Genome-wide association study of soybean seed germination under drought stress

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作者
Zhangxiong Liu
Huihui Li
Zuowang Gou
Yanjun Zhang
Xingrong Wang
Honglei Ren
Zixiang Wen
Beom-Kyu Kang
Yinghui Li
Lili Yu
Huawei Gao
Dechun Wang
Xusheng Qi
Lijuan Qiu
机构
[1] Chinese Academy of Agricultural Sciences,National Key Facility for Gene Resources and Genetic Improvement/Key Laboratory of Crop Germplasm Utilization, Ministry of Agriculture/Institute of Crop Sciences
[2] Gansu Academy of Agricultural Sciences,Institute of Crop Sciences
[3] Heilongjiang Academy of Agricultural Sciences,Maize Research Institute
[4] Michigan State University,Department of Plant, Soil and Microbial Sciences
[5] National Institute of Crop Science,Upland Crop Breeding Research Division, Department of Southern Area Crop Science
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关键词
Soybean; Drought tolerance; Germination stage; Genome-wide association analysis (GWAS); Single-nucleotide polymorphisms (SNP);
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摘要
Drought stress, which is increasing with climate change, is a serious threat to agricultural sustainability worldwide. Seed germination is an essential growth phase that ensures the successful establishment and productivity of soybean, which can lose substantial productivity in soils with water deficits. However, only limited genetic information is available about how germinating soybean seeds may exert drought tolerance. In this study, we examined the germinating seed drought-tolerance phenotypes and genotypes of a panel of 259 released Chinese soybean cultivars panel. Based on 4616 Single-Nucleotide Polymorphisms (SNPs), we conducted a mixed-linear model GWAS that identified a total of 15 SNPs associated with at least one drought-tolerance index. Notably, three of these SNPs were commonly associated with two drought-tolerance indices. Two of these SNPs are positioned upstream of genes, and 11 of them are located in or near regions where QTLs have been previously mapped by linkage analysis, five of which are drought-related. The SNPs detected in this study can both drive hypothesis-driven research to deepen our understanding of genetic basis of soybean drought tolerance at the germination stage and provide useful genetic resources that can facilitate the selection of drought stress traits via genomic-assisted selection.
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页码:661 / 673
页数:12
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