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欧洲冬小麦抗赤霉病遗传多样性评估

Evaluation of genetic diversity of Fusarium head blight resistance in European winter wheat.

作者信息

Zwart Rebecca S, Muylle Hilde, Van Bockstaele Erik, Roldán-Ruiz Isabel

机构信息

Institute for Agricultural and Fisheries Research (ILVO)-Plant, Growth and Development, Caritasstraat 21, 9090 Melle, Belgium.

出版信息

Theor Appl Genet. 2008 Sep;117(5):813-28. doi: 10.1007/s00122-008-0822-3. Epub 2008 Jun 28.

Abstract

Genetic diversity in relation to Fusarium head blight (FHB) resistance was investigated among 295 European winter wheat cultivars and advanced breeding lines using 47 wheat SSR markers. Twelve additional wheat lines with known FHB resistance were included as reference material. At least one SSR marker per chromosome arm, including SSR markers reported in the literature with putative associations with QTLs for FHB resistance, were assayed to give an even distribution of SSR markers across the wheat genome. A total of 404 SSR alleles were detected. The number of alleles per locus ranged from 2 to 21, with an average of 8.6 alleles. The polymorphism information content of the SSR markers ranged from 0.13 (Xwmc483) to 0.87 (Xwmc607), with an average of 0.54. Cluster analysis was performed by both genetic distance-based and model-based methods. In general, the dendrogram based on unweighted pair-group method with arithmetic averages showed similar groupings to the model-based analysis. Seven clusters were identified by the model-based method, which did not strictly correspond to geographical origin. The FHB resistance level of the wheat lines was evaluated in field trials conducted over multiple years or locations by assessing the following traits: % FHB severity, % FHB incidence, % diseased kernels, in spray inoculation trials, and % FHB spread and % wilted tips, in point inoculation trials. Association analysis between SSR markers and the FHB disease traits detected markers significantly associated with FHB resistance, including some that have not been previously reported. The percentage of variance explained by each individual marker was, however, rather low. Haplotype analysis revealed that the FHB-resistant European wheat lines do not contain the 3BS locus derived from Sumai 3. The information generated in this study will assist in the selection of parental lines in order to increase the efficiency of breeding efforts for FHB resistance.

摘要

利用47个小麦SSR标记,对295个欧洲冬小麦品种和高级育种系进行了与赤霉病(FHB)抗性相关的遗传多样性研究。另外纳入了12个已知FHB抗性的小麦品系作为参考材料。对每个染色体臂至少检测一个SSR标记,包括文献中报道的与FHB抗性QTLs存在推定关联的SSR标记,以便使SSR标记在小麦基因组中均匀分布。共检测到404个SSR等位基因。每个位点的等位基因数从2到21不等,平均为8.6个等位基因。SSR标记的多态性信息含量范围从0.13(Xwmc483)到0.87(Xwmc607),平均为0.54。通过基于遗传距离和基于模型的方法进行聚类分析。总体而言,基于算术平均数的非加权配对组法构建的树状图显示出与基于模型分析相似的分组。基于模型的方法鉴定出7个聚类,这些聚类与地理起源并不严格对应。通过评估以下性状,在多年或多地进行的田间试验中对小麦品系的FHB抗性水平进行了评价:喷雾接种试验中的FHB严重度百分比、FHB发病率百分比、病粒百分比,以及点接种试验中的FHB传播百分比和枯萎尖端百分比。SSR标记与FHB病害性状之间的关联分析检测到了与FHB抗性显著相关标记,包括一些此前未报道过的标记。然而,每个单个标记解释的变异百分比相当低。单倍型分析表明,欧洲FHB抗性小麦品系不包含源自苏麦3号的3BS位点。本研究产生的信息将有助于亲本系的选择,以提高FHB抗性育种工作的效率。

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