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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Molecular systematics of the neotropical scorpion genus Tityus (Buthidae): the historical biogeography and venom antigenic diversity of toxic Venezuelan species.
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Molecular systematics of the neotropical scorpion genus Tityus (Buthidae): the historical biogeography and venom antigenic diversity of toxic Venezuelan species.

机译:新热带蝎子 Tityus (Buthidae)的分子系统:有毒的委内瑞拉物种的历史生物地理学和毒液抗原多样性。

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We provide a mitochondrial DNA-based phylogenetic hypothesis for 21 Tityus species collected in Venezuela, Trinidad, Brazil and Panama, including 12 taxa known to be toxic to humans. Our phylogenetic reconstruction is based on 850 nucleotides of the combined cytochrome oxidase subunit I and 16S rRNA genes for most species, and centered on Venezuelan scorpions owing to the detailed taxonomic and biogeographic information available for Tityus in this region. The principal phylogenetic result was the strong support for mtDNA clades representing geographical groupings associated with the Perija mountain range, the Merida Andes, or the central and eastern coastal ranges in Venezuela, suggesting that vicariance has been a potent force in the diversification of local scorpions. Venezuelan Tityus species have been organized by Gonzalez-Sponga into three artificial morphological groups, "androcottoides", "discrepans", and "nematochirus", based on the array of ventral carinae in metasomal segments II-IV. We also incorporated a fourth morphological group ("Tityus clathratus"), recently documented in Venezuela. Our results do not support the clustering of the species in the "androcottoides" and "discrepans" morphological groups, which include the majority of taxa of medical importance, but provided support for the "nematochirus" species group. T. clathratus was found to cluster with the Brazilian T. serrulatus and T. bahiensis. Divergence times of most clades are consistent with major events in the geological history of northern Venezuela and suggest that many Venezuelan Tityus species formed in the late Miocene and the Pliocene. In turn, we used the Tityus mtDNA phylogeny to determine the potential utility of phylogenetic systematics to predict Tityus venom antigenic reactivity by testing the recognition of T. nororientalis, T. discrepans, T. zulianus, T. perijanensis, and T. clathratus venoms by anti-T. discrepans horse antibodies. Cross-reactivity was significantly higher for the closely related eastern (T. nororientalis) and central coastal (T. discrepans) species in comparison to the distantly related Andean (T. zulianus) and Perija (T. perijanensis) species. Reactivity of T. clathratus low mol. mass toxic components towards anti-T. serrulatus and anti-T. discrepans antivenoms was low, suggesting that venom components produced by the subgenus Archaeotityus (which encompass "clathratus" species) diverge antigenically from other Tityus scorpions.
机译:我们为委内瑞拉,特立尼达,巴西和巴拿马收集的21种 Tityus 物种提供了基于线粒体DNA的系统发育假说,其中包括12种已知对人类有毒的类群。我们的系统发育重建基于大多数物种的细胞色素氧化酶I和16S rRNA组合基因的850个核苷酸,由于该地区可用于 Tityus 的详细分类学和生物地理信息,因此我们以委内瑞拉蝎子为中心。系统发育的主要结果是对代表与佩里哈山脉,梅里达安第斯山脉或委内瑞拉中部和东部沿海地区有关的地理群体的mtDNA进化枝的大力支持,这表明,变异是当地蝎子多样化的强大力量。委内瑞拉 Tityus 物种已经由Gonzalez-Sponga分为三个人工形态学组,即“雄果纲”,“离散”和“线虫”,这是基于二体片段II-IV腹侧腹鳍的排列。我们还合并了第四个形态学组(“ Tityus clathratus ”),该组最近在委内瑞拉得到了记录。我们的结果不支持该物种在“ androcottoides”和“ disdispans”形态学类别中的聚类,这包括大多数具有医学重要性的分类单元,但为“线虫纲”物种组提供了支持。 T。发现clathratus 与巴西 T聚在一起。 serrulatus 和 T。巴希族。大多数进化枝的发散时间与委内瑞拉北部的地质历史中的重大事件一致,表明在中新世和上新世晚期形成了许多委内瑞拉的“蒂蒂乌斯”物种。反过来,我们使用 Tityus mtDNA系统发育来确定系统发育系统的潜在效用,以通过测试 T的识别来预测 Tityus 毒液抗原反应性。 nororientalis , T。差异, T。 zulianus , T。 Perijanensis 和 T抗T的clathratus 毒液。差异马抗体。与远缘的安第斯山脉()相比,近缘的东部()和中部沿海( T。Discrepans )物种的交叉反应性明显更高。 T. zulianus )和Perija( Terjanjanensis )物种。 T的反应性。 clathratus 低分子抗-T的大量有毒成分。 serrulatus 和anti- T。差异抗虫性很低,表明 Archaeotityus 属(包括“ clathratus”种)产生的毒液成分在抗原性上与其他 Tityus 蝎子不同。

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