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Morphological and Molecular Analysis of Australian Earwigs (Dermaptera) Points to Unique Species and Regional Endemism in the Anisolabididae Family

机译:澳大利亚Ear(Dermaptera)的形态和分子分析指出了异翅科的独特物种和地方特有物种

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摘要

Dermaptera (earwigs) from the Anisolabididae family may be important for pest control but their taxonomy and status in Australia is poorly studied. Here we used taxonomic information to assess the diversity of southern Australian Anisolabididae and then applied cox1 barcodes as well as additional gene fragments (mitochondrial and nuclear) to corroborate classification and assess the monophyly of the putative genera. Anisolabididae morphospecies fell into two genera, Anisolabis Fieber and Gonolabis Burr, based on paramere morphology. Combinations of paramere and forceps morphology distinguished seven morphospecies, which were further supported by morphometric analyses. The morphospecies were corroborated by barcode data; all showed within-species genetic distance < 4% and between-species genetic distance > 10%. Molecular phylogenies did not support monophyly of putative genera nor clades based on paramere shape, instead pointing to regional clades distinguishable by forceps morphology. This apparent endemism needs to be further tested by sampling of earwig diversity outside of agricultural production regions but points to a unique regional insect fauna potentially important in pest control.
机译:Anisolabididae家族的Dermaptera(假发)可能对害虫控制很重要,但在澳大利亚对它们的分类和地位的研究很少。在这里,我们使用分类学信息来评估澳大利亚南部南方鳄科的多样性,然后应用cox1条形码以及其他基因片段(线粒体和核基因)来确证分类并评估推定属的单性。基于准分子的形态,科的形态科分为两个属:Anisolabis Fieber和Gonolabis Burr。帕拉米尔和镊子形态学的组合区分了七个形态学种类,形态学分析进一步支持了这七个形态学种类。条形码数据证实了形态。所有物种间的遗传距离均<4%,种间的遗传距离> 10%。分子系统发育不支持假定的属的单亲性,也不支持基于准分子形状的进化枝,而是指向可通过镊子形态区分的区域进化枝。需要通过对农业生产区域以外的ear多样性进行采样来进一步检验这种明显的地方特有性,但它指出了对害虫控制潜在重要的独特的区域昆虫区系。

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