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从伪装到警戒色的进化转变:隐藏信号起着关键作用。

Evolutionary transitions from camouflage to aposematism: Hidden signals play a pivotal role.

机构信息

Department of Biology, Carleton University, Ottawa, Ontario K1S 5B6, Canada.

Department of Agricultural Biotechnology, Seoul National University, Seoul 08826, South Korea.

出版信息

Science. 2023 Mar 17;379(6637):1136-1140. doi: 10.1126/science.ade5156. Epub 2023 Mar 16.

Abstract

The initial evolution of warning signals in unprofitable prey, termed aposematism, is often seen as a paradox because any new conspicuous mutant would be easier to detect than its cryptic conspecifics and not readily recognized by naïve predators as defended. One possibility is that permanent aposematism first evolved through species using hidden warning signals, which are only exposed to would-be predators on encounter. Here, we present a large-scale analysis of evolutionary transitions in amphibian antipredation coloration and demonstrate that the evolutionary transition from camouflage to aposematism is rarely direct but tends to involve an intermediary stage, namely cryptic species that facultatively reveal conspicuous coloration. Accounting for this intermediate step can resolve the paradox and thereby advance our understanding of the evolution of aposematism.

摘要

无利可图的猎物(被称为警戒色)中警告信号的最初进化常常被视为一个悖论,因为任何新的显眼突变体比其隐蔽的同种个体更容易被发现,并且不容易被天真的捕食者识别为具有防御能力。一种可能性是,永久性警戒色首先通过使用隐藏警告信号的物种进化而来,这些信号只有在遇到潜在的捕食者时才会暴露出来。在这里,我们对两栖动物防御颜色的进化转变进行了大规模分析,并证明了从伪装到警戒色的进化转变很少是直接的,而是倾向于涉及一个中间阶段,即具有条件性地显示出显眼颜色的隐蔽物种。考虑到这一中间步骤,可以解决这个悖论,从而增进我们对警戒色进化的理解。

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