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拟态辐射的毒蛙产生颜色趋同的机制。

Mechanisms for Color Convergence in a Mimetic Radiation of Poison Frogs.

出版信息

Am Nat. 2020 May;195(5):E132-E149. doi: 10.1086/708157. Epub 2020 Apr 7.

Abstract

In animals, bright colors often evolve to mimic other species when a resemblance is selectively favored. Understanding the proximate mechanisms underlying such color mimicry can give insights into how mimicry evolves-for example, whether color convergence evolves from a shared set of mechanisms or through the evolution of novel color production mechanisms. We studied color production mechanisms in poison frogs (Dendrobatidae), focusing on the mimicry complex of . Using reflectance spectrometry, skin pigment analysis, electron microscopy, and color modeling, we found that the bright colors of these frogs, both within and outside the mimicry complex, are largely structural and produced by iridophores but that color production depends crucially on interactions with pigments. Color variation and mimicry are regulated predominantly by iridophore platelet thickness and, to a lesser extent, concentration of the red pteridine pigment drosopterin. Compared with each of the four morphs of model species that it resembles, displays greater variation in both structural and pigmentary mechanisms, which may have facilitated phenotypic divergence in this species. Analyses of nonmimetic dendrobatids in other genera demonstrate that these mechanisms are widespread within the family and that poison frogs share a complex physiological "color palette" that can produce diverse and highly reflective colors.

摘要

在动物中,当相似性被选择性地偏爱时,鲜艳的颜色通常会进化为模仿其他物种。了解这种颜色模仿的潜在机制可以深入了解模仿是如何进化的——例如,颜色趋同是源于一套共同的机制还是通过新的颜色产生机制的进化。我们研究了毒蛙(树蛙科)的颜色产生机制,重点研究了 的模仿复合物。通过反射光谱、皮肤色素分析、电子显微镜和颜色建模,我们发现这些青蛙的鲜艳颜色(无论是在模仿复合物内还是外)主要是结构色,由虹彩细胞产生,但颜色的产生取决于与色素的相互作用。颜色变化和模仿主要由虹彩细胞板层厚度调节,其次是红色喋呤色素蝶啶的浓度。与它所模仿的四个模型物种的每一个形态相比, 显示出在结构和色素机制方面更大的变化,这可能促进了该物种的表型分歧。对其他属中的非模仿树蛙的分析表明,这些机制在科内广泛存在,并且毒蛙共享一种复杂的生理“颜色调色板”,可以产生多样且高度反射的颜色。

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