Suppr超能文献

解析变形虫:具壳有孔虫(肉足虫门:胶结壳目)的纠结进化阐明了趋同进化在原生生物系统发育中的重要性。

Deconstructing Difflugia: The tangled evolution of lobose testate amoebae shells (Amoebozoa: Arcellinida) illustrates the importance of convergent evolution in protist phylogeny.

机构信息

Real Jardín Botánico (RJB-CSIC), Plaza Murillo 2, 28014 Madrid, Spain.

Institute of Biodiversity and Ecosystem Research, Bulgarian Academy of Science, 1113 Sofia, Bulgaria.

出版信息

Mol Phylogenet Evol. 2022 Oct;175:107557. doi: 10.1016/j.ympev.2022.107557. Epub 2022 Jun 28.

Abstract

Protists, the micro-eukaryotes that are neither plants, animals nor fungi build up the greatest part of eukaryotic diversity on Earth. Yet, their evolutionary histories and patterns are still mostly ignored, and their complexity overlooked. Protists are often assumed to keep stable morphologies for long periods of time (morphological stasis). In this work, we test this paradigm taking Arcellinida testate amoebae as a model. We build a taxon-rich phylogeny based on two mitochondrial (COI and NADH) and one nuclear (SSU) gene, and reconstruct morphological evolution among clades. In addition, we prove the existence of mitochondrial mRNA editing for the COI gene. The trees show a lack of conservatism of shell outlines within the main clades, as well as a widespread occurrence of morphological convergences between far-related taxa. Our results refute, therefore, a widespread morphological stasis, which may be an artefact resulting from low taxon coverage. As a corollary, we also revise the groups systematics, notably by emending the large and highly polyphyletic genus Difflugia. These results lead, amongst others, to the erection of a new infraorder Cylindrothecina, as well as two new genera Cylindrifflugia and Golemanskia.

摘要

原生生物,既不是植物、动物也不是真菌的微型真核生物,构成了地球上最大的真核生物多样性。然而,它们的进化历史和模式仍然在很大程度上被忽视,其复杂性也被忽视了。原生生物通常被认为在很长一段时间内保持稳定的形态(形态停滞)。在这项工作中,我们以有壳变形目变形虫为模型来检验这一范例。我们构建了一个基于两个线粒体(COI 和 NADH)和一个核(SSU)基因的分类群丰富的系统发育,并重建了进化枝之间的形态进化。此外,我们还证明了 COI 基因的线粒体 mRNA 编辑的存在。这些树表明,主要进化枝内壳的轮廓缺乏保守性,而且远缘分类群之间也广泛存在形态趋同现象。因此,我们的结果反驳了普遍存在的形态停滞,这可能是由于分类群覆盖率低而产生的假象。作为推论,我们还修订了群体系统发育,特别是修正了大型且高度多系的 Difflugia 属。这些结果导致了一些结果,例如建立了一个新的下目 Cylindrothecina,以及两个新的属 Cylindrifflugia 和 Golemanskia。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验