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Genetic Diversity for Stripe Rust Resistance in Wheat Landraces and Identification of Accessions with Resistance to Stem Rust and Stripe Rust

机译:小麦地方品种抗条锈性的遗传多样性及抗茎锈和条锈病的种质鉴定

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摘要

Stripe rust, caused by Puccinia striiformis f. sp. tritici, and stem rust, caused by P. graminis f. sp. tritici, are economically important diseases of wheat (Triticum aestivum L.). Stripe rust continues to cause huge economic losses in major wheat-growing regions as new races of the pathogen frequently emerge. Wheat landraces from diverse geographic regions are a potential source of novel rust resistance genes. In search of multiple rust resistance, a total of 652 landrace accessions from 54 countries previously screened for resistance to stem rust pathogen (race Ug99) were tested for resistance to current races of stripe rust in Pullman and Mt. Vernon, WA. Of the accessions, 165 showed resistance to stripe rust in the field, and 30 of them also had resistance to stem rust. The 652 landraces were genotyped with 72 simple sequence repeat markers, and 500 of them had data for 8633 single nucleotide polymorphism (SNP) markers covering the whole wheat genome. Genetic analysis based on SNP markers grouped the resistant landraces into nine different clusters in an unweighted pair group with arithmetic mean dendrogram and three groups in principal coordinates analyses, suggesting that resistant genotypes are genetically diverse and are expected to possess diverse resistance genes. Landraces with resistance to stem rust and stripe rust have both global and regional importance as sources of developing new and diverse resistant germplasm.
机译:条锈菌引起的条锈病f。 sp。小麦和小麦引起的锈病f。graminis f。 sp。小麦是小麦的重要经济疾病(Triticum aestivum L.)。由于病原体的新种族频繁出现,条锈病继续在主要小麦产区造成巨大的经济损失。来自不同地理区域的小麦地方品种是新型抗锈基因的潜在来源。为寻求多重防锈性能,对先前已对茎锈病病原体(Ug99种族)抗性进行筛选的54个国家/地区的652个地方种质进行了抗当前锈病种族的检测。华盛顿州弗农。在这些种质中,有165种在田间表现出抗条锈病的能力,其中30种也对茎秆锈病有抵抗力。用72个简单序列重复标记对652个地方品种进行基因分型,其中500个具有覆盖整个小麦基因组的8633个单核苷酸多态性(SNP)标记数据。基于SNP标记的遗传分析将抗性地方品种分为无加权对组的9个不同簇,其中算术平均树状图和3个主坐标分析组表明,抗性基因型具有遗传多样性,并有望拥有多种抗性基因。具有抗茎锈病和条锈病的地方品种作为开发新型抗病种质的来源具有全球和区域重要性。

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