首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A genome-wide association study uncovers consistent quantitative trait loci for resistance to Verticillium wilt and Fusarium wilt race 4 in the US Upland cotton
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A genome-wide association study uncovers consistent quantitative trait loci for resistance to Verticillium wilt and Fusarium wilt race 4 in the US Upland cotton

机译:基因组 - 范围的协会研究揭示了对美国普满棉花的耐毛骨枯萎病的抗性的一致定量特性基因座

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Key message A high-resolution GWAS detected consistent QTL for resistance to Verticillium wilt and Fusarium wilt race 4 in 376 U.S. Upland cotton accessions based on six independent replicated greenhouse tests. Verticillium wilt (VW, caused by Verticillium dahliae Kleb.) and Fusarium wilt (FOV, caused by Fusarium oxysporum f.sp. vasinfectum Atk. Sny & Hans) are the most important soil-borne fungal diseases in cotton. To augment and refine resistance quantitative trait loci (QTL), we conducted a genome-wide association study (GWAS) using high-density genotyping with the CottonSNP63K array. Resistance of 376 US Upland cotton accessions to a defoliating VW and virulent FOV4 was evaluated in four and two independent replicated greenhouse tests, respectively. A total of 15 and 13 QTL for VW and FOV4 resistances were anchored by 30 (on five chromosomes) and 56 (on six chromosomes) significant single nucleotide polymorphic (SNPs) markers, respectively. QTL on c8, c10, c16, and c21 were consistent in two or more tests for VW resistance, while two QTL on c8 and c14 were consistent for FOV4 resistance in two tests. Two QTL clusters on c16 and c19 were observed for both VW and FOV4 resistance, suggesting that these genomic regions may harbor genes in response to both diseases. Using BLAST search against the sequenced TM-1 genome, 30 and 35 candidate genes were identified on four QTL for VW resistance and on three QTL for FOV4 resistance, respectively. These genomic regions were rich in NBS-LRR genes presented in clusters. The results create opportunities for further studies to determine the correlations of field resistance with these QTL, molecular examinations of VW and FOV4 resistances, marker-assisted selection (MAS) and eventual cloning of QTL for disease resistance in cotton.
机译:关键消息高分辨率Gwas检测到基于六个独立复制的温室测试的376 U.S.Upland棉花加入耐血液枯萎病和Fusarium Wilt Race 4的耐受抗性的一致QTL。枯萎病(VW,由Vercillium Dahliae Kleb引起的)和镰刀菌(FOV,由Fusarium Oxysporum F.Sp.Vasinfectum Atk引起的Fusarium Wilt(FOV。斯瓦西&Hans)是棉花中最重要的土壤生真菌疾病。增强和精炼抗性定量性状点(QTL),我们使用高密度基因分型与棉花NP63K阵列进行了基因组关联研究(GWAS)。在四次和两个独立的复制温室测试中,评估了376份US upland棉花加入脱落VW和毒性FOV4的抵抗力。总共15和13 QTL用于VW和FOV4电阻分别以30(在五种染色体)和56(六种染色体上)分别锚定,分别是显着的单核苷酸多态性(SNP)标记物。 C8,C10,C16和C21上的QTL在两个或多个VW电阻测试中一致,而C8和C14上的两个QTL在两个测试中的FOV4电阻一致。对于VW和FOV4阻力,观察到C16和C19上的两个QTL簇,这表明这些基因组区域可能会对这两种疾病进行含有基因。使用BLAST搜索对测序的TM-1基因组,分别在四个QTL上鉴定30和35个候选基因,以分别用于FOV4电阻的三个QTL。这些基因组区域富含簇的NBS-LRR基因。结果为进一步研究创造了进一步研究的机会,以确定具有这些QTL,VW和FOV4电阻的分子检查,标记辅助选择(MAS)和最终克隆QTL在棉花中抗性的抗病症的相关性。

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