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Phylogeny, divergence times and biogeography of window flies (Scenopinidae) and the therevoid clade (Diptera: Asiloidea)

机译:窗蝇(Scenopinidae)和避空进化枝(双翅目:Asiloidea)的系统发育,发散时间和生物地理学

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摘要

The evolution of the therevoid' clade, with an emphasis on window flies (Scenopinidae), is presented by combining DNA sequence data with morphological characters for living and fossil species. The therevoid clade represents a group of four families (Apsilocephalidae, Evocoidae, Scenopinidae and Therevidae) of lower brachyceran Diptera in the superfamily Asiloidea. A comprehensive phylogenetic analysis using parsimony and likelihood methods was undertaken using extensive taxon sampling from all families and subfamilies, and compared with outgroup taxa sampled from the related families Asilidae, Mydidae, Apioceridae and Empididae. Fifty-nine morphological characters (adult, larval and pupal) were combined with 6.4 kb of DNA sequences for two ribosomal genes (16S and 18S ribosomal DNA) and three protein-encoding genes [cytochrome oxidase I (COI), triose phosphate isomerase (TPI) and the CPSase region of carbamoyl-phosphate synthase-aspartate transcarbamoylase-dihydroorotase (CAD)]. Results from combined analyses of morphological and molecular data for 78 taxa representing all families of the therevoid clade are presented. Specific hypotheses of the relationship between respective families and subfamilies were tested statistically using four-cluster likelihood mapping. The therevoid clade is a well-supported monophyletic group within Asiloidea, with Evocoidae sister to Apsilocephalidae and Therevidae sister to Scenopinidae. Temporal and zoogeographical aspects of therevoid clade evolution were investigated using Bayesian divergence time estimates and Lagrange ancestral range scenarios. The effect of inclusion of fossils as terminal taxa on phylogenetic and divergence time estimation was investigated, with morphological scoring for fossil representatives included in the analyses rather than used simply as minimum age constraints. In each analysis there was either improvement in estimation, or only marginal and localized loss in tree resolution, and with younger estimates of divergence time across the tree. The historical biogeography of the therevoid clade was examined with multiple trans-Antarctic vicariance events between Australasia and South America evident during the Late Cretaceous to early Palaeogene. Scenopininae is newly subdivided into two tribes, Metatrichini trib.n. and Scenopinini Fallen stat.r. This published work has been registered in ZooBank, .
机译:通过将DNA序列数据与生物和化石物种的形态特征相结合,呈现出空巢进化枝的进化,重点是蝇蝇(Scenopinidae)。空洞的进化枝代表了超家族Asiloidea中下近曲臂双翅目的四个科((科,鹅口疮科,鞘翅目科和There科)。使用简约和似然方法进行了全面的系统发育分析,方法是使用所有家庭和亚科的广泛分类单元采样,并与从相关科Asilidae,Mydidae,Apioceridae和Empididae采样的外群分类单元进行比较。 59个形态特征(成人,幼虫和p)与6.4 kb的DNA序列结合,用于两个核糖体基因(16S和18S核糖体DNA)和三个蛋白质编码基因[细胞色素氧化酶I(COI),磷酸三糖异构酶(TPI) )和氨基甲酸酯磷酸合酶-天冬氨酸转氨甲酰酶二氢乳清酶(CAD)的CPSase区域]。给出了来自78个分类单元的形态学和分子数据的综合分析结果,这些分类单元代表了空巢枝的所有家族。使用四聚类似然作图法统计检验了各个家族和亚家族之间关系的特定假设。空洞的进化枝是天蛾科中一个得到良好支持的单系群,其中食蟹科为Ap头科的凤梨科姐妹,而鞘翅目为There科的姐妹科。使用贝叶斯发散时间估计和拉格朗日祖先范围方案调查了避免进化枝进化的时间和动物地理方面。研究了将化石作为终端生物分类对系统发育和发散时间估计的影响,分析中包括了对化石代表的形态评分,而不是简单地用作最小年龄限制。在每项分析中,要么提高了估计,要么仅提高了树分辨率的边际和局部损失,而且对树的发散时间的估计更年轻。在白垩纪晚期至古近纪早期,通过在大洋洲和南美之间发生的多次南极洲越洋事件,检查了避空进化枝的历史生物地理。鞘翅目新近分为两个部落,Metatrichinitrib.n。和Scenopinini Fallenstat.r。该发表的作品已在ZooBank中注册。

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