The genetic basis of female mate preference and species isolation in Drosophila.

Meghan Laturney, Amanda J Moehring
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引用次数: 40

Abstract

The processes that underlie mate choice have long fascinated biologists. With the advent of increasingly refined genetic tools, we are now beginning to understand the genetic basis of how males and females discriminate among potential mates. One aspect of mate discrimination of particular interest is that which isolates one species from another. As behavioral isolation is thought to be the first step in speciation, and females are choosy more often than males in this regard, identifying the genetic variants that influence interspecies female mate choice can enhance our understanding of the process of speciation. Here, we review the literature on female mate choice in the most widely used model system for studies of species isolation Drosophila. Although females appear to use the same traits for both within- and between-species female mate choice, there seems to be a different genetic basis underlying these choices. Interestingly, most genomic regions that cause females to reject heterospecific males fall within areas of low recombination. Likely, candidate genes are those that act within the auditory or olfactory system, or within areas of the brain that process these systems.

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果蝇雌性择偶偏好和物种隔离的遗传基础。
长期以来,生物学家一直对配偶选择背后的过程着迷。随着日益完善的基因工具的出现,我们现在开始了解男性和女性如何区分潜在伴侣的基因基础。配偶歧视的一个特别有趣的方面是将一个物种与另一个物种隔离开来。由于行为隔离被认为是物种形成的第一步,而雌性在这方面比雄性更挑剔,确定影响物种间雌性配偶选择的遗传变异可以增强我们对物种形成过程的理解。在此,我们回顾了在果蝇物种隔离研究中应用最广泛的模型系统中关于雌性配偶选择的文献。尽管雌性似乎在物种内和物种间选择配偶时使用相同的特征,但这些选择背后似乎有不同的遗传基础。有趣的是,大多数导致雌性拒绝异种雄性的基因组区域位于低重组区域。候选基因很可能是那些在听觉或嗅觉系统中起作用的基因,或者在处理这些系统的大脑区域中起作用的基因。
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