elite alleles identified in this study may provide a molecular basis for cultivating salt-tolerant rice varieties.

摘要

挖掘耐盐基因对于培育高品质耐盐水稻品种以提高盐碱地利用率具有重要意义。本研究测定了173份水稻种质在正常和盐胁迫条件下的发芽势(GP)、发芽率(GR)、幼苗长度(SL)、根长(RL)、相对盐害发芽势(GPR)、相对盐害发芽率(GRR)、相对盐害幼苗长度(SLR)、发芽期相对盐害率(RSD)和幼苗早期综合相对盐害率(CRS)。利用重测序获得的1322884个高质量单核苷酸多态性(SNP)进行全基因组关联分析。2020年和2021年检测到8个与发芽期耐盐性状相关的数量性状位点(QTL), 它们与本研究新发现的GPR()和SLR()有关。预测了3个基因作为耐盐候选基因:、和。目前,标记辅助选择(MAS)和基因编辑育种越来越普遍。我们对候选基因的发现为该领域的研究提供了参考。本研究鉴定的优良等位基因可能为培育耐盐水稻品种提供分子基础。

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