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Genus-level phylogeny of cephalopods using molecular markers: current status and problematic areas

机译:头足类属系统发育的分子标记:现状和存在问题的地区

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摘要

Comprising more than 800 extant species, the class Cephalopoda (octopuses, squid, cuttlefish, and nautiluses) is a fascinating group of marine conchiferan mollusks. Recently, the first cephalopod genome (of Octopus bimaculoides) was published, providing a genomic framework, which will enable more detailed investigations of cephalopod characteristics, including developmental, morphological, and behavioural traits. Meanwhile, a robust phylogeny of the members of the subclass Coleoidea (octopuses, squid, cuttlefishes) is crucial for comparative and evolutionary studies aiming to investigate the group’s traits and innovations, but such a phylogeny has proven very challenging to obtain. Here, we present the results of phylogenetic inference at the genus level using mitochondrial and nuclear marker sequences available from public databases. Topologies are presented which show support for (1) the monophyly of the two main superorders, Octobrachia and Decabrachia, and (2) some of the interrelationships at the family level. We have mapped morphological characters onto the tree and conducted molecular dating analyses, obtaining congruent results with previous estimates of divergence in major lineages. Our study also identifies unresolved phylogenetic relationships within the cephalopod phylogeny and insufficient taxonomic sampling among squids excluding the Loliginidae in the Decabrachia and within the Order Cirromorphida in the Octobrachia. Genomic and transcriptomic resources should enable resolution of these issues in the relatively near future. We provide our alignment as an open access resource, to allow other researchers to reconstruct phylogenetic trees upon this work in the future.
机译:头足类(八足类,鱿鱼,墨鱼和鹦鹉螺)由800多个现存物种组成,是一类引人入胜的海洋贝壳形纲软体动物群。最近,第一个头足类基因组(章鱼双峰)被发布,它提供了一个基因组框架,这将使对头足类特征的更详细研究成为可能,包括发育,形态和行为特征。同时,Colleoidea子类(章鱼,乌贼,乌贼)成员的强大系统发育对于旨在研究该组特征和创新的比较和进化研究至关重要,但是事实证明,要获得这种系统发育非常困难。在这里,我们介绍了使用公共数据库中的线粒体和核标记序列在属水平上进行系统发育推断的结果。呈现的拓扑结构显示了对以下方面的支持:(1)两个主要超序的唯一性,Octobrachia和Decabrachia,以及(2)家庭级别的某些相互关系。我们已经将形态特征映射到树上并进行了分子测年分析,获得了与先前主要谱系差异的估计一致的结果。我们的研究还确定了在头足类系统发育中未解决的系统发育关系,以及在鱿鱼中不存在的分类学采样,除了在十足动物中的金龟科和在八足动物的蝶形目中。基因组和转录组学资源应能在相对不久的将来解决这些问题。我们提供对齐方式作为开放获取资源,以允许其他研究人员在将来的此项工作中重建系统树。

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