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Frequent non-reciprocal exchange in microsatellite-containing-DNA-regions of vertebrates

机译:脊椎动物的含微卫星DNA区域的频繁非对等交换

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摘要

Microsatellites are DNA-fragments containing short repetitive motifs with 2-10 bp. They are highly variable in most species and distributed throughout the whole genome. It is broadly accepted that their high degree of variability is closely associated with mispairing of DNA-strands during the replication phase, termed slippage, although recombination is also observed. The aim of this study is to demonstrate evidence that non-reciprocal recombination processes changing the total genomic structure are common in microsatellites and flanking regions. We sequenced DNA fragments from birds in which microsatellites are located, and analyzed the structure of the microsatellites and their flanking regions. Additionally, other data and those from literature of three microsatellite regions of primates coding for the Ataxin-2, the Huntingtin and the TATA-box binding protein were analyzed. The structures of seven avian and three primate microsatellites support the hypothesis that non-reciprocal recombination is a common process that may also contribute considerably to the variation at microsatellite loci. We conclude that results of population genetic studies that are analyzed statistically with methods based on stepwise mutation models should be interpreted with caution if no detailed information on the allelic variation of microsatellites is available.
机译:微卫星是含有2-10 bp的短重复基序的DNA片段。它们在大多数物种中变化很大,并分布在整个基因组中。尽管也观察到重组,但它们的高度可变性与复制阶段DNA链的错配密切相关,被称为滑移,这一点已被广泛接受。这项研究的目的是证明证据表明,改变总基因组结构的不可逆重组过程在微卫星和侧翼区域很普遍。我们对微卫星所在鸟类的DNA片段进行了测序,并分析了微卫星的结构及其侧翼区域。此外,还分析了其他数据以及来自灵长类动物的三个微卫星区域的文献的编码Ataxin-2,Huntingtin和TATA-box结合蛋白的数据。七个禽类和三个灵长类动物微卫星的结构支持以下假设:不可逆的重组是一个常见过程,也可能对微卫星基因座的变异起重要作用。我们得出的结论是,如果没有关于微卫星等位基因变异的详细信息,则应谨慎解释使用基于逐步突变模型的方法进行统计分析的群体遗传研究结果。

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