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Evidence for Centromere Drive in the Holocentric Chromosomes of Caenorhabditis

机译:秀丽隐杆线虫的全中心染色体中的着丝粒驱动的证据。

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摘要

In monocentric organisms with asymmetric meiosis, the kinetochore proteins, such as CENH3 and CENP-C, evolve adaptively to counterbalance the deleterious effects of centromere drive, which is caused by the expansion of centromeric satellite repeats. The selection regimes that act on CENH3 and CENP-C genes have not been analyzed in organisms with holocentric chromosomes, although holocentrism is speculated to have evolved to suppress centromere drive. We tested both CENH3 and CENP-C for positive selection in several species of the holocentric genus Caenorhabditis using the maximum likelihood approach and sliding-window analysis. Although CENP-C did not show any signs of positive selection, positive selection has been detected in the case of CENH3. These results support the hypothesis that centromere drive occurs in Nematoda, at least in the telokinetic meiosis of Caenorhabditis.
机译:在具有不对称减数分裂的单中心生物中,线粒体蛋白(例如CENH3和CENP-C)会自适应进化,以抵消着丝粒驱动的有害作用,这种着丝粒驱动是着丝粒卫星重复序列的扩展所致。尽管据推测全中心进化已发展为抑制着丝粒驱动,但尚未在具有全中心染色体的生物中分析作用于CENH3和CENP-C基因的选择机制。我们使用最大似然方法和滑动窗口分析测试了CENH3和CENP-C在几个整体性中心型秀丽隐杆线虫中的阳性选择。尽管CENP-C没有显示出任何阳性选择的迹象,但在CENH3的情况下仍检测到阳性选择。这些结果支持以下假设:着丝粒驱动发生在线虫中,至少在Caenorhabditis的运动型减数分裂中。

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