Actin evolution in ciliates (Protist, Alveolata) is characterized by high diversity and three duplication events.

生物 原生生物 系统发育树 进化生物学 系统发育学 克莱德 动物 单系 纤毛的 生态学 谱系(遗传) 分子系统发育学 分子进化 分子钟 基因组 微孢子虫 18S核糖体RNA
作者
Zhenzhen Yi,Lijuan Huang,Ran Yang,Xiaofeng Lin,Weibo Song
出处
期刊:Molecular Phylogenetics and Evolution [Elsevier BV]
卷期号:96 (96): 45-54 被引量:12
标识
DOI:10.1016/j.ympev.2015.11.024
摘要

Ciliates possess two distinct nuclear genomes and unique genomic features, including highly fragmented chromosomes and extensive chromosomal rearrangements. Recent transcriptomic surveys have revealed that ciliates have several multi-copy genes providing an ideal template to study gene family evolution. Nonetheless, this process remains little studied in ciliated protozoa and consequently, the evolutionary patterns that govern it are not well understood. In this study, we focused on obtaining fine-scale information relative to ciliate species divergence for the first time. A total of 230 actin gene sequences were derived from this study, among which 217 were from four closely related Pseudokeronopsis species and 13 from other hypotrichous ciliates. Our investigation shows that: (1) At least three duplication events occurred in ciliates: diversification of three actin genes (Actin I, II, III) happened after the divergence of ciliate classes but before that of subclasses. And several recent and genus-specific duplications were followed within Actin I (Sterkiella, Oxytricha, Uroleptus, etc.), Actin II (Sterkiella), respectively. (2) Within the genus Pseudokeronopsis, Actin I gene duplication events happened after P. carnea and P. erythrina diverged. In contrast, in the morphologically similar species P. flava and P. rubra, the duplication event preceded diversification of the two species. The Actin II gene duplication events preceded divergence of the genus Pseudokeronopsis. (3) Phylogenetic analyses revealed that actin is suitable for resolving ciliate classes, but may not be used to infer lower taxon relationships.
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