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利用微卫星对玉米基因组的遗传多样性进行分析。

An analysis of genetic diversity across the maize genome using microsatellites.

作者信息

Vigouroux Yves, Mitchell Sharon, Matsuoka Yoshihiro, Hamblin Martha, Kresovich Stephen, Smith J Stephen C, Jaqueth Jennifer, Smith Oscar S, Doebley John

机构信息

Department of Genetics, University of Wisconsin, Madison, 53706, USA.

出版信息

Genetics. 2005 Mar;169(3):1617-30. doi: 10.1534/genetics.104.032086. Epub 2005 Jan 16.

Abstract

How domestication bottlenecks and artificial selection shaped the amount and distribution of genetic variation in the genomes of modern crops is poorly understood. We analyzed diversity at 462 simple sequence repeats (SSRs) or microsatellites spread throughout the maize genome and compared the diversity observed at these SSRs in maize to that observed in its wild progenitor, teosinte. The results reveal a modest genome-wide deficit of diversity in maize relative to teosinte. The relative deficit of diversity is less for SSRs with dinucleotide repeat motifs than for SSRs with repeat motifs of more than two nucleotides, suggesting that the former with their higher mutation rate have partially recovered from the domestication bottleneck. We analyzed the relationship between SSR diversity and proximity to QTL for domestication traits and observed no relationship between these factors. However, we did observe a weak, although significant, spatial correlation for diversity statistics among SSRs within 2 cM of one another, suggesting that SSR diversity is weakly patterned across the genome. Twenty-four of 462 SSRs (5%) show some evidence of positive selection in maize under multiple tests. Overall, the pattern of genetic diversity at maize SSRs can be explained largely by a bottleneck effect with a smaller effect from selection.

摘要

驯化瓶颈和人工选择如何塑造现代作物基因组中遗传变异的数量和分布,目前还知之甚少。我们分析了分布于整个玉米基因组中的462个简单序列重复(SSR)或微卫星的多样性,并将在这些SSR位点观察到的玉米多样性与其野生祖先大刍草的多样性进行了比较。结果显示,相对于大刍草,玉米在全基因组范围内存在适度的多样性不足。与具有两个以上核苷酸重复基序的SSR相比,具有二核苷酸重复基序的SSR的相对多样性不足较小,这表明前者因其较高的突变率已从驯化瓶颈中部分恢复。我们分析了SSR多样性与驯化性状QTL的接近程度之间的关系,未观察到这些因素之间存在关联。然而,我们确实观察到,在彼此相距2厘摩以内的SSR之间,多样性统计存在微弱但显著的空间相关性,这表明SSR多样性在全基因组中呈弱模式分布。在多次测试中,462个SSR中有24个(5%)显示出在玉米中受到正选择的一些证据。总体而言,玉米SSR的遗传多样性模式在很大程度上可以用瓶颈效应来解释,选择的影响较小。

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