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Yr29 与 QYr.nwafu-4BL.3 共同赋予小麦品种京 411 对条锈病的持久抗性。

Yr29 combined with QYr.nwafu-4BL.3 confers durable resistance to stripe rust in wheat cultivar Jing 411.

机构信息

State Key Laboratory for Crop Stress Resistance and High-Efficiency Production, College of Agronomy, Northwest A&F University, Yangling, Shaanxi, 712100, People's Republic of China.

State Key Laboratory for Crop Stress Resistance and High-Efficiency Production, Plant Protection, Northwest A&F University, Yangling, Shaanxi, 712100, People's Republic of China.

出版信息

Theor Appl Genet. 2024 Oct 19;137(11):252. doi: 10.1007/s00122-024-04758-y.

Abstract

The combination of a QTL on chromosome arm 4BL and Yr29 provides durable resistance with no significant yield penalty. Wheat stripe rust or yellow rust (YR), caused by Puccinia striiformis f. sp. tritici (Pst), causes substantial yield reductions globally, but losses can be minimized by using resistance genes. Chinese wheat cultivar Jing 411 (J411) has continued to display an acceptable level of adult-plant resistance (APR) to YR in varied field conditions since its release in the 1990s. A recombinant inbred line (RIL) population comprising 187 lines developed from a cross of J411 and Kenong 9204 (KN9204) was evaluated in multiple environments to identify genomic regions carrying genes for YR resistance. A total of five quantitative trait loci (QTL) on chromosome arm 1BL, 3BS, 4BL, 6BS, and 7BL from J411 and two QTL on 3DS and 7DL from KN9204 were detected using inclusive composite interval mapping with the wheat 660 K SNP array. QYr.nwafu-1BL.5 and QYr.nwafu-4BL.3 from J411 were robust and showed similar effects in all environments. QYr.nwafu-1BL.5 was likely the pleiotropic gene of Yr29/Lr46. QYr.nwafu-4BL.3 was located within a 1.0 cM interval delimited by KASP markers AX-111609222 and AX-89755491. Based on haplotype analysis, Yr29 and QYr.nwafu-4BL.3 were identified as genetic components of quantitative resistance in a number of wheat cultivars. Moreover, RILs with Yr29 and QYr.nwafu-4BL.3 individually or when combined showed higher resistance to YR in rust nurseries compared with RILs without them, and there was no negative effect of their presence on agronomic traits under rust-free conditions. These results suggest that effective polymerization strategy is important for breeding high yielding and durable resistance cultivars.

摘要

4BL 染色体臂上的 QTL 与 Yr29 的组合提供了持久的抗性,没有显著的产量损失。小麦条锈病或黄锈病(YR)由条形柄锈菌 f. sp. tritici(Pst)引起,在全球范围内造成了大量的产量损失,但通过使用抗性基因可以将损失降到最低。中国小麦品种 Jing 411(J411)自 20 世纪 90 年代推出以来,在各种田间条件下继续表现出对 YR 的可接受的成株期抗性(APR)。一个由 J411 和 Kenong 9204(KN9204)杂交产生的 187 个重组自交系(RIL)群体在多个环境中进行了评估,以鉴定携带 YR 抗性基因的基因组区域。利用包含小麦 660K SNP 阵列的包容性复合区间作图,从 J411 检测到 1BL、3BS、4BL、6BS 和 7BL 染色体臂上的 5 个数量性状位点(QTL)和 KN9204 上的 3DS 和 7DL 上的 2 个 QTL。J411 的 QYr.nwafu-1BL.5 和 QYr.nwafu-4BL.3 是稳健的,在所有环境中表现出相似的效果。QYr.nwafu-1BL.5 可能是 Yr29/Lr46 的多效性基因。QYr.nwafu-4BL.3 位于 KASP 标记 AX-111609222 和 AX-89755491 界定的 1.0cm 区间内。基于单倍型分析,Yr29 和 QYr.nwafu-4BL.3 被鉴定为多个小麦品种中数量抗性的遗传组成部分。此外,与没有 Yr29 和 QYr.nwafu-4BL.3 的 RIL 相比,单独或组合具有 Yr29 和 QYr.nwafu-4BL.3 的 RIL 在锈病苗圃中对 YR 的抗性更高,并且在无锈条件下它们的存在对农艺性状没有负面影响。这些结果表明,有效的聚合策略对于培育高产和持久抗性品种非常重要。

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