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通过候选基因法对四倍体马铃薯(Solanum tuberosum)中一个大丽轮枝菌抗性数量性状位点进行连锁不平衡作图。

Linkage disequilibrium mapping of a Verticillium dahliae resistance quantitative trait locus in tetraploid potato ( Solanum tuberosum) through a candidate gene approach.

作者信息

Simko I, Costanzo S, Haynes K G, Christ B J, Jones R W

机构信息

Vegetable Laboratory, USDA-ARS-PSI, Bldg. 010A, 10300 Baltimore Avenue, Beltsville, MD 20705, USA.

出版信息

Theor Appl Genet. 2004 Jan;108(2):217-24. doi: 10.1007/s00122-003-1431-9. Epub 2003 Oct 2.

DOI:10.1007/s00122-003-1431-9
PMID:14523522
Abstract

We have used the linkage disequilibrium mapping method to test for an association between a candidate gene marker and resistance to Verticillium dahliae in tetraploid potato. A probe derived from the tomato Verticillium resistance gene ( Ve1) identified homologous sequences ( StVe1) in potato, which in a diploid population map to chromosome 9, in a position analogous to that of the tomato resistance gene. When a molecular marker closely linked (1.5 cM) to the homologues was used as a candidate gene marker on 137 tetraploid potato genotypes (mostly North American cultivars), the association between the marker and resistance was confirmed ( P<0.001). The amount of phenotypic variation in resistance explained by the allele of the STM1051 marker was greater than 10% and 25% in two subpopulations that were inferred from coancestry data matrix. Cloning of homologues from the highly resistant potato cv. Reddale indicates that the resistance quantitative trait locus (QTL) comprises at least an eleven-member family, encoding plant-specific leucine-rich repeat proteins highly similar to the tomato Ve genes. The sequence analysis shows that all homologues are uninterrupted open reading frames and thus represent putative functional resistance genes. This is the first time that the linkage disequilibrium method has been used to find an association between a resistance gene and a candidate gene marker in tetraploid potato. We have shown that it is possible to map QTL directly on already available potato cultivars, without developing a new mapping population.

摘要

我们利用连锁不平衡作图方法,检测四倍体马铃薯中一个候选基因标记与对大丽轮枝菌抗性之间的关联。一个源自番茄抗黄萎病基因(Ve1)的探针在马铃薯中鉴定出同源序列(StVe1),在二倍体群体中,该序列定位于9号染色体,其位置与番茄抗性基因的位置类似。当将一个与该同源物紧密连锁(1.5厘摩)的分子标记作为候选基因标记,用于137个四倍体马铃薯基因型(大多为北美品种)时,该标记与抗性之间的关联得到了证实(P<0.001)。根据共同祖先数据矩阵推断的两个亚群中,STM1051标记的等位基因所解释的抗性表型变异量分别大于10%和25%。从高抗马铃薯品种Reddale中克隆同源物表明,抗性数量性状位点(QTL)至少包含一个由11个成员组成的家族,编码与番茄Ve基因高度相似的植物特异性富含亮氨酸重复蛋白。序列分析表明,所有同源物均为不间断的开放阅读框,因此代表推定的功能性抗性基因。这是首次利用连锁不平衡方法在四倍体马铃薯中发现抗性基因与候选基因标记之间的关联。我们已经表明,无需构建新的作图群体,就有可能直接在已有的马铃薯品种上定位QTL。

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