首页> 外文期刊>European journal of entomology >Revision, phylogeny and phylogeography of the cicada genus Auritibicen (Hemiptera: Cicadidae), with descriptions of ten new species
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Revision, phylogeny and phylogeography of the cicada genus Auritibicen (Hemiptera: Cicadidae), with descriptions of ten new species

机译:蝉属菌菌(Hemiptera:cicadidae)的修复,系统发育和辐射地理,具有十个新物种的描述

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We review the cicada genus Auritibicen Lee, 2015 based on the description of ten new species: A. aethus sp. n., A. daoxianensis sp. n., A. pallidus sp. n., A. rotundus sp. n., A. curvatus sp. n., A. purus sp. n., A. parvus sp. n., A. gracilis sp. n., A. septatus sp. n. and A. lijiangensis sp. n. Auritibicen shikokuanus (Kato, 1959) is confirmed to be a synonym of Auritibicen kyushyuensis (Kato, 1926). Diagnoses and descriptions, along with illustrations of the structure of male genitalia, are provided for all Auritibicen species. The systematics of Auritibicen is elucidated using both morphological and molecular characterization. Thirty-five morphological characters of the 24 species of Auritibicen and one outgroup taxon, Chremistica ochracea (Walker, 1850), were scored. Morphological phylogenetic analyses reveal the relationships among related species of Auritibicen , which are supported by a number of morphological characters. The mitochondrial gene fragments of Cytochrome Oxidase I ( COI ) of 11 species of Auritibicen and two outgroup Lyristes species were analyzed and yielded identical robust phylogenetic trees. The phylogram based on a Bayesian analysis of both morphological and molecular data is similar to the ML/BI topologies based only on the molecular data. The molecular phylogenetic analysis indicates that species of Auritibicen are structured phylogeographically, with related species clustered into three lineages. The divergence time estimated based on molecular data indicates that the divergence of Auritibicen from Lyristes occurred during the Miocene, and the most recent common ancestor (tMRCA) of Auritibicen evolved during the Pliocene. However, the time when the main divergence events of species of Auritibicen occurred was the Pleistocene. From the combination of the phylogeny and updated geographical distributions, we infer that the center of distribution of Auritibicen could be Southwest China (e.g., Sichuan and Yunnan Provinces), from where species of this genus spreaded northeastwards to Shaanxi, Hubei and other provinces along the Qinling and Daba Mountains, then further northeastwards to Hebei Province in China and also to Far East Russia, the Korean Penisula, and Japan.
机译:我们根据十种新物种的描述,查看2015年蝉属荔itibicen李,2015年:A. Aeveus SP。 n。,A. daoxianensis sp。 ñ。,A.Pallidus sp。 ñ。,A. rotundus sp。 ñ。,a。curvatus sp。 ñ。,a。purus sp。 ñ。,A.Parvus sp。 ñ。,A. Gracilis sp。 n。,a。septatus sp。 ñ。和A. lijiangensis sp。 ñ。 Auritibicen Shikokuanus(Kato,1959年)被确认是Auritibicen九州血育(Kato,1926年)的同义词。诊断和描述以及雄性生殖器结构的插图,为所有菌射纤毛物种提供。使用形态学和分子表征阐明了菌射的系统学。得分了24种Auritibicen和一个小组分类的35种形态特征,Chremista Ochracea(Walker,1850),得分。形态学系统发育分析揭示了Auritibicen相关种类之间的关系,其由许多形态特征负载。分析了11种Auritibicen的细胞色素氧化酶I(COI)的线粒体基因片段,并分析了一个相同的强大的系统发育树。基于形态学和分子数据的贝叶斯分析的Phylography仅基于ML / BI拓扑基于分子数据。分子系统发育分析表明,Auritibicen的种类是帖子地理上的构建,其中相关物种聚集成三个谱系。基于分子数据估计的分歧时间表明,在中间烯期间,菌座中发生的菌丝的差异,以及在全烯中的菌射的最新常见的祖先(TMRCA)演变。然而,发生菌射的主要分歧事件的时间是渗透胶。从系统发育和更新的地理分布的组合来,我们推断奥里塔比根的分布中心可以是西南地区(例如,四川和云南省),从该属的种类从东北部传播到陕西,湖北等省份秦岭和大巴山脉,然后进一步向中国进一步向河北省以及远东俄罗斯,韩国缩生和日本。

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