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组合全生育期和高温成株期抗性 QTL 赋予冬小麦品种 Madsen 高水平、持久的抗条锈性。

Combination of all-stage and high-temperature adult-plant resistance QTL confers high-level, durable resistance to stripe rust in winter wheat cultivar Madsen.

机构信息

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

Institute of Biotechnology and Nuclear Technology Research, Sichuan Academy of Agricultural Sciences, Chengdu, 610061, Sichuan, China.

出版信息

Theor Appl Genet. 2018 Sep;131(9):1835-1849. doi: 10.1007/s00122-018-3116-4. Epub 2018 May 24.

Abstract

Wheat cultivar Madsen has a new gene on the short arm of chromosome 1A and two QTL for all-stage resistance and three QTL for high-temperature adult-plant resistance that in combination confer high-level, durable resistance to stripe rust. Wheat cultivar Madsen has maintained a high-level resistance to stripe rust over 30 years. To map quantitative trait loci (QTL) underlying the high-level, durable resistance, 156 recombinant inbred lines (RILs) developed from cross Avocet S × Madsen were phenotyped with selected races of Puccinia striiformis f. sp. tritici in the greenhouse seedling tests, and in naturally infected fields during 2015-2017. The RILs were genotyped by SSR and SNP markers from genotyping by sequencing and the 90 K wheat SNP chip. Three QTL for all-stage resistance were mapped on chromosomes 1AS, 1BS and 2AS, and two QTL for high-temperature adult-plant (HTAP) resistance were mapped on 3BS and 6BS. The most effective QTL on 2AS, explaining 8.97-23.10% of the phenotypic variation in seedling tests and 8.60-71.23% in field tests, contained Yr17 for all-stage resistance and an additional gene for HTAP resistance. The 6BS QTL, detected in all field tests, was identified as Yr78. The 1AS QTL, conferring all-stage resistance, was identified as a new gene, which explained 20.45 and 30.23% of variation in resistance to races PSTv-37 and PSTv-40, respectively, and contributed significantly to field resistance at Pullman in 2015-2017, but was not detected at Mount Vernon. The interactions among QTL were mostly additive, and RILs with all five QTL had the highest level of resistance in the field, similar to Madsen. Genotyping 148 US Pacific Northwest wheat cultivars with markers for the 1AS, 2AS and 6BS QTL validated the genes and markers, and indicated their usefulness for marker-assisted selection.

摘要

小麦品种 Madsen 在 1A 染色体短臂上有一个新基因,以及两个全生育期抗性 QTL 和三个高温成株期抗性 QTL,这些 QTL 共同赋予其对条锈病的高水平、持久抗性。小麦品种 Madsen 已经保持了 30 多年对条锈病的高水平抗性。为了定位高水平、持久抗性的数量性状基因座(QTL),利用温室幼苗接种试验和 2015-2017 年自然感染田间试验,对来自 Avocet S×Madsen 杂交的 156 个重组自交系(RIL)进行了与小麦条锈菌生理小种 Puccinia striiformis f. sp. tritici 的选择接种。通过 SSR 和 SNP 标记对 RIL 进行了基因分型,SSR 标记来自测序基因分型,SNP 标记来自 90K 小麦 SNP 芯片。在 1AS、1BS 和 2AS 染色体上定位到 3 个全生育期抗性 QTL,在 3BS 和 6BS 染色体上定位到 2 个高温成株期(HTAP)抗性 QTL。在幼苗接种试验和田间试验中,解释表型变异 8.97-23.10%和 8.60-71.23%的 2AS 上最有效的 QTL 包含 Yr17 对全生育期抗性和一个额外的 HTAP 抗性基因。在所有田间试验中检测到的 6BS QTL 被鉴定为 Yr78。在赋予全生育期抗性的 1AS QTL 被鉴定为一个新基因,该基因分别解释了对 PSTv-37 和 PSTv-40 抗性的 20.45%和 30.23%的变异,并且在 2015-2017 年在 Pullman 田间表现出显著的抗性,但在 Mount Vernon 没有检测到。QTL 之间的互作主要是加性的,并且具有所有五个 QTL 的 RIL 在田间具有最高的抗性水平,与 Madsen 相似。用 1AS、2AS 和 6BS QTL 的标记对 148 个美国太平洋西北小麦品种进行基因分型,验证了这些基因和标记的有效性,并表明它们在标记辅助选择中的有用性。

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