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Genome-wide association and genomic prediction identifies soybean cyst nematode resistance in common bean including a syntenic region to soybean Rhg1 locus

机译:全基因组关联和基因组预测可确定普通豆中大豆囊肿线虫的抗性包括对大豆Rhg1基因座的同义区域

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摘要

A genome-wide association study (GWAS) was applied to detect single nucleotide polymorphisms (SNPs) significantly associated with resistance to Heterodera glycines (HG) also known as the soybean cyst nematode (SCN) in the core collection of common bean, Phaseolus vulgaris. There were 84,416 SNPs identified in 363 common bean accessions. GWAS identified SNPs on chromosome (Chr) 1 that were significantly associated with resistance to HG type 2.5.7. These SNPs were in linkage disequilibrium with a gene cluster orthologous to the three genes at the Rhg1 locus in soybean. A novel signal on Chr 7 was detected and associated with resistance to HG type 1.2.3.5.6.7. Genomic predictions (GPs) for resistance to these two SCN HG types in common bean achieved prediction accuracy of 0.52 and 0.41, respectively. Our study generated a high-quality SNP panel for 363 common bean accessions and demonstrated that both GWAS and GP were effective strategies to understand the genetic architecture of SCN resistance in common bean.
机译:一项全基因组关联研究(GWAS)用于检测与普通豆菜豆(Phaseolus vulgaris)核心收藏中与对异戊二烯甘氨酸(HG)的抗性显着相关的单核苷酸多态性(SNP),也称为大豆囊虫线虫(SCN)。在363个普通豆种中鉴定出84,416个SNP。 GWAS在染色体(Chr)1上鉴定出了与HG 2.5.7型耐药性显着相关的SNP。这些SNP与大豆Rhg1基因座的三个基因同源的基因簇处于连锁不平衡状态。在Chr 7上检测到一个新信号,并与对HG类型1.2.3.5.6.7的抗性相关。普通豆中对这两种SCN HG类型的抗性的基因组预测(GPs)分别达到0.52和0.41的预测精度。我们的研究为363个普通豆种质生成了高质量的SNP专家组,并证明GWAS和GP都是了解普通豆SCN抗性遗传结构的有效策略。

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