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新型盘藻类分类群的系统基因组学为眼虫树的主干提供了依据。

Phylogenomics of novel ploeotid taxa contribute to the backbone of the euglenid tree.

机构信息

Department of Botany, University of British Columbia, Vancouver, V6T 1Z4, British Columbia, Canada.

出版信息

J Eukaryot Microbiol. 2023 Jul-Aug;70(4):e12973. doi: 10.1111/jeu.12973. Epub 2023 Mar 30.

DOI:10.1111/jeu.12973
PMID:36912454
Abstract

Euglenids are a diverse group of flagellates that inhabit most environments and exhibit many different nutritional modes. The most prominent euglenids are phototrophs, but phagotrophs constitute the majority of phylogenetic diversity of euglenids. They are pivotal to our understanding of euglenid evolution, yet we are only starting to understand relationships amongst phagotrophs, with the backbone of the tree being most elusive. Ploeotids make up most of this backbone diversity-yet despite their morphological similarities, SSU rDNA analyses and multigene analyses show that they are non-monophyletic. As more ploeotid diversity is sampled, known taxa have coalesced into some subgroups (e.g. Alistosa), but the relationships amongst these are not always supported and some taxa remain unsampled for multigene phylogenetics. Here, we used light microscopy and single-cell transcriptomics to characterize five ploeotid euglenids and place them into a multigene phylogenetic framework. Our analyses place Decastava in Alistosa; while Hemiolia branches with Liburna, establishing the novel clade Karavia. We describe Hemiolia limna, a freshwater-dwelling species in an otherwise marine clade. Intriguingly, two undescribed ploeotids are found to occupy pivotal positions in the tree: Chelandium granulatum nov. gen. nov. sp. branches as sister to Olkasia, and Gaulosia striata nov. gen. nov. sp. remains an orphan taxon.

摘要

眼虫是一类多样化的鞭毛虫,栖息于大多数环境中,表现出许多不同的营养方式。最突出的眼虫是光合生物,但吞噬生物构成了眼虫系统发育多样性的大多数。它们对于我们理解眼虫的进化至关重要,但我们才刚刚开始了解吞噬生物之间的关系,而树的主干仍然难以捉摸。 Pleotids 构成了这一主干多样性的大部分——尽管它们在形态上相似,但 SSU rDNA 分析和多基因分析表明它们不是单系的。随着更多 Pleotids 多样性被采样,已知的分类群已经聚集成一些亚群(例如 Alistosa),但这些亚群之间的关系并不总是得到支持,一些分类群仍然没有进行多基因系统发育学采样。在这里,我们使用光学显微镜和单细胞转录组学来描述五种 Pleotids 眼虫,并将它们置于多基因系统发育框架中。我们的分析将 Decastava 归入 Alistosa ;而 Hemiolia 与 Liburna 分支,建立了新的类群 Karavia 。我们描述了淡水生的 Hemiolia limna ,它属于一个原本是海洋的类群。有趣的是,两个未描述的 Pleotids 在树中占据了关键位置: Chelandium granulatum nov. gen. nov. sp. 与 Olkasia 分支,而 Gaulosia striata nov. gen. nov. sp. 仍然是一个孤立的分类群。

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