Interaction between natural and sexual selection during the evolution of mate recognition

M. Blows
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引用次数: 98

Abstract

The interaction between natural and sexual selection is central to many theories of how mate choice and reproductive isolation evolve, but their joint effect on the evolution of mate recognition has not, to my knowledge, been investigated in an evolutionary experiment. Natural and sexual selection were manipulated in interspecific hybrid populations of Drosophila to determine their effects on the evolution of a mate recognition system comprised of cuticular hydrocarbons (CHCs). The effect of natural selection in isolation indicated that CHCs were costly for males and females to produce. The effect of sexual selection in isolation indicated that females preferred males with a particular CHC composition. However, the interaction between natural and sexual selection had a greater effect on the evolution of the mate recognition system than either process in isolation. When natural and sexual selection were permitted to operate in combination, male CHCs became exaggerated to a greater extent than in the presence of sexual selection alone, and female CHCs evolved against the direction of natural selection. This experiment demonstrated that the interaction between natural and sexual selection is critical in determining the direction and magnitude of the evolutionary response of the mate recognition system.
配偶识别进化过程中自然选择与性选择的相互作用
自然选择和性选择之间的相互作用是许多关于配偶选择和生殖隔离如何进化的理论的核心,但据我所知,它们对配偶识别进化的共同影响还没有在进化实验中得到研究。在果蝇种间杂交群体中操纵自然选择和性选择,以确定它们对由表皮碳氢化合物(CHCs)组成的配偶识别系统进化的影响。孤立的自然选择效应表明,雄性和雌性生产chc的成本都很高。孤立性选择效应表明,雌性偏好具有特定CHC组成的雄性。然而,自然选择和性选择之间的相互作用对配偶识别系统的进化的影响比单独的任何一个过程都要大。当自然选择和性选择同时作用时,雄性chc比单独存在性选择时更被夸大,而雌性chc则与自然选择的方向相反。该实验表明,自然选择和性选择之间的相互作用在决定配偶识别系统进化反应的方向和幅度方面至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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