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动质体纲内一个18S rRNA基因序列分支的细胞特征:新属Actuariola gen. nov.(新波豆目)及模式种弗拉姆瓦伦西亚Actuariola framvarensis sp. nov.的描述

Cellular identity of an 18S rRNA gene sequence clade within the class Kinetoplastea: the novel genus Actuariola gen. nov. (Neobodonida) with description of the type species Actuariola framvarensis sp. nov.

作者信息

Stoeck Thorsten, Schwarz M V Julian, Boenigk Jens, Schweikert Michael, von der Heyden Sophie, Behnke Anke

机构信息

Department of Biology, TU Kaiserslautern, Erwin-Schrödinger Str. 14, D-67663 Kaiserslautern, Germany.

Austrian Academy of Sciences, Institute for Limnology, Mondseestr. 9, A-5310 Mondsee, Austria.

出版信息

Int J Syst Evol Microbiol. 2005 Nov;55(Pt 6):2623-2635. doi: 10.1099/ijs.0.63769-0.

Abstract

Environmental molecular surveys of microbial diversity have uncovered a vast number of novel taxonomic units in the eukaryotic tree of life that are exclusively known by their small-subunit (SSU) rRNA gene signatures. In this study, we reveal the cellular and taxonomic identity of a novel eukaryote SSU rRNA gene sequence clade within the Kinetoplastea. Kinetoplastea are ubiquitously distributed flagellated protists of high ecological and medical importance. We isolated an organism from the oxic-anoxic interface of the anoxic Framvaren Fjord (Norway), which branches within an unidentified kinetoplastean sequence clade. Ultrastructural studies revealed a typical cellular organization that characterized the flagellated isolate as a member of the order Neobodonida Vickerman 2004, which contains five genera. The isolate differed in several distinctive characters from Dimastigella, Cruzella, Rhynchobodo and Rhynchomonas. The arrangement of the microtubular rod that supports the apical cytostome and the cytopharynx differed from the diagnosis of the fifth described genus (Neobodo Vickerman 2004) within the order Neobodonida. On the basis of both molecular and microscopical data, a novel genus within the order Neobodonida, Actuariola gen. nov., is proposed. Here, we characterize its type species, Actuariola framvarensis sp. nov., and provide an in situ tool to access the organism in nature and study its ecology.

摘要

对微生物多样性的环境分子调查揭示了真核生物生命之树中大量新的分类单元,这些分类单元仅通过其小亚基(SSU)rRNA基因特征为人所知。在本研究中,我们揭示了动质体目内一个新的真核生物SSU rRNA基因序列分支的细胞和分类身份。动质体目是分布广泛的鞭毛虫原生生物,具有高度的生态和医学重要性。我们从挪威无氧的弗拉姆瓦伦峡湾的有氧-无氧界面分离出一种生物,它在一个未鉴定的动质体序列分支内分支。超微结构研究揭示了一种典型的细胞组织,该组织将这种鞭毛虫分离物鉴定为2004年维克曼新波多虫目的成员,该目包含五个属。该分离物在几个显著特征上与双鞭毛虫属、克鲁泽虫属、吻波多虫属和吻滴虫属不同。支撑顶端胞口和胞咽的微管杆的排列与新波多虫目内已描述的第五个属(2004年维克曼新波多虫属)的诊断不同。基于分子和显微镜数据,提出了新波多虫目内的一个新属,新船虫属。在此,我们描述了其模式种,弗拉姆瓦伦新船虫,并提供了一种在自然环境中获取该生物并研究其生态学的原位工具。

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