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杀雄细菌引发了雄性疲劳加剧和雌性滥交的循环。

Male-killing bacteria trigger a cycle of increasing male fatigue and female promiscuity.

作者信息

Charlat Sylvain, Reuter Max, Dyson Emily A, Hornett Emily A, Duplouy Anne, Davies Neil, Roderick George K, Wedell Nina, Hurst Gregory D D

机构信息

Department of Biology, University College London, 4 Stephenson Way, London NW1 2HE, United Kingdom.

出版信息

Curr Biol. 2007 Feb 6;17(3):273-7. doi: 10.1016/j.cub.2006.11.068.

Abstract

Sex-ratio distorters are found in numerous species and can reach high frequencies within populations. Here, we address the compelling, but poorly tested, hypothesis that the sex ratio bias caused by such elements profoundly alters their host's mating system. We compare aspects of female and male reproductive biology between island populations of the butterfly Hypolimnas bolina that show varying degrees of female bias, because of a male-killing Wolbachia infection. Contrary to expectation, female bias leads to an increase in female mating frequency, up to a point where male mating capacity becomes limiting. We show that increased female mating frequency can be explained as a facultative response to the depleted male mating resources in female biased populations. In other words, this system is one where male-killing bacteria trigger a vicious circle of increasing male fatigue and female promiscuity.

摘要

性别比例扭曲者在众多物种中都有发现,并且在种群中能够达到很高的频率。在此,我们探讨一个引人关注但鲜有验证的假说,即此类因素导致的性别比例偏差会深刻改变其宿主的交配系统。我们比较了因感染杀雄沃尔巴克氏体而呈现出不同程度雌性偏向的玻利尼西亚赤蛱蝶岛屿种群中雌性和雄性生殖生物学的各个方面。与预期相反,雌性偏向导致雌性交配频率增加,直至雄性交配能力成为限制因素。我们表明,雌性交配频率的增加可以解释为雌性偏向种群中雄性交配资源枯竭后的一种适应性反应。换句话说,这个系统是杀雄细菌引发雄性疲劳加剧和雌性滥交恶性循环的系统。

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