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首页> 外文期刊>Molecular ecology >Chromosomes tell half of the story: The correlation between karyotype rearrangements and genetic diversity in sedges, a group with holocentric chromosomes
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Chromosomes tell half of the story: The correlation between karyotype rearrangements and genetic diversity in sedges, a group with holocentric chromosomes

机译:染色体讲了一半的故事:莎草的染色体组重排与遗传多样性之间的相关性,莎草是一个具有整体中心染色体的群体

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Chromosome rearrangements may affect the rate and patterns of gene flow within species, through reduced fitness of structural heterozygotes or by reducing recombination rates in rearranged areas of the genome. While the effects of chromosome rearrangements on gene flow have been studied in a wide range of organisms with monocentric chromosomes, the effects of rearrangements in holocentric chromosomes-chromosomes in which centromeric activity is distributed along the length of the chromosome-have not. We collected chromosome number and molecular genetic data in Carex scoparia, an eastern North American plant species with holocentric chromosomes and highly variable karyotype (2n = 56-70). There are no deep genetic breaks within C. scoparia that would suggest cryptic species differentiation. However, genetic distance between individuals is positively correlated with chromosome number difference and geographic distance. A positive correlation is also found between chromosome number and genetic distance in the western North American C. pachystachya (2n = 74-81). These findings suggest that geographic distance and the number of karyotype rearrangements separating populations affect the rate of gene flow between those populations. This is the first study to quantify the effects of holocentric chromosome rearrangements on the partitioning of intraspecific genetic variance.
机译:染色体重排可通过降低结构杂合子的适应性或降低基因组重排区域的重组率来影响物种内基因流动的速率和模式。尽管已经在具有单中心染色体的多种生物中研究了染色体重排对基因流的影响,但在中心粒活性沿染色体长度分布的全中心染色体-染色体中重排的影响却没有。我们收集了北美洲东部具有全中心染色体和高度可变核型(2n = 56-70)的植物种Carex scoparia的染色体数和分子遗传数据。 C. scoparia内没有深的遗传断裂表明隐性物种分化。然而,个体之间的遗传距离与染色体数目差异和地理距离呈正相关。在北美西部的C. pachystachya(2n = 74-81)中,染色体数与遗传距离之间也存在正相关。这些发现表明,地理距离和分隔种群的核型重排数目影响了这些种群之间的基因流动速率。这是第一项量化全中心染色体重排对种内遗传变异分配的影响的研究。

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