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Genera of euophryine jumping spiders (Araneae: Salticidae), with a combined molecular-morphological phylogeny

机译:真蝇草跳跃蜘蛛属(蜘蛛科:Salticidae),具有综合的分子形态学系统发育

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Morphological traits of euophryine jumping spiders were studied to clarify generic limits in the Euophryinae and to permit phylogenetic classification of genera lacking molecular data. One hundred and eight genera are recognized within the subfamily. Euophryine generic groups and the delimitation of some genera are reviewed in detail. In order to explore the effect of adding formal morphological data to previous molecular phylogenetic studies, and to find morphological synapomorphies, eighty-two morphological characters were scored for 203 euophryine species and seven outgroup species. The morphological dataset does not perform as well as the molecular dataset (genes 28S, Actin 5C; 16S-ND1, COI) in resolving the phylogeny of Euophryinae, probably because of frequent convergence and reversal. The formal morphological data were mapped on the phylogeny in order to seek synapomorphies, in hopes of extending the phylogeny to include taxa for which molecular data are not available. Because of homoplasy, few globally-applicable morphological synapomorphies for euophryine clades were found. However, synapomorphies that are unique locally in subclades still help to delimit euophryine generic groups and genera. The following synonyms of euophryine genera are proposed: Maeotella with Anasaitis; Dinattus with Corythalia; Paradecta with Compsodecta; Cobanus, Chloridusa and Wallaba with Sidusa; Tarionawith Mopiopia; Nebridia with Amphidraus; Asaphobelis and Siloca with Coryphasia; Ocnotelus with Semnolius; Palpelius with Pristobaeus; Junxattus with Laufeia; Donoessus with Colyttus; Nicylla, Pselcis and Thianitara with Thiania. The new genus Saphrys is erected for misplaced species from southern South America.
机译:进行了研究,以研究了真金鱼跃迁蜘蛛的形态特征,以阐明真金鱼藻的通用限制,并允许对缺乏分子数据的属进行系统发育分类。在该亚科中有一百零八属。优尿素的通用族群和某些属的定界得到了详细的综述。为了探索在以前的分子系统发育研究中添加正式的形态学数据的效果,并发现形态上的同形异型,对203个真金鱼草属和7个外群种的82个形态学特征进行了评分。形态数据集在解决Euophryinae系统发育方面的表现不如分子数据集(基因28S,肌动蛋白5C; 16S-ND1,COI)好,这可能是由于频繁的会聚和逆转。正式的形态学数据被映射到系统发育上,以寻找突触形态,希望将系统发育扩展到包括没有分子数据的分类单元。由于同质性,很少发现全球适用的常绿植物进化枝形突触。然而,在亚科中局部独特的亚同型仍然有助于划定真金霉素的通用族群和属。提出了以下的优尿蛋白属的同义词:毛细支气管炎和Anasaitis;迪纳图斯与歌利亚Paradecta与Compsodecta; Cobanus,Chloridusa和Wallaba与Sidusa; Tariona和Mopiopia;带两栖类的Nebridia;灰头足虫和Siloca伴有眼球炎;羊齿草与Semnolius; Palpelius和Pristobaeus; Junxattus和Laufeia; Donoessus与Colyttus; Nicylla,Pselcis和Thianitara与Thiania。新属Saphrys是为南美洲南部放错地方的物种而竖立的。

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