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Evolutionary ecology of chemosensation and its role in sensory drive

机译:化学感觉的进化生态及其在感觉驱动中的作用

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摘要

All behaviors of an organism are rooted in sensory processing of signals from its environment, and natural selection shapes sensory adaptations to ensure successful detection of cues that maximize fitness. Sensory drive, or divergent selection for efficient signal transmission among heterogeneous environments, has been a useful hypothesis for describing sensory adaptations, but its current scope has primarily focused on visual and acoustic sensory modalities. Chemosensation, the most widespread sensory modality in animals that includes the senses of smell and taste, is characterized by rapid evolution and has been linked to sensory adaptations to new environments in numerous lineages. Yet, olfaction and gustation have been largely underappreciated in light of the sensory drive hypothesis. Here, we examine why chemosensory systems have been overlooked and discuss the potential of chemosensation to shed new insight on the sensory drive hypothesis and vice versa. We provide suggestions for developing a framework to better incorporate studies of chemosensory adaptation that have the potential to shape a more complete, coherent, and holistic interpretation of the sensory drive.
机译:生物体的所有行为都源于其环境信号的感官处理,自然选择会影响感官适应性,以确保成功检测到可以最大程度提高适应性的线索。感觉驱动或在异构环境之间进行有效信号传输的发散选择一直是描述感觉适应的有用假设,但其当前范围主要集中在视觉和听觉感觉模态上。化学感觉是动物中最普遍的感觉方式,包括嗅觉和味觉,其特点是快速进化,并与多种世系对新环境的感觉适应有关。然而,根据感觉驱动假设,嗅觉和味觉在很大程度上未被重视。在这里,我们研究了为什么化学感应系统被忽略了,并讨论了化学感应的潜力,从而对感觉驱动假设提出了新的认识,反之亦然。我们提供了一些建议,以开发一个框架,以更好地整合对化学感觉适应性的研究,从而有可能形成对感觉驱动力的更完整,连贯和整体的解释。

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