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Absence of Positive Selection on Centromeric Histones in Tetrahymena Suggests Unsuppressed Centromere-Drive in Lineages Lacking Male Meiosis

机译:四面膜的着丝粒组蛋白缺乏正向选择提示缺乏雄性减数分裂的血统中不受抑制的着丝粒驱动。

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摘要

Centromere-drive is a process where centromeres compete for transmission through asymmetric "female" meiosis for inclusion into the oocyte. In symmetric "male" meiosis, all meiotic products form viable germ cells. Therefore, the primary incentive for centromere-drive, a potential transmission bias, is believed to be missing from male meiosis. In this article, we consider whether male meiosis also bears the primary cost of centromere-drive. Because different taxa carry out different combinations of meiotic programs (symmetric + asymmetric, symmetric only, asymmetric only), it is possible to consider the evolutionary consequences of centromere-drive in the context of these differing systems. Groups with both types of meiosis have large, rapidly evolving centromeric regions, and their centromeric histones (CenH3s) have been shown to evolve under positive selection, suggesting roles as suppressors of centromere-drive. In contrast, taxa with only symmetric male meiosis have shown no evidence of positive selection in their centromeric histones. In this article, we present the first evolutionary analysis of centromeric histones in ciliated protozoans, a group that only undergoes asymmetric "female" meiosis. We find no evidence of positive selection acting on CNA1, the CenH3 of Tetrahymena species. Cytological observations of a panel of Tetrahymena species are consistent with dynamic karyotype evolution in this lineage. Our findings suggest that defects in male meiosis, and not mitosis or female meiosis, are the primary selective force behind centromere-drive suppression. Our study raises the possibility that taxa like ciliates, with only female meiosis, may therefore undergo unsuppressed centromere drive.Electronic supplementary materialThe online version of this article (doi:10.1007/s00239-011-9449-0) contains supplementary material, which is available to authorized users.
机译:着丝粒驱动是其中着丝粒竞争通过不对称的“女性”减数分裂传播以包含在卵母细胞中的过程。在对称的“雄性”减数分裂中,所有减数分裂产物形成活的生殖细胞。因此,据信雄性减数分裂缺少对着丝粒驱动的主要诱因,即潜在的传播偏向。在本文中,我们考虑男性减数分裂是否也承担着着丝粒驱动的主要成本。由于不同的分类单元执行减数分裂程序的不同组合(对称+不对称,仅对称,仅不对称),因此有可能在这些不同系统的背景下考虑着丝粒驱动的进化结果。两种类型的减数分裂族群都有快速发展的着丝粒区域,其着丝粒组蛋白(CenH3s)已显示出在正选择下的进化,暗示着着丝粒驱动的抑制作用。相比之下,仅具有对称雄性减数分裂的类群在其着丝粒组蛋白中未显示出阳性选择的证据。在本文中,我们对纤毛原生动物中的着丝粒组蛋白进行了首次进化分析,纤毛原生动物仅经历不对称的“女性”减数分裂。我们发现没有证据表明正选择作用于四膜虫物种的CenH3 CNA1。一组四膜虫物种的细胞学观察与该谱系中动态核型进化一致。我们的发现表明,男性减数分裂中的缺陷,而不是有丝分裂或女性减数分裂,是着丝粒驱动抑制背后的主要选择力。我们的研究提出了这样的可能性,即只有女性减数分裂的纤毛类纤毛可能因此受到不受抑制的着丝粒驱动。电子补充材料本文的在线版本(doi:10.1007 / s00239-011-9449-0)包含补充材料给授权用户。

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