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首页> 外文期刊>The Journal of Eukaryotic Microbiology >Molecular Phylogeny of Mobilid and Sessilid Ciliates Symbiotic in Eastern Pacific Limpets (Mollusca: Patellogastropoda)
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Molecular Phylogeny of Mobilid and Sessilid Ciliates Symbiotic in Eastern Pacific Limpets (Mollusca: Patellogastropoda)

机译:东太平洋小卷毛上的动植物和Se类纤毛虫共生的分子系统发育(软体动物:Patellogastropoda)

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摘要

The phylogenetic relationships of the ciliate subclass Peritrichia, composed of the orders Mobilida and Sessilida, have recently come under debate as morphological and molecular analyses have struck contrasting conclusions as to the monophyly of the group. We provide additional molecular data to assess the monophyly of the Peritrichia by sequencing the small subunit ribosomal RNA genes of two symbiotic peritrichs, Urceolaria korschelti and Scyphidia ubiquita, found inhabiting the mantle cavity of limpets. Although phylogenetic analyses indicated a nonmonophyletic Peritrichia, approximately unbiased tests revealed that the monophyletic hypothesis could not be rejected. With regard to the Mobilida, our analysis showed divergence within the family Trichodinidae related to host taxaa molluscan clade and a fish clade. For the Sessilida, the family Scyphidiidae was sister to the Astylozoidae. In our sampling of U. korschelti and S. ubiquita, both species showed significant genetic divergence among geographically isolated, yet morphologically indistinguishable populations. We hypothesize that cryptic speciation has produced these morphologically identical species and argue that more extensive genomic analyses are required to fully assess the monophyly, biogeography, and ultimately biodiversity of the peritrichs.
机译:纤毛虫亚种Peritrichia(由Mobilida和Sessilida组成)的系统发生关系最近受到了争论,因为形态学和分子分析已得出关于该组单性的相反结论。我们提供了另外的分子数据,通过对两个共生的peritrichs小毛虫Urceolaria korschelti和Scyphidia ubiquita的小亚基核糖体RNA基因进行测序,来评估Peritrichia的单亲性,发现它们存在于衣壳的壳腔中。尽管系统发育分析显示非单生性腹膜炎,但几乎无偏的测试表明,不能拒绝单生性假说。关于Mobilida,我们的分析表明,与寄主类软体动物进化枝和鱼类进化枝有关的毛线虫科内部存在分歧。对于Sessilida而言,Scyphidiidae家族是Astylozoidae的姐妹。在我们对柯氏螯虾和泛拟南芥的取样中,这两个物种在地理上分离但形态上无法区分的种群之间均显示出显着的遗传差异。我们假设隐性物种已经产生了这些形态上相同的物种,并认为需要更广泛的基因组分析来全面评估peritrichs的单系,生物地理和最终生物多样性。

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