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Phylogenomic analyses support the bifurcation of ciliates into two major clades that differ in properties of nuclear division

机译:系统进化分析支持纤毛虫分叉成两个主要分支,它们在核分裂特性上是不同的

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摘要

Ciliates are a diverse assemblage of eukaryotes that have been the source of many discoveries including self-splicing RNAs, telomeres and trans-splicing. While analyses of ciliate morphology have given rise to robust hypotheses on relatively shallow level relationships, the deeper evolutionary history of ciliates is largely unknown. This is in part because studies to date have focused on only a single locus, small subunit ribosomal DNA (SSU-rDNA). In the present study, we use a taxon-rich strategy based on multiple loci from GenBank and recently completed transcriptomes to assess deep phylogenetic relationships among ciliates. Our phylogenomic data set includes up to 537 taxa, all of which have been sampled for SSU-rDNA and a subset of which have LSU-rDNA and up to 7 protein-coding sequences. Analyses of these data support the bifurcation of ciliates as suggested by SSU-rDNA, with one major clade defined by having somatic macronuclei that divide with intranuclear microtubules (Intramacronucleata) and the other clade containing lineages that either divide their macronuclei with microtubules external to the macronucleus or are unable to divide their macronuclei (Postciliodesmatophora). These multigene phylogenies provide a robust framework for interpreting the evolution of innovations across the ciliate tree of life.
机译:纤毛虫是真核生物的多种多样的组合,已成为许多发现的来源,包括自剪接RNA,端粒和反剪接。尽管纤毛形态的分析引起了相对较浅层次关系的可靠假设,但纤毛的更深演化历史在很大程度上仍是未知的。部分原因是因为迄今为止的研究仅集中于单个基因座,小的亚基核糖体DNA(SSU-rDNA)。在本研究中,我们基于GenBank的多个基因座和最近完成的转录组,使用丰富的分类单元策略来评估纤毛虫之间的深层系统发育关系。我们的系统生物学数据集包括多达537个分类单元,所有这些分类单元均已采样用于SSU-rDNA,其中一个子集具有LSU-rDNA和多达7个蛋白质编码序列。这些数据的分析支持SSU-rDNA建议的纤毛分支,其中一个主要进化枝定义为具有体细胞大核,并被核内微管(Intramacronucleata)分开,另一个进化枝包含了沿其大核与大核外的微管分裂的谱系。或无法分裂其大核(Postciliodesmatophora)。这些多基因系统发育提供了一个强大的框架,可以解释整个纤毛虫生命树中的创新进化。

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