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食菌果蝇与其霍华德线虫寄生虫之间的关联:一场全球范围的系统发育洗牌。

Associations between mycophagous Drosophila and their Howardula nematode parasites: a worldwide phylogenetic shuffle.

作者信息

Perlman Steve J, Spicer Greg S, Shoemaker D Dewayne, Jaenike John

机构信息

Department of Ecology and Evolutionary Biology, Biological Sciences West, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Mol Ecol. 2003 Jan;12(1):237-49. doi: 10.1046/j.1365-294x.2003.01721.x.

Abstract

Little is known about what determines patterns of host association of horizontally transmitted parasites over evolutionary timescales. We examine the evolution of associations between mushroom-feeding Drosophila flies (Diptera: Drosophilidae), particularly in the quinaria and testacea species groups, and their horizontally transmitted Howardula nematode parasites (Tylenchida: Allantonematidae). Howardula species were identified by molecular characterization of nematodes collected from wild-caught flies. In addition, DNA sequence data is used to infer the phylogenetic relationships of both host Drosophila (mtDNA: COI, II, III) and their Howardula parasites (rDNA: 18S, ITS1; mtDNA: COI). Host and parasite phylogenies are not congruent, with patterns of host association resulting from frequent and sometimes rapid host colonizations. Drosophila-parasitic Howardula are not monophyletic, and host switches have occurred between Drosophila and distantly related mycophagous sphaerocerid flies. There is evidence for some phylogenetic association between parasites and hosts, with some nematode clades associated with certain host lineages. Overall, these host associations are highly dynamic, and appear to be driven by a combination of repeated opportunities for host colonization due to shared breeding sites and large potential host ranges of the nematodes.

摘要

在进化时间尺度上,关于决定水平传播寄生虫宿主关联模式的因素,我们所知甚少。我们研究了以蘑菇为食的果蝇(双翅目:果蝇科),特别是quinaria和testacea物种组与其水平传播的Howardula线虫寄生虫(垫刃目:异皮线虫科)之间关联的进化。通过对从野外捕获的果蝇中收集的线虫进行分子鉴定来识别Howardula物种。此外,DNA序列数据用于推断宿主果蝇(线粒体DNA:COI、II、III)及其Howardula寄生虫(核糖体DNA:18S、ITS1;线粒体DNA:COI)的系统发育关系。宿主和寄生虫的系统发育不一致,宿主关联模式是由频繁且有时快速的宿主定殖导致的。果蝇寄生的Howardula不是单系的,并且在果蝇和远缘的食菌小粪蝇之间发生了宿主转换。有证据表明寄生虫和宿主之间存在一些系统发育关联,一些线虫类群与某些宿主谱系相关。总体而言,这些宿主关联是高度动态的,似乎是由共享繁殖地点以及线虫潜在宿主范围大导致的宿主定殖的反复机会共同驱动的。

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