Genetic architecture of wild soybean (Glycine soja) response to soybean cyst nematode (Heterodera glycines)

被引:0
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作者
Hengyou Zhang
Qijian Song
Joshua D. Griffin
Bao-Hua Song
机构
[1] University of North Carolina at Charlotte,Department of Biological Sciences
[2] USDA-ARS,Soybean Genomics and Improvement Laboratory
[3] SAS Institute,undefined
来源
关键词
Wild soybean; Soybean cyst nematode (SCN); Single-nucleotide polymorphisms (SNPs); Genome-wide association study (GWAS); Candidate genes; Crop wild relatives;
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摘要
The soybean cyst nematode (SCN) is one of the most destructive pathogens of soybean plants worldwide. Host-plant resistance is an environmentally friendly method to mitigate SCN damage. To date, the resistant soybean cultivars harbor limited genetic variation, and some are losing resistance. Thus, a better understanding of the genetic mechanisms of the SCN resistance, as well as developing diverse resistant soybean cultivars, is urgently needed. In this study, a genome-wide association study (GWAS) was conducted using 1032 wild soybean (Glycine soja) accessions with over 42,000 single-nucleotide polymorphisms (SNPs) to understand the genetic architecture of G. soja resistance to SCN race 1. Ten SNPs were significantly associated with the response to race 1. Three SNPs on chromosome 18 were localized within the previously identified quantitative trait loci (QTLs), and two of which were localized within a strong linkage disequilibrium block encompassing a nucleotide-binding (NB)-ARC disease resistance gene (Glyma.18G102600). Genes encoding methyltransferases, the calcium-dependent signaling protein, the leucine-rich repeat kinase family protein, and the NB-ARC disease resistance protein, were identified as promising candidate genes. The identified SNPs and candidate genes can not only shed light on the molecular mechanisms underlying SCN resistance, but also can facilitate soybean improvement employing wild genetic resources.
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页码:1257 / 1265
页数:8
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