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CenH3 evolution reflects meiotic symmetry as predicted by the centromere drive model

机译:CENH3 Evolution反映了由Centromere驱动模型预测的减数分裂对称性

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The centromere drive model explaining rapid evolution of eukaryotic centromeres predicts higher frequency of positive selection acting on centromeric histone H3 (CenH3) in clades with asymmetric meiosis compared to the clades with only symmetric meiosis. However, despite the impression one might get from the literature, this key prediction of the centromere drive model has not only never been confirmed, but it has never been tested, because all the previous studies dealt only with the presence or absence instead of the frequency of positive selection. To provide evidence for or against different frequencies of positively selected CenH3 in asymmetrics and symmetrics, we have inferred the selective pressures acting on CenH3 in seventeen eukaryotic clades, including plants, animals, fungi, ciliates and apicomplexa, using codon-substitution models, and compared the inferred frequencies between asymmetrics and symmetrics in a quantitative manner. We have found that CenH3 has been evolving adaptively much more frequently in clades with asymmetric meiosis compared with clades displaying only symmetric meiosis which confirms the prediction of centromere drive model. Our findings indicate that the evolution of asymmetric meiosis required CenH3 to evolve adaptively more often to counterbalance the negative consequences of centromere drive.
机译:解释真核焦粒子快速进化的Centromere驱动模型预测,与仅对称减数分裂的枝条相比,在不对称的分裂中的氯化物组蛋白H3(CENH3)上的阳性选择频率较高。但是,尽管印象是从文献中获得的,但Centromere驱动模型的这种关键预测不仅从未得到过确认,而且从未经过过测试,因为之前的所有研究只处理了存在或不存在而不是频率。积极选择。为了向不对称和对称的阳性选择的CENH3提供持续选择的频率,我们推断了在植物,动物,真菌,纤毛蛋白和ApiCoMplexa中推断出对CENH3的选择性压力,使用密码子替代模型和比较以定量方式在不对称和对称性之间的推断频率。我们发现,与仅显示对称减数分裂的枝条相比,CENH3在具有不对称减数分裂的曲线中的碎片方便地更频繁地发展,这证实了Centromere驱动模型的预测。我们的研究结果表明,不对称减数分裂的演变需要CENH3更频繁地演变以抵消Centromere驱动的负面后果。

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