Dynamics and timing of diversification events of ciliated eukaryotes from a large phylogenomic perspective

生物 进化生物学 多元化(营销策略) 透视图(图形) 进化动力学 系统发育学 系统基因组学 动力学(音乐) 遗传学 计算生物学 克莱德 基因 人口 营销 人工智能 人口学 业务 社会学 物理 计算机科学 声学
作者
Chuanqi Jiang,Siyu Gu,Tingting Pan,Xueyan Wang,Weiwei Qin,Guangying Wang,Xinxin Gao,Jing Zhang,Kai Chen,Alan Warren,Jie Xiong,Wei Miao
出处
期刊:Molecular Phylogenetics and Evolution [Elsevier BV]
卷期号:: 108110-108110 被引量:1
标识
DOI:10.1016/j.ympev.2024.108110
摘要

Ciliophora, an exceptionally diverse lineage of unicellular eukaryotes, exhibits a remarkable range of species richness across classes in the ciliate Tree of Life. In this study, we have acquired transcriptome and genome data from 40 representative species in seven ciliate classes. Utilizing 247 genes and 105 taxa, we devised a comprehensive phylogenomic tree for Ciliophora, encompassing over 60 % of orders and constituting the most extensive dataset of ciliate species to date. We established a robust phylogenetic framework that encompasses ambiguous taxa and the major classes within the phylum. Our findings support the monophyly of each of two subphyla (Postciliodesmatophora and Intramacronucleata), along with three subclades (Protocruzia, CONTHREEP, and SAPML) nested within Intramacronucleata, and elucidate evolutionary positions among the major classes within the phylum. Drawing on the robust ciliate Tree of Life and three constraints, we estimated the radiation of Ciliophora around ca. 1175 Ma during the middle of the Proterozoic Eon, and most of the ciliate classes diverged from their sister lineage during the latter half of this period. Additionally, based on the time-calibrated tree and species richness pattern, we investigated net diversification rates of Ciliophora and its classes. The global net diversification rate for Ciliophora was estimated at 0.004979 species/Ma. Heterogeneity in net diversification rates was evident at the class level, with faster rates observed in Oligohymenophorea and Spirotrichea than other classes within the subclades CONTHREEP and SAPML, respectively. Notably, our analysis suggests that variations in net diversification rates, rather than clade ages, appear to contribute to the differences in species richness in Ciliophora at the class level.
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