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Genetic analysis of resistance to septoria tritici blotch in the French winter wheat cultivars Balance and Apache

机译:法国冬小麦天平和阿帕奇对小麦黑粉病抗性的遗传分析

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摘要

The ascomycete Mycosphaerella graminicola is the causal agent of septoria tritici blotch (STB), one of the most destructive foliar diseases of bread and durum wheat globally, particularly in temperate humid areas. A screening of the French bread wheat cultivars Apache and Balance with 30 M. graminicola isolates revealed a pattern of resistant responses that suggested the presence of new genes for STB resistance. Quantitative trait loci (QTL) analysis of a doubled haploid (DH) population with five M. graminicola isolates in the seedling stage identified four QTLs on chromosomes 3AS, 1BS, 6DS and 7DS, and occasionally on 7DL. The QTL on chromosome 6DS flanked by SSR markers Xgpw5176 and Xgpw3087 is a novel QTL that now can be designated as Stb18. The QTLs on chromosomes 3AS and 1BS most likely represent Stb6 and Stb11, respectively, and the QTLs on chromosome 7DS are most probably identical with Stb4 and Stb5. However, the QTL identified on chromosome 7DL is expected to be a new Stb gene that still needs further characterization. Multiple isolates were used and show that not all isolates identify all QTLs, which clearly demonstrates the specificity in the M. graminicola–wheat pathosystem. QTL analyses were performed with various disease parameters. The development of asexual fructifications (pycnidia) in the characteristic necrotic blotches of STB, designated as parameter P, identified the maximum number of QTLs. All other parameters identified fewer but not different QTLs. The segregation of multiple QTLs in the Apache/Balance DH population enabled the identification of DH lines with single QTLs and multiple QTL combinations. Analyses of the marker data of these DH lines clearly demonstrated the positive effect of pyramiding QTLs to broaden resistance spectra as well as epistatic and additive interactions between these QTLs. Phenotyping of the Apache/Balance DH population in the field confirmed the presence of the QTLs that were identified in the seedling stage, but Stb18 was inconsistently expressed and might be particularly effective in young plants. In contrast, an additional QTL for STB resistance was identified on chromosome 2DS that is exclusively and consistently expressed in mature plants over locations and time, but it was also strongly related with earliness, tallness as well as resistance to Fusarium head blight. Although to date no Stb gene has been reported on chromosome 2D, the data provide evidence that this QTL is only indirectly related to STB resistance. This study shows that detailed genetic analysis of contemporary commercial bread wheat cultivars can unveil novel Stb genes that can be readily applied in marker-assisted breeding programs.Electronic supplementary materialThe online version of this article (doi:10.1007/s00122-011-1623-7) contains supplementary material, which is available to authorized users.
机译:子囊真菌米氏霉菌是小麦黑斑病(STB)的病原体,该病是全球面包和硬质小麦最具破坏性的叶面疾病之一,在温带潮湿地区尤其如此。对法国面包小麦品种Apache和Balance与30 M graminicola分离株的筛选显示了一种抗性应答模式,表明存在新的STB抗性基因。在苗期对具有五个葡萄孢分枝杆菌的双倍单倍体(DH)群体的数量性状基因座(QTL)分析确定了3AS,1BS,6DS和7DS染色体上的四个QTL,偶尔在7DL染色体上。在SDS标记Xgpw5176和Xgpw3087两侧的6DS染色体上的QTL是一个新颖的QTL,现在可以命名为Stb18。 3AS和1BS染色体上的QTL最有可能分别代表Stb6和Stb11,而7DS染色体上的QTL最有可能与Stb4和Stb5相同。但是,在7DL染色体上鉴定的QTL有望成为一个新的Stb基因,仍然需要进一步表征。使用了多个分离株,结果表明并非所有分离株都能识别所有QTL,这清楚地证明了格氏分枝杆菌-小麦病原体系统的特异性。使用各种疾病参数进行QTL分析。在STB的特征性坏死斑块(称为参数P)中无性结节(pycnidia)的发展确定了最大数量的QTL。所有其他参数标识的QTL较少,但不是不同。 Apache / Balance DH种群中多个QTL的分离使得能够鉴定具有单个QTL和多个QTL组合的DH品系。对这些DH系标记数据的分析清楚地证明了金字塔形QTL对拓宽抗性谱以及这些QTL之间的上位性和加性相互作用的积极作用。在田间对Apache / Balance DH种群进行表型分析,证实了在苗期鉴定出QTL的存在,但是Stb18的表达不一致,并且在年轻植物中可能特别有效。相比之下,在2DS染色体上鉴定出了一个额外的STB抗性QTL,该QTL在成熟植物中随位置和时间的推移一直唯一且始终如一地表达,但它与早熟,高大以及对枯萎病的抗性也密切相关。尽管到目前为止,在2D染色体上尚无Stb基因的报道,但数据提供了该QTL仅与STB抗性间接相关的证据。这项研究表明,对当代商品面包小麦品种进行详细的遗传分析可以揭示出可以轻松应用于标记辅助育种程序的新颖的Stb基因。电子补充材料本文的在线版本(doi:10.1007 / s00122-011-1623-7 )包含补充材料,授权用户可以使用。

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