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首页> 外文期刊>Insect Molecular Biology >Long microsatellites and unusually high levels of genetic diversity in the Orthoptera.
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Long microsatellites and unusually high levels of genetic diversity in the Orthoptera.

机译:直翅目中的长微卫星和异常高水平的遗传多样性。

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Much remains to be learned about the mutational processes governing the evolution of microsatellite repeat regions and the associated levels of genetic diversity observed at microsatellite markers across populations or species. An extensive survey of microsatellite variation in 210 insect species from six major orders revealed that within Orthopterans, which are characterized by giant genomes, levels of genetic diversity were ~20% higher and microsatellite repeat arrays were longer than in any other group. Because of the mutation dependence on repeat length, this result suggests a higher microsatellite loci mutation rate in the Orthoptera. We deem it plausible that differences among insect orders, either in mismatch repair systems or in abundance of transposable element-derived microsatellites, can shape the size distribution of both genomes and microsatellite repeat regions. Our findings emphasise that observed levels of genetic diversity can greatly vary across species (orders at least) because of molecular differences in the mechanisms that determine microsatellite size, and are therefore critical to conservation and population genetics studies, where microsatellite repeat variability is primarily interpreted in terms of population demography and history.
机译:关于控制微卫星重复区域演变的突变过程以及在整个种群或物种的微卫星标志物上观察到的相关遗传多样性水平,仍有许多知识要学习。广泛调查了六个主要订单中的210种昆虫的微卫星变异,结果表明,在以巨型基因组为特征的直翅目动物中,遗传多样性水平高出约20%,而微卫星重复阵列的长度比任何其他组都长。由于突变对重复长度的依赖性,因此该结果表明直翅目中较高的微卫星基因座突变率。我们认为,在昆虫失配修复系统中或在转座因子衍生的微卫星数量丰富时,昆虫顺序之间的差异可能会影响基因组和微卫星重复区域的大小分布。我们的发现强调指出,由于决定微卫星大小的机制中的分子差异,所观察到的遗传多样性水平在物种间(至少是顺序)可能存在很大差异,因此对于保护和种群遗传学研究至关重要,在这些研究中,微卫星重复变异性主要被解释为人口人口统计和历史数据。

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