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Chromosomal speciation and molecular divergence - Accelerated evolution in rearranged chromosomes

机译:染色体形态和分子发散-重排染色体中的加速进化

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Humans and their closest evolutionary relatives, the chimpanzees, differ in similar to1.24% of their genomic DNA sequences. The fraction of these changes accumulated during the speciation processes that have separated the two lineages may be of special relevance in understanding the basis of their differences. We analyzed human and chimpanzee sequence data to search for the patterns of divergence and polymorphism predicted by a theoretical model of speciation. According to the model, positively selected changes should accumulate in chromosomes that present. fixed structural differences, such as inversions, between the two species. Protein evolution was more than 2.2 times faster in chromosomes that had undergone structural rearrangements compared with colinear chromosomes. Also, nucleotide variability is slightly lower in rearranged chromosomes. These patterns of divergence and polymorphism may be, at least in part, the molecular footprint of speciation events in the human and chimpanzee lineages. [References: 39]
机译:人类及其最接近的进化亲戚黑猩猩的基因组DNA序列差异约为1.24%。在物种形成过程中将两个血统分开的累积的这些变化的一部分,在理解它们差异的基础上可能特别相关。我们分析了人类和黑猩猩的序列数据,以寻找物种形成理论模型预测的趋异和多态性模式。根据该模型,积极选择的变化应在存在的染色体中积累。固定了两个物种之间的结构差异,例如反转。与共线染色体相比,经历结构重排的染色体的蛋白质进化速度快2.2倍以上。同样,在重排的染色体中核苷酸变异性略低。这些发散和多态性的模式可能至少部分是人类和黑猩猩谱系中物种形成事件的分子足迹。 [参考:39]

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