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利用 28S rRNA、COX1 和 EF-1α 对麻蝇和狂蝇(双翅目:Calliphoridae)的分子系统发育研究:对双翅目寄生进化的深入了解。

The molecular systematics of blowflies and screwworm flies (Diptera: Calliphoridae) using 28S rRNA, COX1 and EF-1α: insights into the evolution of dipteran parasitism.

机构信息

College of Life and Environmental Sciences, University of Exeter, Stocker Road, Exeter EX44QD, UK.

出版信息

Parasitology. 2011 Nov;138(13):1760-77. doi: 10.1017/S0031182011001089. Epub 2011 Aug 26.

DOI:10.1017/S0031182011001089
PMID:21867590
Abstract

The Calliphoridae include some of the most economically significant myiasis-causing flies in the world - blowflies and screwworm flies - with many being notorious for their parasitism of livestock. However, despite more than 50 years of research, key taxonomic relationships within the family remain unresolved. This study utilizes nucleotide sequence data from the protein-coding genes COX1 (mitochondrial) and EF1α (nuclear), and the 28S rRNA (nuclear) gene, from 57 blowfly taxa to improve resolution of key evolutionary relationships within the family Calliphoridae. Bayesian phylogenetic inference was carried out for each single-gene data set, demonstrating significant topological difference between the three gene trees. Nevertheless, all gene trees supported a Calliphorinae-Luciliinae subfamily sister-lineage, with respect to Chrysomyinae. In addition, this study also elucidates the taxonomic and evolutionary status of several less well-studied groups, including the genus Bengalia (either within Calliphoridae or as a separate sister-family), genus Onesia (as a sister-genera to, or sub-genera within, Calliphora), genus Dyscritomyia and Lucilia bufonivora, a specialised parasite of frogs and toads. The occurrence of cross-species hybridisation within Calliphoridae is also further explored, focusing on the two economically significant species Lucilia cuprina and Lucilia sericata. In summary, this study represents the most comprehensive molecular phylogenetic analysis of family Calliphoridae undertaken to date.

摘要

丽蝇科包括世界上一些最重要的经济意义上的蝇蛆病致病蝇类——麻蝇和螺旋蝇,其中许多以寄生牲畜而臭名昭著。然而,尽管已经进行了 50 多年的研究,但该家族内的关键分类学关系仍未得到解决。本研究利用来自 57 种丽蝇类的蛋白质编码基因 COX1(线粒体)和 EF1α(核)以及 28S rRNA(核)的核苷酸序列数据,以提高丽蝇科内关键进化关系的分辨率。对每个单基因数据集进行贝叶斯系统发育推断,证明了这三个基因树之间存在显著的拓扑差异。尽管如此,所有基因树都支持丽蝇亚科-丽蝇亚科的姐妹系,相对于花蝇亚科。此外,本研究还阐明了几个研究较少的群体的分类和进化地位,包括 Bengalia 属(要么在丽蝇科内,要么作为一个单独的姐妹科)、Onesia 属(作为 Calliphora 的姐妹属/亚属)、Dyscritomyia 属和 Lucilia bufonivora,这是一种专门寄生青蛙和蟾蜍的物种。丽蝇科内的种间杂交也进一步得到了探索,重点是两种具有重要经济意义的物种 Lucilia cuprina 和 Lucilia sericata。总之,本研究代表了迄今为止对丽蝇科进行的最全面的分子系统发育分析。

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