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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogeny of the Major Lineages of Membracoidea (Insecta: Hemiptera: Cicadomorpha) Based on 28S rDNA Sequences
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Phylogeny of the Major Lineages of Membracoidea (Insecta: Hemiptera: Cicadomorpha) Based on 28S rDNA Sequences

机译:基于28S rDNA序列的膜类主要谱系(昆虫纲:半翅目:蝉形目)的系统发生

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摘要

Analysis of sequences from a 3.5-kb region of the nuclear ribosomal 28S DNA gene spanning divergent domains D2-D10 supports the hypothesis, based on fossil, biogeographic, and behavioral evidence, that treehoppers (Aetalionidae and Membracidae) are derived from leafhoppers (Cicadellidae). Maximum-parsimony analysis indicated that treehoppers are the sister group of a lineage comprising the currently recognized cicadellid subfamilies Agalliinae, Megophthalminae, Adelungiinae, and Ulopinae. Based on this phylogenetic estimate, the derivation of treehoppers approximately coincided with shifts in physiology and behavior, including loss of brochosome production and a reversal from active, jumping nymphs to sessile, nonjumping nymphs. Myerslopiidae, traditionally placed as a tribe of the cicadellid subfamily Ulopinae, represented a basal lineage distinct from other extant membracoids. The analysis recovered a large leafhopper lineage comprising a polyphyletic Deltocephalinae (sensu stricto) and its apparent derivatives Koebeliinae, Eupelicinae (polyphyletic), Selenocephalinae, and Penthimiinae. Clades comprising Macropsinae, Neocoelidiinae, Scarinae, Iassinae, Coelidiinae, Eurymelinae + Idiocerinae, Evacanthini + Pagaroniini, Aphrodinae + Ledrinae (in part), Stenocotini + Tartessinae, and Cicadellini + Proconiini were also recovered with moderate to high branch support. Cicadellinae (sensu lato), Ledrinae, Typholocybinae, and Xestocephalinae were consistently polyphyletic on the most-parsimonious topologies, but constraining these groups to be monophyletic did not significantly increase the length of the cladograms. Relationships among the major lineages received low branch support, suggesting that more data are needed to provide a robust phylogenetic estimate.
机译:分析跨越D2-D10差异域的核糖体28S DNA基因的3.5 kb区域的序列,支持基于化石,生物地理学和行为证据的假说,即蝉(Aetalionidae和Membracidae)均来自蝉(Cicadellidae)。 。最大简约分析表明,树蝉是一个谱系的姊妹组,包括目前公认的叶蝉科亚目,gal目目,phthal目目和i目目。基于这种系统发育估计,树蝉的推导与生理和行为的变化大致相符,包括气管体产量的下降以及从活跃的跳跃性若虫到无柄非跳跃性若虫的逆转。 Myerslopiidae,传统上被放置为梭子鱼亚科Ulopinae的一个部落,代表了不同于其他现存类膜动物的基础血统。该分析回收了大型叶蝉谱系,其中包括多生型Deltocephalinae(sensesustricto)及其明显的衍生物Koebeliinae,Eupelicinae(polyphyletic),Selenocephalinae和Penthimiinae。中度恢复了包括Macropsinae,新鞘翅目,Scarinae,Iassinae,Coelidiinae,Eurymelinae + Idiocerinae,Evacanthini + Pagaroniini,Aphrodinae + Ledrinae(部分),Stenocotini + Tartessinae和Cicadellini + Proconiini的进化枝。 Cicadellinae(Sensu lato),Ledrinae,Typholocybinae和Xestocephalinae在最简约的拓扑结构上一贯是多系的,但是将这些组限制为单系的并不能显着增加分支图的长度。主要血统之间的关系得到了低分支支持,这表明需要更多的数据来提供可靠的系统发育估计。

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