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三种近缘蝴蝶幼虫行为和热反应规范的趋异和个体发育耦合。

Divergence and ontogenetic coupling of larval behaviour and thermal reaction norms in three closely related butterflies.

机构信息

Department of Zoology, Stockholm University, Stockholm, Sweden.

出版信息

Proc Biol Sci. 2011 Jan 22;278(1703):313-20. doi: 10.1098/rspb.2010.1398. Epub 2010 Aug 18.

Abstract

Genetic trade-offs such as between generalist-specialist strategies can be masked by changes in compensatory processes involving energy allocation and acquisition which regulation depends on the state of the individual and its ecological surroundings. Failure to account for such state dependence may thus lead to misconceptions about the trade-off structure and nature of constraints governing reaction norm evolution. Using three closely related butterflies, we first show that foraging behaviours differ between species and change remarkably throughout ontogeny causing corresponding differences in the thermal niches experienced by the foraging larvae. We further predicted that thermal reaction norms for larval growth rate would show state-dependent variation throughout development as a result of selection for optimizing feeding strategies in the respective foraging niches of young and old larvae. We found substantial developmental plasticity in reaction norms that was species-specific and reflected the different ontogenetic niche shifts. Any conclusions regarding constraints on performance curves or species-differentiation in thermal physiology depend on when reaction norms were measured. This demonstrates that standardized estimates at single points in development, or in general, allow variation in only one ecological dimension, may sometimes provide incomplete information on reaction norm constraints.

摘要

遗传权衡,如一般性策略和专门性策略之间的权衡,可以被涉及能量分配和获取的补偿过程的变化所掩盖,而这种调节取决于个体的状态及其生态环境。如果不能考虑到这种状态依赖性,可能会导致对权衡结构和约束反应规范进化的性质的误解。使用三种密切相关的蝴蝶,我们首先表明,觅食行为在物种之间存在差异,并在整个个体发育过程中发生显著变化,导致觅食幼虫经历的热生态位相应差异。我们进一步预测,由于在年轻和年老幼虫的各自觅食生态位中优化觅食策略的选择,幼虫生长率的热反应规范在整个发育过程中会表现出状态依赖性变化。我们发现反应规范具有显著的发育可塑性,这种可塑性具有物种特异性,并反映了不同的个体发育生态位转移。任何关于性能曲线的约束或热生理学物种分化的结论都取决于何时测量反应规范。这表明,在发展的单一时间点或一般情况下进行标准化估计,仅允许在一个生态维度上变化,有时可能会提供关于反应规范约束的不完整信息。

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