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Another one bites the dust: taxonomic sampling of a key genus in phylogenomic datasets reveals more non-monophyletic groups in traditional scorpion classification

机译:另一个人咬尘埃:系统染色组织中的关键属性的分类样品采样在传统的蝎子分类中揭示了更多的非单晶基团

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Historically, morphological characters have been used to support the monophyly, composition, and phylogenetic relationships of scorpion families. Although recent phylogenomic analyses have recovered most of these traditional higher-level relationships as non-monophyletic, certain key taxa have yet to be sampled using a phylogenomic approach. Salient among these is the monotypic genus Caraboctonus Pocock, 1893, the type species of the family Caraboctonidae Kraepelin, 1905. Here, we examined the putative monophyly and phylogenetic placement of this family, sampling the library of C. keyserlingi Pocock, 1893 using high throughput transcriptomic sequencing. Our phylogenomic analyses recovered Caraboctonidae as polyphyletic due to the distant placement of the genera Caraboctonus and Hadrurus Thorell, 1876. Caraboctonus was stably recovered as the sister-group of the monotypic family Superstitioniidae Stahnke, 1940, whereas Hadrurus formed an unstable relationship with Uroctonus Thorell, 1876 and Belisarius Simon, 1879. Fourcluster likelihood mapping revealed that the instability inherent to the placement of Hadrurus, Uroctonus and Belisarius was attributable to significant gene tree conflict in the internodes corresponding to their divergences. To redress the polyphyly of Caraboctonidae, the following systematic actions have been taken: (1) the family Caraboctonidae has been delimited to consist of 23 species in the genera Caraboctonus and Hadruroides Pocock, 1893; (2) Caraboctonidae, previously included in the superfamily Iuroidea Thorell, 1876 or as incertae sedis, is transferred to the superfamily Caraboctonoidea (new rank); (3) the superfamily Hadruroidea (new rank) is established and the status of Hadrurinae Stahnke, 1973 is elevated to family (Hadruridae new status) including 9 species in the genera Hadrurus and Hoffmannihadrurus Fet & Soleglad, 2004 and (4) we treat Uroctonus and Belisarius as insertae sedis with respect to superfamilial placement. Our systematic actions engender the monophyly of both Iuroidea and Caraboctonidae. Future phylogenomic investigations should target similar taxon-poor and understudied lineages of potential phylogenetic significance, which are anticipated to reveal additional non-monophyletic groups.
机译:历史上,形态特征已被用来支持蝎子家族的单层,组成和系统发育关系。虽然近期的系统托儿科分析已经回收了这些传统的高层关系中的大部分,但是某些关键分类群尚未使用文学组织方法进行取样。其中突出的是单调型属Caraboctonus pocock,1893年,族族Caraboctonidae Kraepelin,1905年。在这里,我们检查了这个家庭的推定的单层和系统发育放置,使用高吞吐量来取样C. Keyserlingi Pocock的图书馆。转录组测序。我们的系统核算科学分析是由于Genera Caraboctonus和Hadrurus Thorell的遥远放置而回收的Caraboctonidae作为多肽,1876年。Caraboctonus被稳定地回收为1940年的单型家庭Superstitionsiidae Stiidae Stahnke,而Hadrurus与Uroctonus Thorell形成了不稳定的关系, 1876年和Belisarius Simon,1879年。Fourcluster似然映射揭示了Hadrurus,Uroctonus和Belisarius的放置所固有的不稳定性,其归因于与其分歧相对应的专区中的重大基因树冲突。为了纠正Caraboctonidae的多重,已经采取了以下系统作用:(1)划分的Caraboctonidae在1893年的Genta Caraboctonus和Hadruroides Pocock中组成23种。 (2)以前包括在Superfamily Iureidea Thorell,1876年或作为Incertae Sedis的Caraboctonidae被转移到Superfamily Caraboctonoidea(新排名); (3)建立了超级小吃Hadruroidea(新级),1973年Hadrurinae Stahnke的状态升高到家庭(Hadruridae新地质),其中包括9种,包括Hofrurus和Hoffmannihadrurus FET&Soleglad,2004和(4),我们治疗Uroctonus Belisarius是Iassae Sedis关于超级敷料。我们的系统动作能够在IuRoidea和Caraboctonidae中单独发挥。未来的文学组织研究应靶向类似的分类差和潜在的系统发育意义的血管发育意义,预计会揭示额外的非单胺基团。

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