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现代欧洲冬小麦品种中小麦叶枯病抗性的关联分析

Association mapping of Stagonospora nodorum blotch resistance in modern European winter wheat varieties.

作者信息

Tommasini L, Schnurbusch T, Fossati D, Mascher F, Keller B

机构信息

Department of Plant Molecular Biology, Institute of Plant Biology, University of Zürich, Zürich, 8008, Switzerland.

出版信息

Theor Appl Genet. 2007 Sep;115(5):697-708. doi: 10.1007/s00122-007-0601-6. Epub 2007 Jul 19.

Abstract

Association mapping in populations relevant for wheat breeding has a large potential for validating and fine-mapping QTLs identified in F2- or DH (double haploid)-derived populations. In this study, associations between markers in the region of QSng.sfr-3BS, a major QTL for resistance to Stagonospora nodorum glume blotch (SNG), and SNG resistance were investigated by linkage and association analyses. After increasing marker density in 240 F(5:7) recombinant inbred lines (RILs), QSng.sfr-3BS explained 43% of the genetic variance and peaked 0.6 cM proximal from the marker SUN2-3B. Association between SNG resistance and markers mapped in the region of QSng.sfr-3BS was investigated in a population of 44 modern European winter wheat varieties. Two genetically distinct subpopulations were identified within these lines. In agreement with linkage analyses, association mapping by a least squares general linear model (GLM) at marker loci in the region of QSng.sfr-3BS revealed the highest association with SNG resistance for SUN2-3B (p < 0.05). Association mapping can provide an effective mean of relating genotypes to complex quantitative phenotypes in hexaploid wheat. Linkage disequilibrium (r (2)) in chromosome 3B extended less than 0.5 cM in 44 varieties, while it extended about 30 cM in 240 RILs, based on 91 SSR and STS marker-pair comparisons. This indicated that the association mapping population had a marker resolution potential at least 390-fold higher compared to the RIL population.

摘要

在与小麦育种相关的群体中进行关联作图,对于验证和精细定位在F2或双单倍体(DH)衍生群体中鉴定出的数量性状基因座(QTL)具有巨大潜力。在本研究中,通过连锁分析和关联分析,研究了小麦抗颖枯病(SNG)主要QTL QSng.sfr - 3BS区域内的标记与SNG抗性之间的关联。在增加了240个F(5:7)重组自交系(RIL)的标记密度后,QSng.sfr - 3BS解释了43%的遗传变异,并且在距标记SUN2 - 3B近端0.6 cM处达到峰值。在44个现代欧洲冬小麦品种群体中,研究了SNG抗性与QSng.sfr - 3BS区域内标记的关联。在这些品系中鉴定出了两个遗传上不同的亚群体。与连锁分析一致,通过最小二乘广义线性模型(GLM)在QSng.sfr - 3BS区域的标记位点进行关联作图,发现SUN2 - 3B与SNG抗性的关联最高(p < 0.05)。关联作图可以为六倍体小麦中基因型与复杂数量性状的关联提供一种有效的方法。基于91对SSR和STS标记对的比较,在44个品种中,3B染色体上的连锁不平衡(r(2))延伸小于0.5 cM,而在240个RIL中延伸约30 cM。这表明与RIL群体相比,关联作图群体的标记分辨率潜力至少高390倍。

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