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一点一点向片体虫的多样性迈进:新属皮德片体虫属(纤毛门:动基片目)的描述。

Bit by bit toward the diversity of metopids: Description of the genus Pidimetopus n. gen. (Ciliophora: Armophorea).

机构信息

Department of Zoology, Faculty of Science, Charles University, Prague, Czech Republic.

出版信息

J Eukaryot Microbiol. 2024 Jul-Aug;71(4):e13034. doi: 10.1111/jeu.13034. Epub 2024 Jun 1.

DOI:10.1111/jeu.13034
PMID:38822648
Abstract

While metopids (Armophorea: Metopida) represent the most species-rich group of free-living anaerobic ciliates thriving in hypoxic environments, our understanding of their true diversity remains incomplete. Most metopid species are still characterized only morphologically. Particularly, the so-called IAC clade (named in the past after some of the taxa included, Idiometopus, Atopospira, and Clevelandellida), comprising free-living members as well as the endosymbiotic ones (order Clevelandellida), is in serious need of revision. In our study, we establish a new free-living genus in the IAC clade, Pidimetopus n. gen., with descriptions of two new species, P. nanus n. sp., and P. permonicus n. sp., using up-to-date molecular and morphologic methods. The genus is characterized by small cells (up to 75 μm long), not more than 10 adoral membranelles and eight somatic kineties, and usually, four long caudal cilia that can stiffen. In addition to morphologic and molecular characterizations, we also conducted a statistical morphotype analysis of the polymorphic species P. nanus n. sp. We discuss the relevance of the earlier morphologically described species Metopus minor as a putative collective taxon for several small metopids less than 50 μm long.

摘要

虽然膜口目(Armophorea: Metopida)是在缺氧环境中大量存在的自由生活的厌氧纤毛虫中物种最丰富的类群,但我们对其真正多样性的理解仍然不完整。大多数膜口目物种仍然仅通过形态学特征来描述。特别是所谓的 IAC 进化枝(过去根据包括 Idiometopus、Atopospira 和 Clevelandellida 在内的一些分类单元命名),包含自由生活的成员和内共生成员(Clevelandellida 目),急需修订。在我们的研究中,我们使用最新的分子和形态学方法,在 IAC 进化枝中建立了一个新的自由生活属,Pidimetopus n. gen.,并描述了两个新物种,P. nanus n. sp. 和 P. permonicus n. sp.。该属的特征是细胞较小(最长可达 75 μm),口前膜纤毛不超过 10 根,体纤毛 8 动干群,通常有 4 根可以变硬的长尾尾毛。除了形态学和分子特征外,我们还对多态物种 P. nanus n. sp. 进行了统计形态型分析。我们讨论了早期形态学描述的物种 Metopus minor 作为几个小于 50 μm 的小型膜口目的假定集合分类单元的相关性。

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