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为何会有多种可塑性反应?北美蓝凤蝶幼虫颜色变化与避热行为之间的相互作用

Why Have Multiple Plastic Responses? Interactions between Color Change and Heat Avoidance Behavior in Battus philenor Larvae.

作者信息

Nielsen Matthew E, Papaj Daniel R

出版信息

Am Nat. 2017 Jun;189(6):657-666. doi: 10.1086/691536. Epub 2017 Mar 28.

DOI:10.1086/691536
PMID:28514633
Abstract

Having multiple plastic responses to a change in the environment, such as increased temperature, can be adaptive for two major reasons: synergy (the plastic responses perform better when expressed simultaneously) or complementarity (each plastic response provides a greater net benefit in a different environmental context). We investigated these hypotheses for two forms of temperature-induced plasticity of Battus philenor caterpillars in southern Arizona populations: color change (from black to red at high temperatures) and heat avoidance behavior (movement from host to elevated refuges at high host temperatures). Field assays using aluminum models showed that the cooling effect of the red color is greatly reduced in a refuge position relative to that on a host. Field assays with live caterpillars demonstrated that refuge seeking is much more important for survival under hot conditions than coloration; however, in those assays, red coloration reduced the need to seek refuges. Our results support the complementarity hypothesis: refuge seeking facilitates survival during daily temperature peaks, while color change reduces the need to leave the host over longer warm periods. We propose that combinations of rapid but costly short-term behavioral responses and slow but efficient long-term morphological responses may be common when coping with temperature change.

摘要

对环境变化(如温度升高)具有多种可塑性反应可能出于两个主要原因而具有适应性:协同作用(当同时表达时,可塑性反应表现得更好)或互补性(每种可塑性反应在不同的环境背景下提供更大的净收益)。我们针对亚利桑那州南部种群中菲勒诺凤蝶毛虫的两种温度诱导可塑性形式研究了这些假设:颜色变化(在高温下从黑色变为红色)和避热行为(在寄主温度较高时从寄主转移到高处的避难所)。使用铝制模型进行的田间试验表明,相对于寄主上的红色,避难所位置的红色降温效果大大降低。对活毛虫进行的田间试验表明,在炎热条件下寻找避难所对生存比体色更重要;然而,在那些试验中,红色体色减少了寻找避难所的需求。我们的结果支持互补性假设:寻找避难所有助于在每日温度峰值期间生存,而颜色变化减少了在较长温暖时期离开寄主的需求。我们提出,在应对温度变化时,快速但代价高昂的短期行为反应和缓慢但高效的长期形态反应的组合可能很常见。

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