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Phylogenetic relationships and taxonomic ranking of pipizine flower flies (Diptera: Syrphidae) with implications for the evolution of aphidophagy

机译:哌齐嗪花蝇(双翅目:Syrphidae)的亲缘关系和分类学等级对蚜虫的进化有影响

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摘要

The taxonomic rank and phyloaenetic relationships of the pipizine flower 11. (Diptera: Syrphidae: Pipizin) were estimated based on DNA sequence data from three gene regions (CO1, 28S and 18S) and 111 adult morphological characters. Pipizini has been treated as a member of the subfamily Eristalinae based on diagnostic adult morphological characteristics, while the larval feeding mode and morphology is shared with members of the subfamily Syrphinae. We analysed each dataset, both separately and combined, in a total evidence approach under maximum parsimony and maximum likelihood. To evaluate the influence of different alignment strategies of rDNA 28S and 18S genes on the resulting topologies, we compared the topologies inferred from a multiple alignment using fast Fourier transform (MAFFT) program with those topologies resulting from aligning the secondary structure of these rDNA genes. Total evidence analyses resolved pipizines as a sister group of the subfamily Syrphinae. Although the structural alignment and the MAFFT alignment differed in the inferred relationships of some clades and taxa, there was congruence in the placement of pipizines. The homogeneous morphology of the Pipizini clade in combination with their unique combination of characters among the Syrphidae suggest a change of rank to subfamily. Thus, we propose to divide Syrphidae into four subfamilies, including the subfamily Pipizinae stat. rev. (C) The Willi Hennig Society 2015.
机译:根据来自三个基因区域(CO1、28S和18S)的DNA序列数据和111个成年形态特征,估计了pipizine花11(双翅目:Syrphidae:Pipizin)的分类学等级和系统发育关系。根据诊断的成人形态特征,皮比齐尼已被视为埃里斯特氏菌亚科的成员,而幼虫的喂养方式和形态则与Syrphinae亚科的成员共有。我们采用最大证据和最大似然的全证据方法分析了每个数据集,无论是单独还是合并。为了评估rDNA 28S和18S基因的不同比对策略对所得拓扑的影响,我们将使用快速傅里叶变换(MAFFT)程序从多重比对推断出的拓扑与比对这些rDNA基因的二级结构所产生的拓扑进行了比较。全面的证据分析了解析后的吡吡嗪作为Syrphinae亚科的姐妹群体。尽管在某些进化枝和类群的推论关系中,结构比对和MAFFT比对有所不同,但哌吡嗪的位置却是一致的。 Pipizini进化枝的同质形态及其在Syrphidae中的独特特征组合表明,亚科的等级有所变化。因此,我们建议将Syrphidae分为四个亚科,包括Pipizinae stat亚科。转速(C)威利·亨尼格学会2015年。

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