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着丝粒组蛋白在根结线虫全着丝粒中保守存在,并与串联重复序列相关,这些串联重复序列共享一个保守的 19 碱基盒。

The Centromere Histone Is Conserved and Associated with Tandem Repeats Sharing a Conserved 19-bp Box in the Holocentromere of Meloidogyne Nematodes.

机构信息

Ruđer Bošković Institute, Zagreb, Croatia.

Agricultural Institute Slovenia, Ljubljana, Slovenia.

出版信息

Mol Biol Evol. 2021 May 4;38(5):1943-1965. doi: 10.1093/molbev/msaa336.

Abstract

Although centromeres have conserved function, centromere-specific histone H3 (CenH3) and centromeric DNA evolve rapidly. The centromere drive model explains this phenomenon as a consequence of the conflict between fast-evolving DNA and CenH3, suggesting asymmetry in female meiosis as a crucial factor. We characterized evolution of the CenH3 protein in three closely related, polyploid mitotic parthenogenetic species of the Meloidogyne incognita group, and in the distantly related meiotic parthenogen Meloidogyne hapla. We identified duplication of the CenH3 gene in a putative sexual ancestral Meloidogyne. We found that one CenH3 (αCenH3) remained conserved in all extant species, including in distant Meloidogyne hapla, whereas the other evolved rapidly and under positive selection into four different CenH3 variants. This pattern of CenH3 evolution in Meloidogyne species suggests the subspecialization of CenH3s in ancestral sexual species. Immunofluorescence performed on mitotic Meloidogyne incognita revealed a dominant role of αCenH3 on its centromere, whereas the other CenH3s have lost their function in mitosis. The observed αCenH3 chromosome distribution disclosed cluster-like centromeric organization. The ChIP-Seq analysis revealed that in M. incognita αCenH3-associated DNA dominantly comprises tandem repeats, composed of divergent monomers which share a completely conserved 19-bp long box. Conserved αCenH3-associated DNA is also confirmed in the related mitotic Meloidogyne incognita group species suggesting preservation of both centromere protein and DNA constituents. We hypothesize that the absence of centromere drive in mitosis might allow for CenH3 and its associated DNA to achieve an equilibrium in which they can persist for long periods of time.

摘要

尽管着丝粒具有保守的功能,但着丝粒特异性组蛋白 H3(CenH3)和着丝粒 DNA 却迅速进化。着丝粒驱动模型将这种现象解释为快速进化的 DNA 和 CenH3 之间冲突的结果,这表明雌性减数分裂的不对称性是一个关键因素。我们描述了三个密切相关的、多倍体有丝分裂孤雌生殖的根结线虫属物种以及远亲减数分裂孤雌生殖的南方根结线虫的 CenH3 蛋白的进化。我们在一个假定的有性祖先根结线虫中鉴定了 CenH3 基因的重复。我们发现,一个 CenH3(αCenH3)在所有现存物种中保持保守,包括在遥远的南方根结线虫中,而另一个 CenH3 则迅速进化,并在正选择下进化为四个不同的 CenH3 变体。根结线虫属物种 CenH3 进化的这种模式表明 CenH3 在祖先有性物种中的专业化。对有丝分裂根结线虫的免疫荧光显示,αCenH3 在其着丝粒上占主导地位,而其他 CenH3 已经失去了它们在有丝分裂中的功能。观察到的αCenH3 染色体分布揭示了类似簇状的着丝粒组织。ChIP-Seq 分析表明,在根结线虫中,αCenH3 相关的 DNA 主要由串联重复组成,这些重复由具有完全保守的 19 个碱基长框的发散单体组成。在相关的有丝分裂根结线虫属物种中也证实了保守的αCenH3 相关 DNA 的存在,这表明着丝粒蛋白和 DNA 成分都得到了保存。我们假设在有丝分裂中不存在着丝粒驱动可能允许 CenH3 及其相关 DNA 达到一种平衡状态,在这种平衡状态下,它们可以长时间存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7ad/8097292/25d16962ea72/msaa336f1.jpg

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