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首页> 外文期刊>Chinese Journal of Oceanology and Limnology >Insights into the phylogeny of sporadotrichid ciliates (Protozoa, Ciliophora: Hypotricha) based on genealogical analyses of multiple molecular markers
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Insights into the phylogeny of sporadotrichid ciliates (Protozoa, Ciliophora: Hypotricha) based on genealogical analyses of multiple molecular markers

机译:基于多种分子标记的族谱分析洞察孢子虫纤毛虫(原生动物,纤毛虫:Hypotricha)的系统发育

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The sporadotrichid ciliates are an especially diverse group. A number of investigators have studied the morphological, morphogenetic, and molecular relationships among members of this group. Despite this, a consistent classification is still lacking and several important questions about the phylogenetic relationships within this group remain unsolved. To improve our understanding of these relationships, we constructed phylogenetic trees using the nucleotide sequences of the small-subunit rRNA (SSrRNA) gene and amino acid sequences of actin I and α-tubulin. Analyses of SSrRNA gene sequences indicated that: 1) the Sporadotrichida sensu Lynn (2008) and the Oxytrichidae are polyphyletic; 2) the Uroleptus species, which are classified to urostylids, formed a sister group with the oxytrichids; 3) Halteria grandinella, which is grouped morphologically with oligotrich species, clustered within the oxytrichids. These results are congruent with previous studies based on SSrRNA gene sequences. However, the amino acid sequences of actin I and α-tubulin yielded different topologies. The main results are: 1) in all phylogenetic trees, the genus Oxytricha was paraphyletic; 2) Uroleptus was sister to a subset of Urostyla and Holosticha, albeit with low supporting values; 3) Halteria grandinella was separated distantly from the Oxytrichidae in trees inferred from actin I amino acid sequences but clustered with oligotrichids in the α-tubulin analysis. The inconsistency among the trees inferred from these different molecular markers may be caused by rapidly accumulated genetic characterizations of ciliates. Further studies with additional molecular markers and sampling of more taxa are expected to better address the relationships among sporadotrichids.
机译:孢子虫纤毛虫是一个特别多样化的群体。许多研究人员研究了该组成员之间的形态,形态发生和分子关系。尽管如此,仍缺乏一致的分类,有关该组内系统发育关系的几个重要问题仍未解决。为了增进对这些关系的理解,我们使用小亚基rRNA(SSrRNA)基因的核苷酸序列以及肌动蛋白I和α-微管蛋白的氨基酸序列构建了系统树。对SSrRNA基因序列的分析表明:1)Sporadotrichida sensu Lynn(2008)和Oxytrichidae具有多系统性。 2)归类为尿嘧啶类的Uroleptus物种与氧旋毛虫形成了一个姊妹基团; 3)桔梗在形态上与富含寡聚体的物种结合在一起,簇生在氧化旋毛虫内。这些结果与以前基于SSrRNA基因序列的研究一致。然而,肌动蛋白I和α-微管蛋白的氨基酸序列产生不同的拓扑。主要结果是:1)在所有系统树中,Oxytricha属是近缘的。 2)尽管支持率很低,但Uepteptus是Urostyla和Holosticha的一部分的姐妹。 3)在肌动蛋白I氨基酸序列推论的树木中,大戟科植物与Ox属科相距遥远,但在α-微管蛋白分析中聚类为寡聚类。从这些不同的分子标记推断出的树木之间的不一致可能是由于纤毛虫的迅速积累的遗传特征造成的。预期使用更多的分子标记物进行更多的研究并取样更多的分类单元,可以更好地解决孢子甲虫之间的关系。

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