> Here we provide evidence that confinement in Robinson Crusoe Island (located about 660?'/> Evolution of the Juan Fernández diving beetle, <i xmlns='http://www.wiley.com/namespaces/wiley'>Rhantus selkirkiRhantus selkirki (Coleoptera, Dytiscidae)
首页> 外文期刊>Zoologica Scripta: An International Journal of Evolutionary Zoology >Evolution of the Juan Fernández diving beetle, Rhantus selkirkiRhantus selkirki (Coleoptera, Dytiscidae)
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Evolution of the Juan Fernández diving beetle, Rhantus selkirkiRhantus selkirki (Coleoptera, Dytiscidae)

机译:JuanFernández潜水甲虫的演变, rhantus selkirki rhantus selkirki(Coleoptera,Dytiscidae)

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摘要

> Here we provide evidence that confinement in Robinson Crusoe Island (located about 660?km west of continental Chile) over evolutionary time leads to strong morphological modifications in diving beetle (Dytiscidae) larvae. We analysed a large set of morphological larval characters for all currently recognised genera of Colymbetinae as a framework, to infer phylogenetic relationships within the large genus Rhantus Dejean, 1833 and, in particular, of the charismatic Juan Fernández diving beetle, Rhantus selkirki J?ch, Balke & Michat, 2015, comparing our results with a recent phylogeny of the Colymbetinae based on DNA sequence data. We suggest that adaptation to the island's particular habitats resulted in the reversal of certain characters of R.?selkirki back to the plesiomorphic states. This may cause the species to be erroneously interpreted as more ‘primitive’ if only morphological characters are analysed. Confinement in the particular, shallow and barely vegetated aquatic habitats of Robinson Crusoe Island for a long time seems to have led to this divergent morphology, particularly in characters related to swimming ability such as several leg and urogomphal setae. In this way, R.?selkirki larvae secondarily resemble those of some earlier diverging dytiscid lineages such as Agabinae and Copelatinae, which typically creep on the bottom of water bodies and do not swim well.
机译: >在这里我们提供证据罗宾逊克鲁索岛(位于智利大陆以西660的Km)中的禁闭在进化时间内导致潜水甲虫(Dytiscidae)幼虫的形态修饰。我们分析了所有当前公认的Colymbetinae作为框架的大量形态幼虫角色,以推断出大谷内的系统发育关系 Rhantus rhantus,1833年,特别是魅力的JuanFernández潜水甲壳虫, rhantus selkirki j?ch,balke&amp; Michat,2015,将我们的结果与近期基于 DNA 序列数据的蛋白酶发作的结果进行比较。我们建议适应岛屿的特殊栖息地导致某些特征的逆转 r.?selkirki 回到Plesiomorphic状态。如果只分析形态特征,这可能导致物种被错误地解释为更“原始”。长时间罗宾逊克鲁索岛的特定浅且植被水生栖息地的限制似乎导致了这种发散形态,特别是与游泳能力相关的特征,如几个腿和尿素塞拉。通过这种方式, r.?selkirki 幼虫将幼虫类似于诸如agabinae和copelatina的一些早期发散的染序列,这通常蠕动在水体的底部并且不会良好游泳。

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