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自然种群中雄性杀手抑制作用的进化。

Evolution of male-killer suppression in a natural population.

作者信息

Hornett Emily A, Charlat Sylvain, Duplouy Anne M R, Davies Neil, Roderick George K, Wedell Nina, Hurst Gregory D D

机构信息

Department of Biology, University College London, London, United Kingdom.

出版信息

PLoS Biol. 2006 Sep;4(9):e283. doi: 10.1371/journal.pbio.0040283.

Abstract

Male-killing bacteria are widespread in arthropods, and can profoundly alter the reproductive biology of their host species. Here we detail the first case of complete suppression of a male killer. The nymphalid butterfly Hypolimnas bolina is infected with a strain of the bacterium Wolbachia, wBol1, which kills male host embryos in Polynesian populations, but does not do so in many areas of Southeast Asia, where both males and female adults are naturally infected, and wBol1-infected females produce a 1:1 sex ratio. We demonstrate that absence of male killing by wBol1 is associated with dominant zygotic suppression of the action of the male killer. Simulations demonstrate host suppressors of male-killer action can spread very rapidly, and historical data indicating the presence of male killing in Southeast Asia in the very recent past suggests suppressor spread has been a very recent occurrence. Thus, male killer/host interactions are much more dynamic than previously recognised, with rapid and dramatic loss of the phenotype. Our results also indicate that suppression can render male killers completely quiescent, leading to the conclusion that some species that do not currently express a male killer may have done so in the past, and thus that more species have had their biology affected by these parasites than previously believed.

摘要

杀雄细菌在节肢动物中广泛存在,并且能够深刻改变其宿主物种的生殖生物学特性。在此,我们详细阐述了首例完全抑制杀雄现象的案例。蛱蝶科蝴蝶玻利维亚苎麻蛱蝶感染了一种名为沃尔巴克氏体(Wolbachia)的细菌菌株wBol1,该菌株在波利尼西亚种群中会杀死雄性宿主胚胎,但在东南亚的许多地区却不会,在这些地区,成年雌雄个体都会自然感染wBol1,且感染wBol1的雌性会产生1:1的性别比例。我们证明,wBol1不存在杀雄现象与雄性杀手作用的显性合子抑制有关。模拟结果表明,雄性杀手作用的宿主抑制因子能够非常迅速地传播,而历史数据表明,东南亚地区在最近才出现杀雄现象,这表明抑制因子的传播是最近才发生的。因此,雄性杀手与宿主之间的相互作用比之前认为的更加动态,其表型会迅速且显著地消失。我们的研究结果还表明,抑制作用能够使雄性杀手完全静止,由此得出结论:一些目前未表现出杀雄现象的物种,过去可能曾有过这种现象,因此,受这些寄生虫影响其生物学特性的物种比之前认为的更多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38ea/1569650/f777baf283a3/pbio.0040283.g001.jpg

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