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威氏果蝇亚组(双翅目:果蝇科)的分类界限、系统发育关系及生物地理学

Taxonomic boundaries, phylogenetic relationships and biogeography of the Drosophila willistoni subgroup (Diptera: Drosophilidae).

作者信息

Robe L J, Cordeiro J, Loreto E L S, Valente V L S

机构信息

Programa de Pós-Graduação em Genética e Biologia Molecular, Departamento de Genética, Universidade Federal do Rio Grande do Sul (UFRGS), CP 15053, Porto Alegre, Rio Grande do Sul, 91501-970, Brazil.

出版信息

Genetica. 2010 Jun;138(6):601-17. doi: 10.1007/s10709-009-9432-5. Epub 2010 Jan 6.

Abstract

The Drosophila willistoni subgroup represents a complex with varying taxonomic levels. It encompasses D. willistoni and its five sibling species: D. equinoxialis, D. insularis, D. paulistorum, D. pavlovskiana and D. tropicalis. Of these, D. equinoxialis, D. tropicalis and D. willistoni present differentiation at subspecific level, whereas D. paulistorum represents a superspecies, formed by six semispecies. Despite this taxonomic and evolutionary complexity, many of these semi and subspecific taxa have not yet had their phylogenetic status tested in an explicitly molecular study. Aiming to contribute to the understanding of the evolution of this challenging group, we analyzed nucleotide sequences from two mitochondrial and four nuclear datasets, both individually and simultaneously, through different phylogenetic methods. High levels of incongruence were detected among partitions, especially concerning the mitochondrial sequences. As this incongruence was found to be statistically significant and robust to the use of different models and approaches, and basically restricted to mitochondrial loci, we suggest that it may stem mainly from hybridization-mediated asymmetrical introgression. Despite this, our nuclear data finally led to a phylogenetic hypothesis which further refines several aspects related to the willistoni subgroup phylogeny. In this respect, D. insularis, D. tropicalis, D. willistoni and D. equinoxialis successively branched off from the willistoni subgroup main stem, which recently subdivided to produce D. paulistorum and D. pavlovskiana. As regards the semispecies evolution, we found evidence of a recent diversification, which highly influenced the obtained results due to the associated small levels of genetic differentiation, further worsened by the possibly associated incompletely sorted ancestral polymorphisms and by the possibility of introgression. This study also raises the question of whether these semispecies are monophyletic at all. This reasoning is particularly interesting when one considers that similar levels of reproductive isolation could be attained through infection with different Wolbachia strains.

摘要

威氏果蝇亚群代表了一个具有不同分类水平的复合体。它包括威氏果蝇及其五个近缘种:赤道果蝇、岛屿果蝇、圣保罗果蝇、帕夫洛夫斯基果蝇和热带果蝇。其中,赤道果蝇、热带果蝇和威氏果蝇在亚种水平上存在分化,而圣保罗果蝇代表一个由六个半种形成的超种。尽管存在这种分类学和进化上的复杂性,但这些半种和亚种分类单元中的许多尚未在明确的分子研究中检验其系统发育地位。为了有助于理解这个具有挑战性的类群的进化,我们通过不同的系统发育方法,分别和同时分析了来自两个线粒体和四个核数据集的核苷酸序列。在各分区之间检测到高度不一致,特别是关于线粒体序列。由于发现这种不一致在统计上是显著的,并且对使用不同模型和方法具有稳健性,并且基本上仅限于线粒体基因座,我们认为它可能主要源于杂交介导的不对称基因渗入。尽管如此,我们的核数据最终得出了一个系统发育假说,该假说进一步完善了与威氏果蝇亚群系统发育相关的几个方面。在这方面,岛屿果蝇、热带果蝇、威氏果蝇和赤道果蝇相继从威氏果蝇亚群的主干分支出来,主干最近细分产生了圣保罗果蝇和帕夫洛夫斯基果蝇。关于半种的进化,我们发现了近期多样化的证据,由于相关的低水平遗传分化,以及可能相关的不完全分选的祖先多态性和基因渗入的可能性,这对获得的结果产生了很大影响。这项研究还提出了这些半种是否根本是单系的问题。当考虑到通过感染不同的沃尔巴克氏体菌株可以达到相似水平的生殖隔离时,这种推理尤其有趣。

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