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First phylogenetic analysis of Dryophthorinae (Coleoptera Curculionidae) based on structural alignment of ribosomal DNA reveals Cenozoic diversification

机译:基于核糖体DNA的结构对准的基于结构对准的干细胞(鞘翅目CurculionADAE)的第一次系统发育分析显示新生代多样化

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摘要

Dryophthorinae is an economically important, ecologically distinct, and ubiquitous monophyletic group of pantropical weevils with more than 1,200 species in 153 genera. This study provides the first comprehensive phylogeny of the group with the aim to provide insights into the process and timing of diversification of phytophagous insects, inform classification and facilitate predictions. The taxon sampling is the most extensive to date and includes representatives of all five dryophthorine tribes and all but one subtribe. The phylogeny is based on secondary structural alignment of 18S and 28S rRNA totaling 3,764 nucleotides analyzed under Bayesian and maximum likelihood inference. We used a fossil‐calibrated relaxed clock model with two approaches, node‐dating and fossilized birth‐death models, to estimate divergence times for the subfamily. All tribes except the species‐rich Rhynchophorini were found to be monophyletic, but higher support is required to ascertain the paraphyly of Rhynchophorini with more confidence. Nephius is closely related to Dryophthorini and Stromboscerini, and there is strong evidence for paraphyly of Sphenophorina. We find a large gap between the divergence of Dryophthorinae from their sister group Platypodinae in the Jurassic‐Cretaceous boundary and the diversification of extant species in the Cenozoic, highlighting the role of coevolution with angiosperms in this group.
机译:Drowophthorinae是一种经济上重要的,生态的鲜明,普遍的羽毛血管血管族,在153属中有超过1,200种。本研究提供了本集团的第一个综合文学系统,目的是为植物昆虫的多样化的过程和时间提供深入,告知分类和促进预测。分类种类抽样是最广泛的日期,包括所有五个干酪草部落的代表,除了一个子系统之外。系统发育基于二次结构对准18℃和28S rRNA,总计3,764核苷酸分析在贝叶斯和最大似然推理下。我们使用了一款具有两种方法,节点约会和化石的出生模型的化石校准的轻松钟模型,以估算亚家族的发散时间。除了富含物种的rhynchophorini外,所有部落都被发现是单噬细胞,但需要更高的支持来确定rhynchophorini的令人信服的令人信心。 Nephius与Droodophthorini和Stromboscerini密切相关,并且对斯坦诺洛丽娜有疑问,有很强的证据。我们在侏罗纪 - 白垩纪边界中的姐妹群鸭嘴粉蛋白的Drotophorinae分歧和新生代中的远端物种的多样化突出了巨大差距,突出了参与在该组中的有神不转植物的作用。

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