Genome-wide association mapping for the identification of stripe rust resistance loci in US hard winter wheat.

IF 4.4 1区 农林科学 Q1 AGRONOMY
Rajat Sharma, Meinan Wang, Xianming Chen, Indira Priyadarshini Lakkakula, Paul St Amand, Amy Bernardo, Guihua Bai, Robert L Bowden, Brett F Carver, Jeffrey D Boehm, Meriem Aoun
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Abstract

Key message: The GWAS and testing with Yr gene linked markers identified 109 loci including 40 novel loci for all-stage and adult plant stage resistance to stripe rust in 459 US contemporary hard winter wheat genotypes. Stripe rust is a destructive wheat disease, caused by Puccinia striiformis f. sp. tritici (Pst). To identify sources of stripe rust resistance in US contemporary hard winter wheat, a panel of 459 Great Plains wheat genotypes was evaluated at the seedling stage against five US Pst races and at the adult plant stage in field environments in Oklahoma, Kansas, and Washington. The results showed that 7-14% of the genotypes were resistant to Pst races at the seedling stage, whereas 32-78% of genotypes were resistant at the adult plant stage across field environments, indicating the presence of adult plant resistance. Sixteen genotypes displayed a broad spectrum of resistance to all five Pst races and across all field environments. The panel was further genotyped using 9858 single-nucleotide polymorphisms (SNPs) generated from multiplex restriction amplicon sequencing (MRASeq) and the functional DNA markers linked to the known stripe rust resistance (Yr) genes Yr5, Yr15, Yr17, Yr18, Yr29, Yr36, Yr40, Yr46, and QYr.tamu-2B. A genome-wide association study (GWAS) was performed using genotypic and phenotypic data, which identified 110 SNPs and the functional markers linked to Yr15 and Yr17 to be significantly associated with stripe rust response. In addition, Yr5, Yr15, Yr17, Yr18, Yr29, and QYr.tamu-2B were detected by their functional DNA markers in the panel. This study identified 40 novel loci associated with stripe rust resistance in genomic regions not previously characterized by known Yr genes. These findings offer significant opportunities to diversify and enhance stripe rust resistance in hard winter wheat.

美国硬冬小麦抗条锈病位点的全基因组关联定位。
关键信息:GWAS和Yr基因连锁标记检测在459个美国当代硬冬小麦基因型中鉴定出109个抗条锈病位点,其中40个为全生育期和成株期抗条锈病的新位点。小麦条锈病是由小麦条锈病(Pst)引起的一种小麦病害。为了确定美国当代硬冬小麦抗条锈病的来源,在俄克拉何马州、堪萨斯州和华盛顿州的田间环境中,对459个大平原小麦基因型在苗期与5个美国前种和成株阶段进行了评估。结果表明,7-14%的基因型在苗期对Pst小种产生抗性,32-78%的基因型在成株期产生抗性,表明成株存在抗性。16个基因型对所有5个Pst小种和所有田间环境均表现出广泛的抗性。利用多重限制性扩增子测序(MRASeq)产生的9858个单核苷酸多态性(snp)和与已知抗条锈病(Yr)基因Yr5、Yr15、Yr17、Yr18、Yr29、Yr36、Yr40、Yr46和QYr.tamu-2B相关的功能DNA标记,进一步对该群体进行基因分型。利用基因型和表型数据进行全基因组关联研究(GWAS),发现110个snp和与Yr15和Yr17相关的功能标记与条锈病反应显著相关。此外,Yr5、Yr15、Yr17、Yr18、Yr29和QYr。tamu-2B的功能DNA标记检测。本研究确定了40个与条锈病抗性相关的新位点,这些位点以前未被已知的Yr基因所表征。这些发现为提高硬冬小麦的抗条锈病能力提供了重要的机遇。
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来源期刊
CiteScore
9.60
自引率
7.40%
发文量
241
审稿时长
2.3 months
期刊介绍: Theoretical and Applied Genetics publishes original research and review articles in all key areas of modern plant genetics, plant genomics and plant biotechnology. All work needs to have a clear genetic component and significant impact on plant breeding. Theoretical considerations are only accepted in combination with new experimental data and/or if they indicate a relevant application in plant genetics or breeding. Emphasizing the practical, the journal focuses on research into leading crop plants and articles presenting innovative approaches.
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