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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic position of the parasitic nematode Trophomera (Nematoda, Benthimermithidae): A molecular analysis
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Phylogenetic position of the parasitic nematode Trophomera (Nematoda, Benthimermithidae): A molecular analysis

机译:寄生线虫Trophomera的系统发育位置(奈塔罗托,底栖酸乙片):分子分析

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摘要

Benthimermithid nematodes are parasites of invertebrates currently classified within their own order. Relationships between the Benthimermithida and other nematode orders, however, remain unclear due to their relatively simple morphology, their rarity, and paucity of molecular sequence data. Here, we combine molecular sequences obtained from Trophomera cf. marionensis in the Kermadec Trench with existing Trophomera sequences to determine the phylogenetic position of benthimermithids. Our SSU analyses showed Trophomera to be most closely-related to the order Plectida, subclass Chromadorea. Trophomera sequences formed a well-supported monophyletic clade placed within the Plectida, however relationships with other taxa within the order could not be resolved. Based on the result of these analyses, we propose that the family Benthimermithidae be moved to the order Plectida, however, future research on the classification of the family should focus on the benthimermithid genera Bathynema and Adenodelphis, for which no molecular sequences are yet available. We could not confirm a relationship between Trophomera and the family Camacolaimidae, which are both characterised by the presence of a stylet or stylet-like structure in the buccal cavity. Stylets are a common feature of parasitic nematodes, and its presence in a free-living benthimermithid ancestor perhaps similar to present-day camacolaimids could have facilitated a transition to a parasitic lifestyle. Our SSU phylogenetic analyses show that some features of benthimermithids, including the trophosome and a parasitic life cycle where the adults mate outside the host, have evolved independently in different groups of parasitic nematodes.
机译:Benthimermithid线虫是无脊椎动物的寄生虫目前在自己的订单中被分类。然而,由于其相对简单的形态,它们的稀有性和分子序列数据的缺乏,因此底栖肌肤和其他线虫顺序之间的关系仍然不明确。在此,我们将从Trophomera的分子序列结合起来。 Marionensis在Kermadec沟槽中,具有现有的Trophomera序列,以确定底栖肌肤的系统发育位置。我们的SSU分析显示Trophomera与Plectida,亚类Chromadorea秩序最密切相关。 Trophomera序列形成了放置在Plectida内的良好支持的单晶石腕部,但是在订单中与其他分类群的关系无法解决。基于这些分析的结果,我们提出了底栖生命形式的家庭迁移到Plectida的秩序,然而,未来对家庭分类的研究应该关注底栖肌肤属Bathynema和Adenodelphis,其中没有分子序列。我们无法确认Trophomera和家庭Camacolaimidae之间的关系,这两者都是通过在颊腔中存在探针或毛刺样结构的特征。 Stylets是寄生线虫的常见特征,其在自由生活的底栖肌号祖先可能与当今的Camacolaimids类似,可以促进到寄生生活方式的过渡。我们的SSU系统发育分析表明,底栖肌肤的一些特征,包括滴注组和寄生生命周期,其中成年人在宿主之外的成人交配,在不同的寄生线虫中独立地演变。

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