Vijay Nagarjun
Computational Evolutionary Genomics Lab, Department of Biological Sciences, Indian Institute of Science Education and Research, Bhopal, Madhya Pradesh, India.
PeerJ. 2020 Sep 29;8:e10085. doi: 10.7717/peerj.10085. eCollection 2020.
The genomic sequences of centromeres, as well as the set of proteins that recognize and interact with centromeres, are known to quickly diverge between lineages potentially contributing to post-zygotic reproductive isolation. However, the actual sequence of events and processes involved in the divergence of the kinetochore machinery is not known. The patterns of gene loss that occur during evolution concomitant with phenotypic changes have been used to understand the timing and order of molecular changes.
I screened the high-quality genomes of twenty budding yeast species for the presence of well-studied kinetochore genes. Based on the conserved gene order and complete genome assemblies, I identified gene loss events. Subsequently, I searched the intergenic regions to identify any un-annotated genes or gene remnants to obtain additional evidence of gene loss.
My analysis identified the loss of four genes (NKP1, NKP2, CENPL/IML3 and CENPN/CHL4) of the inner kinetochore constitutive centromere-associated network (CCAN/also known as CTF19 complex in yeast) in both the Naumovozyma species for which genome assemblies are available. Surprisingly, this collective loss of four genes of the CCAN/CTF19 complex coincides with the emergence of unconventional centromeres in and . My study suggests a tentative link between the emergence of unconventional point centromeres and the turnover of kinetochore genes in budding yeast.
已知着丝粒的基因组序列以及识别着丝粒并与之相互作用的蛋白质组在不同谱系之间会迅速分化,这可能导致合子后生殖隔离。然而,着丝粒机制分化所涉及的实际事件和过程顺序尚不清楚。进化过程中伴随表型变化发生的基因丢失模式已被用于理解分子变化的时间和顺序。
我在20种芽殖酵母的高质量基因组中筛选了已充分研究的着丝粒基因的存在情况。基于保守的基因顺序和完整的基因组组装,我确定了基因丢失事件。随后,我搜索基因间区域以识别任何未注释的基因或基因残余物,以获得基因丢失的额外证据。
我的分析确定了在两种可获得基因组组装的瑙莫夫酵母属物种中,内着丝粒组成型着丝粒相关网络(CCAN,在酵母中也称为CTF19复合体)的四个基因(NKP1、NKP2、CENPL/IML3和CENPN/CHL4)丢失。令人惊讶的是,CCAN/CTF19复合体这四个基因的共同丢失与[物种名称1]和[物种名称2]中非常规着丝粒的出现相吻合。我的研究表明,在芽殖酵母中,非常规点着丝粒的出现与着丝粒基因的更替之间存在一种初步联系。