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感官驱动、颜色与色觉

Sensory Drive, Color, and Color Vision.

作者信息

Price Trevor D

出版信息

Am Nat. 2017 Aug;190(2):157-170. doi: 10.1086/692535. Epub 2017 Jun 15.

Abstract

Colors often appear to differ in arbitrary ways among related species. However, a fraction of color diversity may be explained because some signals are more easily perceived in one environment rather than another. Models show that not only signals but also the perception of signals should regularly evolve in response to different environments, whether these primarily involve detection of conspecifics or detection of predators and prey. Thus, a deeper understanding of how perception of color correlates with environmental attributes should help generate more predictive models of color divergence. Here, I briefly review our understanding of color vision in vertebrates. Then I focus on opsin spectral tuning and opsin expression, two traits involved in color perception that have become amenable to study. I ask how opsin tuning is correlated with ecological differences, notably the light environment, and how this potentially affects perception of conspecific colors. Although opsin tuning appears to evolve slowly, opsin expression levels are more evolutionarily labile but have been difficult to connect to color perception. The challenge going forward will be to identify how physiological differences involved in color vision, such as opsin expression levels, translate into perceptual differences, the selection pressures that have driven those differences, and ultimately how this may drive evolution of conspecific colors.

摘要

在亲缘关系相近的物种中,颜色差异往往呈现出随意性。然而,部分颜色多样性可以得到解释,因为某些信号在一种环境中比在另一种环境中更容易被感知。模型表明,不仅信号,而且信号的感知也应随着不同环境而不断进化,无论这些环境主要涉及同种个体的识别还是捕食者与猎物的识别。因此,更深入地理解颜色感知与环境属性之间的关联,应有助于生成更具预测性的颜色分化模型。在此,我简要回顾一下我们对脊椎动物颜色视觉的理解。然后,我将重点关注视蛋白光谱调谐和视蛋白表达,这是颜色感知中两个易于研究的相关特征。我将探讨视蛋白调谐如何与生态差异相关联,特别是与光环境的关联,以及这如何潜在地影响对同种颜色的感知。尽管视蛋白调谐似乎进化缓慢,但视蛋白表达水平在进化上更不稳定,且一直难以与颜色感知联系起来。未来的挑战将是确定颜色视觉中涉及的生理差异,如视蛋白表达水平,如何转化为感知差异、驱动这些差异的选择压力,以及最终这如何推动同种颜色的进化。

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