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SSU rRNA Reveals a Sequential Increase in Shell Complexity Among the Euglyphid Testate Amoebae (Rhizaria: Euglyphida)

机译:SSU rRNA揭示了在丑虫遗嘱属变形虫中的壳复杂性的顺序增加(根瘤菌:丑虫属)

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摘要

The existing data on the molecular phylogeny of filose testate amoebae from order Euglyphida has revealed contradictions between traditional morphological classification and SSU rRNA phylogeny and, moreover, the position of several important genera remained unknown. We therefore carried out a study aiming to fill several important gaps and better understand the relationships among the main euglyphid testate amoebae and the evolutionary steps that led to the present diversity at a higher level. We obtained new SSU rRNA sequences from five genera and seven species. This new phylogeny obtained shows that (1) the clade formed by species of genera and branches unambiguously at the base of the subclade of Euglyphida comprising all members of the family Trinematidae and genus , (2) family Trinematidae (, and ) branches as a sister group to genus , (3) three newly sequenced Euglypha species ( cf. , , and ) form a new clade within the genus. Since our results show that and do not belong to the Euglyphidae (unless the Trinematidae are also included in this family), we propose the creation of a new family named Assulinidae. Consequently, we give a family status to the genera and (tentatively) , which become the new family Euglyphidae. The evolutionary pattern suggested by SSU rRNA phylogeny shows a clear tendency towards increasing morphological complexity of the shell characterised by changes in the symmetry (migration of the aperture to a ventral position and/or compression of the shell) and the appearance of specialised scales at the aperture (in families Trinematidae and Euglyphidae).
机译:现有的关于桉树纲的绒毛状睾丸虫的分子系统发育的现有数据揭示了传统形态学分类与SSU rRNA系统发育之间的矛盾,而且,几个重要属的位置仍然未知。因此,我们进行了一项研究,旨在填补几个重要的空白,并更好地了解主要的丑虫纲睾丸变形虫之间的关系以及导致当前多样性的更高水平的进化步骤。我们从五个属和七个物种获得了新的SSU rRNA序列。获得的这种新的系统发育系统表明:(1)属的属和分支明确地在桉属亚纲的基部形成枝条,该分支包括T科和and属的所有成员,(2)rine科(和)的分支作为姐妹(3)三个新测序的Euglypha物种(cf.,和)在属内形成了新的进化枝。由于我们的结果表明该基因不属于桉科(除非该科也包括该科),所以我们建议创建一个名为Assulinidae的新科。因此,我们将属赋予了属(暂时),这成为了新的E科。 SSU rRNA系统发育学表明的进化模式显示出明显的趋向于增加壳的形态复杂性,其特征为对称性的变化(孔径向腹侧位置的迁移和/或壳的压缩)以及在壳上出现特殊鳞片。光圈(在Trinematidae和Euglyphidae家庭中)。

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