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Evolutionary rates of mammalian telomere-stability genes correlate with karyotype features and female germline expression

机译:哺乳动物端粒稳定性基因的进化速率与核型特征和雌性种系表达相关

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摘要

Telomeres protect the ends of eukaryotic chromosomes and are essential for cell viability. In mammals, telomere dynamics vary with life history traits (e.g. body mass and longevity), suggesting differential selection depending on physiological characteristics. Telomeres, in analogy to centromeric regions, also represent candidate meiotic drivers and subtelomeric DNA evolves rapidly. We analyzed the evolutionary history of mammalian genes implicated in telomere homeostasis (TEL genes). We detected widespread positive selection and we tested two alternative hypotheses: (i) fast evolution is driven by changes in life history traits; (ii) a conflict with selfish DNA elements at the female meiosis represents the underlying selective pressure. By accounting for the phylogenetic relationships among mammalian species, we show that life history traits do not contribute to shape diversity of TEL genes. Conversely, the evolutionary rate of TEL genes correlates with expression levels during meiosis and episodes of positive selection across mammalian species are associated with karyotype features (number of chromosome arms). We thus propose a telomere drive hypothesis, whereby (sub)telomeres and telomere-binding proteins are engaged in an intra-genomic conflict similar to the one described for centromeres.
机译:端粒保护真核染色体的末端,对于细胞活力至关重要。在哺乳动物中,端粒动力学随生活史特征(例如体重和寿命)而变化,这表明取决于生理特征的差异选择。类似于着丝粒区域,端粒也代表候选减数分裂驱动器,并且亚端粒DNA迅速进化。我们分析了涉及端粒稳态(TEL基因)的哺乳动物基因的进化历史。我们发现了广泛的肯定选择,并检验了两个备选假设:(i)快速进化是由生活史特征的变化驱动的; (ii)在雌性减数分裂中与自私的DNA元素发生冲突代表了潜在的选择压力。通过考虑哺乳动物物种之间的系统发育关系,我们表明生活史特征不有助于TEL基因的形状多样性。相反,TEL基因的进化速率与减数分裂期间的表达水平相关,并且跨哺乳动物物种的阳性选择发作与核型特征(染色体臂数)相关。因此,我们提出了端粒驱动假说,据此,(亚)端粒和端粒结合蛋白参与了基因组内的冲突,类似于针对着丝粒的描述。

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