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The phylogenetic position of ctenophores and the origin(s) of nervous systems

机译:尾鳍的系统发育位置和神经系统的起源

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摘要

Ctenophores have traditionally been treated as eumetazoans, but some recent whole genome studies have revived the idea that they are, rather, the sister group to all other metazoans. This deep branching position implies either that nervous systems have evolved twice, in Ctenophora and in Eumetazoa, or that an ancestral metazoan nervous system has been lost in sponges and placozoans. We caution, however, that phylogenetic-tree construction artifacts may have placed ctenophores too deep in the metazoan tree. We discuss nervous system origins under these alternative phylogenies and in light of comparative data of ctenophore and eumetazoan nervous systems. We argue that characters like neuropeptide signaling, ciliary photoreceptors, gap junctions and presynaptic molecules are consistent with a shared ancestry of nervous systems. However, if ctenophores are the sister group to all other metazoans, this ancestral nervous system was likely very simple. Further studies are needed to resolve the deep phylogeny of metazoans and to have a better understanding of the early steps of nervous system evolution.
机译:传统意义上,食蟹动物被当作是安乐唑烷,但是最近的一些全基因组研究使人们重新认识到它们是所有其他后生动物的姊妹群。这种深深的分支位置暗示着神经系统在Ctenophora和Eumetazoa中已经进化了两次,或者在海绵和普拉科动物中失去了祖先的后生神经系统。但是,我们提醒您,系统发育树的构造伪影可能会使尾足目动物在后生动物树中放置得太深。我们讨论了神经系统起源的这些替代系统发育,并根据c鱼和杜鹃花神经系统的比较数据。我们认为像神经肽信号传导,睫状光感受器,间隙连接和突触前分子等特征与神经系统的共同祖先是一致的。但是,如果十足动物是所有其他后生动物的姊妹群,那么祖先的神经系统可能非常简单。需要进一步的研究来解决后生动物的深层系统发育,并更好地了解神经系统进化的早期步骤。

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