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粗糙的深色斑纹在功能上限制了草莓箭毒蛙从警戒色向保护色的适应性转变。

Coarse dark patterning functionally constrains adaptive shifts from aposematism to crypsis in strawberry poison frogs.

作者信息

Qvarnström Anna, Rudh Andreas, Edström Torkel, Ödeen Anders, Løvlie Hanne, Tullberg Birgitta S

机构信息

Animal Ecology, Department of Ecology and Genetics, Uppsala University, Norbyvägen 18D, 752 36 Uppsala, Sweden.

出版信息

Evolution. 2014 Oct;68(10):2793-803. doi: 10.1111/evo.12487. Epub 2014 Aug 15.

Abstract

Ecological specialization often requires tight coevolution of several traits, which may constrain future evolutionary pathways and make species more prone to extinction. Aposematism and crypsis represent two specialized adaptations to avoid predation. We tested whether the combined effects of color and pattern on prey conspicuousness functionally constrain or facilitate shifts between these two adaptations. We combined data from 17 natural populations of strawberry poison frogs, Oophaga pumilio with an experimental approach using digitalized images of frogs and chickens as predators. We show that bright coloration often co-occurs with coarse patterning among the natural populations. Dull green frogs with coarse patterning are rare in nature but in the experiment they were as easily detected as bright red frogs suggesting that this trait combination represents a transient evolutionary state toward aposematism. Hence, a gain of either bright color or coarse patterning leads to conspicuousness, but a transition back to crypsis would be functionally constrained in populations with both bright color and coarse patterning by requiring simultaneous changes in two traits. Thus, populations (or species) signaling aposematism by conspicuous color should be less likely to face an evolutionary dead end and more likely to radiate than populations with both conspicuous color and coarse patterning.

摘要

生态特化通常需要多个性状紧密协同进化,这可能会限制未来的进化路径,并使物种更容易灭绝。警戒色和保护色是两种用于避免被捕食的特殊适应方式。我们测试了颜色和图案对猎物显眼程度的综合影响在功能上是限制还是促进了这两种适应方式之间的转变。我们将来自草莓箭毒蛙(Oophaga pumilio)17个自然种群的数据与一种实验方法相结合,该实验方法使用青蛙的数字化图像以及鸡作为捕食者。我们发现,在自然种群中,鲜艳的颜色通常与粗糙的图案同时出现。带有粗糙图案的暗绿色青蛙在自然界中很罕见,但在实验中它们与鲜红色青蛙一样容易被发现,这表明这种性状组合代表了向警戒色转变的一个过渡进化状态。因此,获得鲜艳颜色或粗糙图案都会导致显眼,但对于既有鲜艳颜色又有粗糙图案的种群来说,要回到保护色则在功能上受到限制,因为这需要两个性状同时发生变化。所以,通过显眼颜色发出警戒信号的种群(或物种)比既有显眼颜色又有粗糙图案的种群更不容易面临进化死胡同,并且更有可能发生辐射演化。

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