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源自合成六倍体小麦的叶锈病广谱新抗性。

New broad-spectrum resistance to septoria tritici blotch derived from synthetic hexaploid wheat.

机构信息

Plant Research International, Biointeractions and Plant Health, P.O. Box 16, 6700 AA, Wageningen, The Netherlands.

出版信息

Theor Appl Genet. 2012 Jan;124(1):125-42. doi: 10.1007/s00122-011-1692-7. Epub 2011 Sep 13.

Abstract

Septoria tritici blotch (STB), caused by the ascomycete Mycosphaerella graminicola, is one of the most devastating foliar diseases of wheat. We screened five synthetic hexaploid wheats (SHs), 13 wheat varieties that represent the differential set of cultivars and two susceptible checks with a global set of 20 isolates and discovered exceptionally broad STB resistance in SHs. Subsequent development and analyses of recombinant inbred lines (RILs) from a cross between the SH M3 and the highly susceptible bread wheat cv. Kulm revealed two novel resistance loci on chromosomes 3D and 5A. The 3D resistance was expressed in the seedling and adult plant stages, and it controlled necrosis (N) and pycnidia (P) development as well as the latency periods of these parameters. This locus, which is closely linked to the microsatellite marker Xgwm494, was tentatively designated Stb16q and explained from 41 to 71% of the phenotypic variation at seedling stage and 28-31% in mature plants. The resistance locus on chromosome 5A was specifically expressed in the adult plant stage, associated with SSR marker Xhbg247, explained 12-32% of the variation in disease, was designated Stb17, and is the first unambiguously identified and named QTL for adult plant resistance to M. graminicola. Our results confirm that common wheat progenitors might be a rich source of new Stb resistance genes/QTLs that can be deployed in commercial breeding programs.

摘要

小麦叶枯斑病(STB)由子囊菌麦球腔菌(Mycosphaerella graminicola)引起,是小麦最具破坏性的叶部病害之一。我们筛选了五份人工合成六倍体小麦(SH)、十三份代表不同品种的小麦品种和两份感病对照,用全球 20 个分离株对其进行了检测,发现 SH 具有非常广泛的 STB 抗性。随后,我们对 SH M3 和高度感病的面包小麦品种 Kulm 杂交产生的重组自交系(RIL)进行了开发和分析,在 3D 和 5A 染色体上发现了两个新的抗性位点。3D 抗性在幼苗和成株期表达,控制坏死(N)和分生孢子(P)的发育以及这些参数的潜伏期。这个位点与微卫星标记 Xgwm494 紧密连锁,被暂时命名为 Stb16q,解释了幼苗期 41-71%和成熟植株 28-31%的表型变异。5A 染色体上的抗性位点仅在成株期表达,与 SSR 标记 Xhbg247 相关,解释了 12-32%的病情变异,被命名为 Stb17,是第一个明确鉴定和命名的抗 M. graminicola 成株期 QTL。我们的结果证实,普通小麦的祖先可能是新的 Stb 抗性基因/QTL 的丰富来源,可以在商业育种计划中加以利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6869/3249545/b6347a156c43/122_2011_1692_Fig1_HTML.jpg

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