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含有 和 基因的 CIMMYT 小麦优良品系的抗病性评价。

Disease Resistance Evaluation of Elite CIMMYT Wheat Lines Containing the Coupled and Genes.

机构信息

International Maize and Wheat Improvement Center (CIMMYT), El Batan, Mexico.

Faculty of Land and Food Systems, the University of British Columbia (UBC), Vancouver, BC Canada V6T 1Z4.

出版信息

Plant Dis. 2020 Sep;104(9):2369-2376. doi: 10.1094/PDIS-02-20-0369-RE. Epub 2020 Jul 13.

Abstract

Fusarium head blight (FHB) and stem rust are among the most devastating diseases of wheat worldwide. is the most widely utilized and the only isolated gene for FHB resistance, while is a durable stem rust resistance gene used in rust-prone areas. The two loci are closely linked on the short arm of chromosome 3B and the two genes are in repulsion phase among cultivars. With climate change and the shift in populations, it is imperative to develop wheat cultivars resistant to both diseases. The present study was dedicated to developing wheat germplasm combining and resistance alleles in the International Maize and Wheat Improvement Center (CIMMYT)'s elite cultivars' backgrounds. Four recombinant inbred lines (RILs) in Hartog background that have the resistant and alleles in coupled phase linkage were crossed with seven CIMMYT bread wheat lines, resulting in 208 lines. Molecular markers for both genes were employed in addition to the use of pseudo-black chaff (PBC) as a phenotypic marker for the selection of . At various stages of the selection process, progeny lines were assessed for FHB index, Fusarium damaged kernels (FDK), stem rust, and PBC expression as well as other diseases of interest (stripe rust and leaf spotting diseases). The 25 best lines were selected for CIMMYT's wheat breeding program. In addition to expressing resistance to FHB, most of these 25 lines have an acceptable level of resistance to other tested diseases. These lines will be useful for wheat breeding programs worldwide and potentially speed up the resistance breeding efforts against FHB and stem rust.

摘要

镰刀菌穗腐病(FHB)和茎锈病是全球小麦最具破坏性的疾病之一。 是应用最广泛的、唯一鉴定的 FHB 抗性基因,而 是在锈病易发病地区使用的持久茎锈病抗性基因。这两个位点紧密连锁在 3B 染色体的短臂上,两个基因在品种间处于相斥阶段。随着气候变化和种群的转移,开发同时抗这两种疾病的小麦品种势在必行。本研究致力于在国际玉米小麦改良中心(CIMMYT)的优良品种背景中开发同时具有 和 抗性等位基因的小麦种质资源。在 Hartog 背景下,有四个与 和 抗性等位基因相耦合的重组自交系(RILs)与七个 CIMMYT 面包小麦品系杂交,产生了 208 个系。除了使用伪黑穗(PBC)作为 的表型标记外,还使用了两个基因的分子标记来选择 。在选择过程的各个阶段,对后代系进行 FHB 指数、镰刀菌损伤籽粒(FDK)、茎锈病和 PBC 表达以及其他感兴趣的疾病(条锈病和叶斑病)的评估。选择了 25 个最好的系用于 CIMMYT 的小麦育种计划。除了表达对 FHB 的抗性外,这些 25 个系中的大多数对其他测试的疾病也具有可接受的抗性水平。这些系将对全球的小麦育种计划有用,并有可能加速对 FHB 和茎锈病的抗性育种工作。

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