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Skiles 是北美冬小麦品种,其持久条锈病抗性的 QTL 分析。

QTL analysis of durable stripe rust resistance in the North American winter wheat cultivar Skiles.

机构信息

Department of Plant Pathology, Washington State University, Pullman, WA, 99164-6430, USA.

College of Life Sciences, Luoyang Normal University, Luoyang, 471934, Henan, People's Republic of China.

出版信息

Theor Appl Genet. 2019 Jun;132(6):1677-1691. doi: 10.1007/s00122-019-03307-2. Epub 2019 Feb 22.

Abstract

This study determined the effects of growth stage and temperature on expression of high-temperature adult-plant resistance to stripe rust, mapped six QTL for durable resistance in winter wheat Skiles using a doubled haploid population, and selected breeding lines with different combinations of the QTL using marker-assisted selection. The winter wheat cultivar Skiles has a high level of high-temperature adult-plant (HTAP) resistance to stripe rust caused by Puccinia striiformis f. sp. tritici (Pst). The Skiles HTAP resistance was highly effective at the adult-plant stage even under low temperatures, but high temperatures induced earlier expression and increased levels of resistance. To map resistance genes, Skiles was crossed with the susceptible cultivar Avocet S and a doubled haploid (DH) population was developed. The DH population was tested in fields at Pullman, WA, in 2016, 2017 and 2018, Mount Vernon, WA, in 2017 and 2018 under natural infection, and an environmentally controlled greenhouse at the adult-plant stage with the currently predominant race PSTv-37. The population was genotyped using the 90 K Illumina iSelect wheat SNP chip and selected SSR markers on specific chromosomes. In total, 2526 polymorphic markers were used for QTL mapping and six QTL were detected. Two of the six QTL had major effects across all environments, with one mapped on chromosome 3BS, explaining up to 28.2% of the phenotypic variation and the other on chromosome 4BL, explaining up to 41.8%. Minor QTL were mapped on chromosomes 1BL, 5AL, 6B and 7DL. Genotyping 140 wheat cultivars from the US Pacific Northwest revealed high polymorphism of markers for five of the QTL, and five highly resistant lines with the five QTL were selected from Skiles-derived breeding lines using the markers. This study demonstrated that multiple QTL with mostly additive effects contributed to the high-level HTAP resistance in Skiles.

摘要

本研究旨在确定生长阶段和温度对条锈病高温成株抗性表达的影响,利用双单倍体群体定位冬季小麦斯凯尔斯中 6 个持久抗性的 QTL,并利用标记辅助选择选择具有不同 QTL 组合的育种系。冬季小麦品种斯凯尔斯对由小麦条锈菌引起的高温成株(HTAP)条锈病具有高水平的抗性。即使在低温下,斯凯尔斯的 HTAP 抗性在成株期也非常有效,但高温会诱导更早的表达和更高水平的抗性。为了定位抗性基因,斯凯尔斯与易感品种阿沃塞特 S 杂交,并开发了双单倍体(DH)群体。DH 群体于 2016 年、2017 年和 2018 年在华盛顿州普尔曼进行田间试验,2017 年和 2018 年在华盛顿州芒特弗农进行自然感染田间试验,以及在成株期的环境控制温室中进行目前主要流行的 PSTv-37 试验。该群体使用 90K Illumina iSelect 小麦 SNP 芯片和特定染色体上的 SSR 标记进行基因型分析。总共使用了 2526 个多态性标记进行 QTL 作图,检测到 6 个 QTL。6 个 QTL 中有 2 个在所有环境中具有主要影响,其中一个位于 3BS 染色体上,解释了 28.2%的表型变异,另一个位于 4BL 染色体上,解释了 41.8%。较小的 QTL 位于 1BL、5AL、6B 和 7DL 染色体上。对来自美国太平洋西北地区的 140 个小麦品种进行基因分型表明,其中 5 个 QTL 的标记多态性很高,利用这些标记从斯凯尔斯衍生的育种系中选择了 5 个带有 5 个 QTL 的高抗品系。本研究表明,多个具有加性效应的 QTL 导致了斯凯尔斯中高水平的 HTAP 抗性。

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