雄性攻击行为的分化进化:嗜极鱼类的另一生殖隔离屏障?

David Bierbach, Moritz Klein, Vanessa Saßmannshausen, Ingo Schlupp, Rüdiger Riesch, Jakob Parzefall, Martin Plath
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引用次数: 29

摘要

当来自外国栖息地的移民通过自然或(间)性选择(雌性配偶选择)而被淘汰时,在适应当地环境的种群中可能出现生殖隔离。我们的问题是,通过雌雄竞争进行的无性选择是否也会促进局部适应极端环境条件(即洞穴中的黑暗和/或有毒的硫化氢(H(2)S))的拟鳃鱼种群之间的生殖隔离。我们发现极端微生物P. oecilia mexicana的攻击性强烈降低,黑暗是进化中攻击性降低的最佳预测因子,特别是当与H(2)S结合时。我们证明,当与来自非硫化物地表栖息地的雄性配对时,攻击性的降低直接转化为迁徙雄性的劣势。相比之下,来自另一个硫化物泉地区的古老的硫特有P. suluraria的侵略性没有整体下降,可能表明进化机制更好地应对H(2)S。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Divergent evolution of male aggressive behaviour: another reproductive isolation barrier in extremophile poeciliid fishes?

Divergent evolution of male aggressive behaviour: another reproductive isolation barrier in extremophile poeciliid fishes?

Divergent evolution of male aggressive behaviour: another reproductive isolation barrier in extremophile poeciliid fishes?

Divergent evolution of male aggressive behaviour: another reproductive isolation barrier in extremophile poeciliid fishes?

Reproductive isolation among locally adapted populations may arise when immigrants from foreign habitats are selected against via natural or (inter-)sexual selection (female mate choice). We asked whether also intrasexual selection through male-male competition could promote reproductive isolation among populations of poeciliid fishes that are locally adapted to extreme environmental conditions [i.e., darkness in caves and/or toxic hydrogen sulphide (H(2)S)]. We found strongly reduced aggressiveness in extremophile P. oecilia mexicana, and darkness was the best predictor for the evolutionary reduction of aggressiveness, especially when combined with presence of H(2)S. We demonstrate that reduced aggression directly translates into migrant males being inferior when paired with males from non-sulphidic surface habitats. By contrast, the phylogenetically old sulphur endemic P. sulphuraria from another sulphide spring area showed no overall reduced aggressiveness, possibly indicating evolved mechanisms to better cope with H(2)S.

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