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Building-Up of a DNA Barcode Library for True Bugs (Insecta: Hemiptera: Heteroptera) of Germany Reveals Taxonomic Uncertainties and Surprises

机译:建立用于德国真昆虫(昆虫:半翅目:异翅目)的DNA条形码库揭示了分类学上的不确定性和惊喜

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摘要

During the last few years, DNA barcoding has become an efficient method for the identification of species. In the case of insects, most published DNA barcoding studies focus on species of the Ephemeroptera, Trichoptera, Hymenoptera and especially Lepidoptera. In this study we test the efficiency of DNA barcoding for true bugs (Hemiptera: Heteroptera), an ecological and economical highly important as well as morphologically diverse insect taxon. As part of our study we analyzed DNA barcodes for 1742 specimens of 457 species, comprising 39 families of the Heteroptera. We found low nucleotide distances with a minimum pairwise K2P distance <2.2% within 21 species pairs (39 species). For ten of these species pairs (18 species), minimum pairwise distances were zero. In contrast to this, deep intraspecific sequence divergences with maximum pairwise distances >2.2% were detected for 16 traditionally recognized and valid species. With a successful identification rate of 91.5% (418 species) our study emphasizes the use of DNA barcodes for the identification of true bugs and represents an important step in building-up a comprehensive barcode library for true bugs in Germany and Central Europe as well. Our study also highlights the urgent necessity of taxonomic revisions for various taxa of the Heteroptera, with a special focus on various species of the Miridae. In this context we found evidence for on-going hybridization events within various taxonomically challenging genera (e.g. Nabis Latreille, 1802 (Nabidae), Lygus Hahn, 1833 (Miridae), Phytocoris Fallén, 1814 (Miridae)) as well as the putative existence of cryptic species (e.g. Aneurus avenius (Duffour, 1833) (Aradidae) or Orius niger (Wolff, 1811) (Anthocoridae)).
机译:在最近几年中,DNA条形码已成为一种识别物种的有效方法。对于昆虫而言,大多数已发表的DNA条形码研究都集中在星翅目,直翅目,膜翅目,尤其是鳞翅目的物种上。在这项研究中,我们测试了DNA条形码对真虫(半翅目:异翅目)的效率,这是一种生态和经济上非常重要的昆虫,形态上也很多样化。作为研究的一部分,我们分析了包括39个异翅目科的1742个标本的457种标本的DNA条形码。我们在21个物种对(39个物种)中发现了低核苷酸距离,最小成对K2P距离<2.2%。对于这些物种对中的十个(18个物种),最小成对距离为零。与此相反,对于16个传统公认的有效物种,检测到最大配对距离> 2.2%的深种内序列差异。我们的研究以91.5%(418个物种)的成功识别率着重强调了使用DNA条码识别真实错误的方法,并代表了在德国和中欧建立全面的真实错误条码库的重要一步。我们的研究还强调了对异翅目的各种分类进行分类学修订的迫切必要,特别是针对the科的各种物种。在这种情况下,我们发现了各种具有挑战性的生物分类中持续发生杂交事件的证据(例如Nabis Latreille,1802年(Nabidae),Lygus Hahn,1833年(Miridae),PhytocorisFallén,1814年(Miridae))以及隐性物种(例如,Aneurus avenius(Duffour,1833)(Aradidae)或Orius niger(Wolff,1811)(Anthocoridae))。

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