Meuthen Denis, Baldauf Sebastian A, Bakker Theo C M, Thünken Timo
Am Nat. 2018 Apr;191(4):475-490. doi: 10.1086/696264. Epub 2018 Feb 1.
The ability of organisms to plastically respond to changing environments is well studied. However, variation in phenotypic plasticity during ontogeny is less well understood despite its relevance of being an important source of phenotypic variation in nature. Here, we comprehensively study ontogenetic variation in morphological antipredator plasticity across multiple traits in Pelvicachromis taeniatus, a western African cichlid fish with sexually dimorphic ornamentation. In a split-clutch design, fish were raised under different levels of perceived predation risk (conspecific alarm cues or distilled water). Morphological plasticity varied substantially across ontogeny: it was first observable at an early juvenile stage where alarm cue-exposed fish grew faster. Subsequently, significant plasticity was absent until the onset of sexual maturity. Here, alarm cue-exposed males were larger than control males, which led to deeper bodies, longer dorsal spines, larger caudal peduncles, and increased eye diameters. Sexual ornamentation emerged delayed in alarm cue-exposed males. In later adulthood, the plastic responses receded. Despite small effect sizes, these responses represent putative adaptive plasticity, as they are likely to reduce predation risk. In females, we did not observe any plasticity. In accordance with theory, these results suggest fine-tuned expression of plasticity that potentially increases defenses during vulnerable developmental stages and reproductive output.
生物体对不断变化的环境进行可塑性响应的能力已得到充分研究。然而,尽管个体发育过程中的表型可塑性变异作为自然界中表型变异的一个重要来源具有相关性,但人们对其了解较少。在这里,我们全面研究了多斑丽鱼(Pelvicachromis taeniatus)形态学反捕食可塑性在个体发育过程中的变异,多斑丽鱼是一种具有两性异形装饰的西非丽鱼科鱼类。在一种裂巢设计中,将鱼饲养在不同程度的感知捕食风险(同种警报信号或蒸馏水)下。形态可塑性在个体发育过程中变化很大:在幼鱼早期阶段首次可观察到,暴露于警报信号的鱼生长得更快。随后,直到性成熟开始之前都没有显著的可塑性。在此阶段,暴露于警报信号的雄性比对照雄性更大,这导致身体更深、背棘更长、尾柄更大以及眼睛直径增加。暴露于警报信号的雄性的性装饰出现延迟。在成年后期,可塑性反应减弱。尽管效应量较小,但这些反应代表了假定的适应性可塑性,因为它们可能会降低捕食风险。在雌性中,我们未观察到任何可塑性。与理论一致,这些结果表明可塑性的精细表达可能会在脆弱的发育阶段增强防御并提高繁殖输出。