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Are microbes fundamentally different than macroorganisms? Convergence and a possible case for neutral phenotypic evolution in testate amoeba (Amoebozoa: Arcellinida)

机译:微生物与大微生物根本不同吗?睾丸变形虫的融合以及中性表型进化的可能案例(变形虫:Arcellinida)

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摘要

This study reveals extensive phenotypic convergence based on the non-monophyly of genera and morphospecies of testate (shelled) amoebae. Using two independent markers, small subunit ribosomal DNA (ssu-rDNA) and mitochondrial cytochrome oxidase I (COI), we demonstrate discordance between morphology and molecules for ‘core Nebela’ species (Arcellinida; Amoebozoa). Prior work using just a single locus, ssu-rDNA, also supported the non-monophyly of the genera Hyalosphenia and Nebela as well as for several morphospecies within these genera. Here, we obtained COI gene sequences of 59 specimens from seven morphospecies and ssu-rDNA gene sequences of 50 specimens from six morphospecies of hyalosphenids. Our analyses corroborate the prior ssu-rDNA findings of morphological convergence in test (shell) morphologies, as COI and ssu-rDNA phylogenies are concordant. Further, the monophyly of morphospecies is rejected using approximately unbiased tests. Given that testate amoebae are used as bioindicators in both palaeoecological and contemporary studies of threatened ecosystems such as bogs and fens, understanding the discordance between morphology and genetics in the hyalosphenids is essential for interpretation of indicator species. Further, while convergence is normally considered the result of natural selection, it is possible that neutrality underlies phenotypic evolution in these microorganisms.
机译:这项研究揭示了广泛的表型收敛基于属(壳)变形虫的属和形态物种的非单性。我们使用两个独立的标记物,小亚基核糖体DNA(ssu-rDNA)和线粒体细胞色素氧化酶I(COI),证明了“核心Nebela”物种(Arcellinida; Amoebozoa)的形态与分子之间存在不一致。先前仅使用一个基因座ssu-rDNA的工作,也支持了透明毛虫和Nebela属的非单一性,以及这些属中的几种形态。在这里,我们从七个形态种获得了59个标本的COI基因序列,并从六个透明藻的形态获得了50个标本的ssu-rDNA基因序列。我们的分析证实了先前的ssu-rDNA在测试(壳)形态上形态收敛的发现,因为COI和ssu-rDNA系统发育是一致的。此外,使用近似无偏检验拒绝形态物种的单亲。鉴于在古生态学和当代研究中,对于沼泽和s等濒危生态系统,已将睾丸变形虫用作生物指示剂,因此了解透明透明动物的形态和遗传之间的差异对于解释指示物种至关重要。此外,虽然通常认为收敛是自然选择的结果,但中性可能是这些微生物表型进化的基础。

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