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Evolution of the fast start response in the cavefish Astyanax mexicanus

机译:穴居鱼Astyanax mexicanus快速启动反应的演变

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摘要

The extreme sensory environment of subterranean caves presents an adaptive challenge for troglobitic organisms. Although caves provide distinct selective pressures (e.g., darkness, food scarcity), advantages often come with living in isolated places. The cave-adapted (hypogean) form of the teleost Astyanax mexicanus lacks predators in its natural environment, unlike its ancestral surface (epigean) form that inhabits the nearby rivers. This species provides a unique opportunity for comparative studies because A. mexicanus has invaded the cave environment multiple times, providing us with independent comparative adaptive experiments. Here, we examine kinematic parameters that characterize the escape responses of various forms of A. mexicanus. We demonstrate that populations differ in details of fast start performance, but that surface fish do not perform better than cavefish in escape responses. Our results are more consistent with genetic drift or divergent selection among caves than with relaxation of selection in determining the evolution of escape behavior in this system.
机译:地下洞穴的极端感官环境对穴居生物提出了适应性挑战。尽管洞穴提供了不同的选择性压力(例如,黑暗,食物短缺),但居住在偏僻的地方通常会带来好处。硬骨型Astyanax mexicanus的适应洞穴的(hypogean)形式在其自然环境中缺乏食肉动物,这与其居住在附近河流中的祖先表面(上陆)形式不同。该物种为比较研究提供了独特的机会,因为墨西哥曲霉多次入​​侵洞穴环境,从而为我们提供了独立的比较适应性实验。在这里,我们检查运动学参数,表征各种形式的墨西哥曲霉的逃避反应。我们证明了种群在快速启动性能的细节上有所不同,但是在逃避响应中,表面鱼类的表现并不比穴居鱼类好。在确定该系统逃逸行为的演变过程中,我们的结果与洞穴间的遗传漂移或发散选择相比,与放松选择更加一致。

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