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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Molecular evolution of the meiotic recombination pathway in mammals
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Molecular evolution of the meiotic recombination pathway in mammals

机译:哺乳动物中减数分裂重组途径的分子演变

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摘要

Meiotic recombination shapes evolution and helps to ensure proper chromosome segregation in most species that reproduce sexually. Recombination itself evolves, with species showing considerable divergence in the rate of crossing-over. However, the genetic basis of this divergence is poorly understood. Recombination events are produced via a complicated, but increasingly welldescribed, cellular pathway. We apply a phylogenetic comparative approach to a carefully selected panel of genes involved in the processes leading to crossovers-spanning double-strand break formation, strand invasion, the crossover/non-crossover decision, and resolution-to reconstruct the evolution of the recombination pathway in eutherian mammals and identify components of the pathway likely to contribute to divergence between species. Eleven recombination genes, predominantly involved in the stabilization of homologous pairing and the crossover/non-crossover decision, show evidence of rapid evolution and positive selection across mammals. We highlight TEX11 and associated genes involved in the synaptonemal complex and the early stages of the crossover/non-crossover decision as candidates for the evolution of recombination rate. Evolutionary comparisons to MLH1 count, a surrogate for the number of crossovers, reveal a positive correlation between genome-wide recombination rate and the rate of evolution at TEX11 across the mammalian phylogeny. Our results illustrate the power of viewing the evolution of recombination from a pathway perspective.
机译:减数分裂重组形状的进化并有助于确保在大多数物种中进行性质的适当染色体隔离。重组本身随着横穿速度的物种而发展,物种表现出相当大的分歧。然而,这种分歧的遗传基础知之甚少。重组事件通过复杂但越来越较好的细胞途径产生。我们将系统发育比较方法应用于涉及的过程中仔细选定的基因,其过程导致交叉跨越双链断裂形成,链侵入,交叉/非交叉决定和分辨率 - 重建重组途径的演变在Eutherian哺乳动物和鉴定可能有助于物种之间的分歧的途径的组分。 11种重组基因主要涉及同源配对的稳定和交叉/非交叉决策,显示出哺乳动物快速进化和阳性选择的证据。我们突出显示TEX11和相关基因,涉及Synaponemal综合体的交叉/非交叉决定的早期阶段作为重组率的演变的候选者。对MLH1计数的进化比较,一个替代的交叉数量,揭示了基因组 - 宽重组率与TEX11对哺乳动物系统发生的速度之间的正相关性。我们的结果说明了从途径观察重组演变的力量。

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