首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic relationships between fungus-associated Neotropical species of the genera Hirtodrosophila, Mycodrosophila and Zygothrica (Diptera, Drosophilidae), with insights into the evolution of breeding sites usage
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Phylogenetic relationships between fungus-associated Neotropical species of the genera Hirtodrosophila, Mycodrosophila and Zygothrica (Diptera, Drosophilidae), with insights into the evolution of breeding sites usage

机译:属Hirtodrosophila,Mycodroosophila和Zygotrica(Diptera,Drosophilidae)的真菌相关新诊所的系统发育关系,探讨育种网站的进化

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摘要

The Neotropical region harbors an astonishing diversity of species, but still encompasses the least studied biogeographic region of the world. These properties apply for different taxonomic groups, and can be exemplified by drosophilids. In fact, high levels of cryptic diversity have recently been discovered for Neotropical species of the Zygothrica genus group, but relationships among these species, or them and other Drosophilidae species still remains to be addressed. Therefore, the aim of this study was to evaluate the phylogenetic relationships between fungus-associated Neotropical species of the genera Hirtodrosophila, Mycodrosophila and Zygothrica, which together with Paramycodrosophila and Paraliodrosophila compose the Zygothrica genus group. For this, fragments of the mitochondrial cytochrome oxidase subunits I (COI) and II (COII) genes, and the nuclear alpha methyldopa (Amd) and dopa decarboxylase (Ddc) genes were newly characterized for 43 Neotropical specimens of fungus-associated drosophilids, and analyzed in the context of 51 additional Drosophilinae sequences plus one Steganinae outgroup. Based on the resulting phylogeny, the evolution of breeding sites usage was also evaluated through ancestral character reconstructions. Our results revealed the Zygothrica genus group as a monophyletic lineage of Drosophila that branches after the subgenera Sophophora and Drosophila. Within this lineage, Mycodrosophila species seem to encompass the early offshoot, followed by a grade of Hirtodrosophila species, with derived branches mostly occupied by representatives of Zygothrica. This genus, in particular, was subdivided into five major clades, two of which include species of Hirtodrosophila, whose generic status needs to be reevatuated. According to our results, the use of fungi as breeding sites encompasses a symplesiomorphy for the Zygothrica genus group, since one of the recovered clades is currently specialized in using flowers as breeding sites whereas a sole species presents a reversal to the use of fruits of a plant of Gentianales. So, in general, this study supports the paraphyly of Drosophila in relation to fungus-associated Neotropical species of Drosophilidae, providing the first molecular insights into the phylogenetic patterns related to the evolution of this diverse group of species and some of its characteristic traits.
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著录项

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  • 作者单位

    Univ Fed Rio Grande FURG Programa Posgrad Biol Ambientes Aquat Continentai Av Italia Km 08 Campus Carreiros BR-96203900 Rio Grande RS Brazil;

    Univ Fed Santa Maria Programa Posgrad Biodiversidade Anim Ave Roraima 1000 BR-97105900 Santa Maria RS Brazil;

    Univ Fed Santa Maria Programa Posgrad Biodiversidade Anim Ave Roraima 1000 BR-97105900 Santa Maria RS Brazil;

    Univ Fed Pelotas UFPel Inst Biol Dept Ecol Zool &

    Genet Campus Capao do Leao Mail Box 354 BR-96010900 Capao Do Leao RS Brazil;

    Univ Fed Rio Grande FURG Programa Posgrad Biol Ambientes Aquat Continentai Av Italia Km 08 Campus Carreiros BR-96203900 Rio Grande RS Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 进化遗传学;
  • 关键词

    Zygothrica genus group; Amd; Ddc; COI; COII;

    机译:Zygothrica赛群;AMD;DDC;COI;COII;
  • 入库时间 2022-08-20 18:27:23

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