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Hidden among Sea Anemones: The First Comprehensive Phylogenetic Reconstruction of the Order Actiniaria (Cnidaria Anthozoa Hexacorallia) Reveals a Novel Group of Hexacorals

机译:隐藏在海葵中:猕猴桃属的首次综合系统发育重建(CindariaAnthozoaHexacorallia)揭示了一组新的Hexacorals

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摘要

Sea anemones (order Actiniaria) are among the most diverse and successful members of the anthozoan subclass Hexacorallia, occupying benthic marine habitats across all depths and latitudes. Actiniaria comprises approximately 1,200 species of solitary and skeleton-less polyps and lacks any anatomical synapomorphy. Although monophyly is anticipated based on higher-level molecular phylogenies of Cnidaria, to date, monophyly has not been explicitly tested and at least some hypotheses on the diversification of Hexacorallia have suggested that actiniarians are para- or poly-phyletic. Published phylogenies have demonstrated the inadequacy of existing morphological-based classifications within Actiniaria. Superfamilial groups and most families and genera that have been rigorously studied are not monophyletic, indicating conflict with the current hierarchical classification. We test the monophyly of Actiniaria using two nuclear and three mitochondrial genes with multiple analytical methods. These analyses are the first to include representatives of all three currently-recognized suborders within Actiniaria. We do not recover Actiniaria as a monophyletic clade: the deep-sea anemone Boloceroides daphneae, previously included within the infraorder Boloceroidaria, is resolved outside of Actiniaria in several of the analyses. We erect a new genus and family for B. daphneae, and rank this taxon incerti ordinis. Based on our comprehensive phylogeny, we propose a new formal higher-level classification for Actiniaria composed of only two suborders, Anenthemonae and Enthemonae. Suborder Anenthemonae includes actiniarians with a unique arrangement of mesenteries (members of Edwardsiidae and former suborder Endocoelantheae). Suborder Enthemonae includes actiniarians with the typical arrangement of mesenteries for actiniarians (members of former suborders Protantheae, Ptychodacteae, and Nynantheae and subgroups therein). We also erect subgroups within these two newly-erected suborders. Although some relationships among these newly-defined groups are still ambiguous, morphological and molecular results are consistent enough to proceed with a new higher-level classification and to discuss the putative functional and evolutionary significance of several morphological attributes within Actiniaria.
机译:海葵(猕猴桃属)是按蚊亚种Hexacorallia中最多样化和最成功的成员之一,遍及所有深度和纬度,都占据着底栖海洋生境。猕猴桃包括大约1200种单生和无骨架息肉,并且没有任何解剖上的突触。尽管人们预计单子叶植物是基于更高的刺胞属分子系统发育学,但迄今为止,单子叶植物尚未得到明确测试,至少关于六头花的多样性的一些假设表明,猕猴桃属准或多种。已发表的系统进化论已证明猕猴桃内现有基于形态学的分类是不充分的。严格研究的超家族类以及大多数家庭和属不是单系的,表明与当前的等级分类相冲突。我们使用多种分析方法,使用两个核和三个线粒体基因测试猕猴桃的单性。这些分析首次包括了猕猴桃中目前公认的所有三个亚纲的代表。我们没有将猕猴桃作为单系进化枝恢复:先前包含在海螺下属中的深海葵Boloceroides daphneae,在一些分析中已在Actiniaria之外解析。我们为水蚤芽孢杆菌建立了一个新的属和科,并对该无性系分类。基于我们全面的系统发育,我们为猕猴桃提出了一个新的正式的更高级别分类,该分类仅由两个亚目组成,即Anenthemonae和Enthemonae。 en虫亚目包括具有独特的肠系膜排列的猕猴桃属(爱德华科的成员和以前的肠内膜亚目)。肠纲亚目包括具有典型的用于猕猴桃的肠系膜的猕猴桃属(原Protantheae,Ptychodacteae和Nynantheae亚纲的成员以及其中的亚群)。我们还在这两个新建立的子订单中建立子组。尽管这些新定义的基团之间的某些关系仍然不明确,但形态学和分子学结果一致,足以进行新的更高分类,并讨论了猕猴桃中几种形态学属性的假定功能和进化意义。

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