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是什么引发了颜色变化?背景颜色和温度对一种高山蚱蜢发育的影响。

What triggers colour change? Effects of background colour and temperature on the development of an alpine grasshopper.

作者信息

Valverde J Pablo, Schielzeth Holger

机构信息

Department of Evolutionary Biology, Bielefeld University, Morgenbreede 45, 33615, Bielefeld, Germany.

出版信息

BMC Evol Biol. 2015 Aug 21;15:168. doi: 10.1186/s12862-015-0419-9.

Abstract

BACKGROUND

Colour polymorphisms are a fascinating facet of many natural populations of plants and animals, and the selective processes that maintain such variation are as relevant as the processes which promote their development. Orthoptera, the insect group that encompasses grasshoppers and bush crickets, includes a particularly large number of species that are colour polymorphic with a marked green-brown polymorphism being particularly widespread. Colour polymorphism has been associated with the need for crypsis and background matching and background-dependent homochromy has been described in a few species. However, when and how different environmental conditions influence variation in colour remains poorly understood. Here we test for effects of background colour and ambient temperature on the occurrence of colour morph switches (green to brown or brown to green) and developmental darkening in the alpine dwelling club-legged grasshopper Gomphocerus sibiricus.

RESULTS

We monitored individually housed nymphae across three of their four developmental stages and into the first week after final ecdysis. Our data show an absence of colour morph switches in G. sibiricus, without a single switch observed in our sample. Furthermore, we test for an effect of temperature on colouration by manipulating radiant heat, a limiting factor in alpine habitats. Radiant heat had a significant effect on developmental darkening: individuals under low radiant heat tended to darken, while individuals under high radiant heat tended to lighten within nymphal stages. Young imagoes darkened under either condition.

CONCLUSIONS

Our results indicate a plastic response to a variable temperature and indicate that melanin, a multipurpose pigment responsible for dark colouration and presumed to be costly, seems to be strategically allocated according to the current environmental conditions. Unlike other orthopterans, the species is apparently unable to switch colour morphs (green/brown) during development, suggesting that colour morphs are determined genetically (or very early during development) and that other processes have to contribute to crypsis and homochromy in this species.

摘要

背景

颜色多态性是许多动植物自然种群中一个引人入胜的方面,维持这种变异的选择过程与促进其发展的过程同样重要。直翅目昆虫包括蚱蜢和螽斯,其中有特别多的物种具有颜色多态性,显著的绿褐色多态性尤为普遍。颜色多态性与拟态和背景匹配的需求有关,并且在少数物种中描述了背景依赖的同色现象。然而,不同环境条件何时以及如何影响颜色变异仍知之甚少。在这里,我们测试了背景颜色和环境温度对高山栖息的棒角蝗Gomphocerus sibiricus颜色形态转换(绿色到棕色或棕色到绿色)和发育性黑化的影响。

结果

我们在四个发育阶段中的三个阶段以及最后一次蜕皮后的第一周对单独饲养的若虫进行了监测。我们的数据显示,西伯利亚棒角蝗没有颜色形态转换,在我们的样本中未观察到一次转换。此外,我们通过操纵辐射热(高山栖息地的一个限制因素)来测试温度对体色的影响。辐射热对发育性黑化有显著影响:在低辐射热条件下的个体往往会变黑,而在高辐射热条件下的个体在若虫阶段往往会变浅。在任何一种条件下,年轻的成虫都会变黑。

结论

我们的结果表明对可变温度有可塑性反应,并且表明黑色素(一种负责深色且被认为成本高昂的多功能色素)似乎根据当前环境条件进行策略性分配。与其他直翅目昆虫不同,该物种在发育过程中显然无法转换颜色形态(绿色/棕色),这表明颜色形态是由基因决定的(或在发育早期),并且其他过程必须有助于该物种的拟态和同色现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a30/4546165/d41b69d9919d/12862_2015_419_Fig1_HTML.jpg

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