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Phenotypic integration between antipredator behavior and camouflage pattern in juvenile sticklebacks

机译:幼年stick背上反捕食者行为与伪装模式之间的表型整合

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Predation is a strong selective force that promotes the evolution of antipredator behaviors and camouflage in prey animals. However, the independent evolution of single traits cannot explain how observed phenotypic variations of these traits are maintained within populations. We studied genetic and phenotypic correlations between antipredator behaviors (shoaling and risk-taking) and morphology traits (pigmentation and size) in juvenile three-spined sticklebacks by using pedigree-based quantitative genetic analysis to test phenotypic integration (or complex phenotype) as an evolutionary response to predation risk. Individuals with strongly melanized (i.e., camouflaged) phenotype and genotype were less sociable to conspecifics, but bolder during foraging under predation risk. Individuals with faster growing phenotype and genotype were bolder, and those with lager eyes were more fearful. These phenotypic integrations were not confounded with correlated plastic responses to predation risk because the phenotypes were measured in naive fish born in the laboratory, but originated from a natural population with predation pressure. Consistent selection for particular combinations of traits under predation pressure or pleiotropic genes might influence the maintenance of the genetic (co)variations and polymorphism in melanin color, growth trajectory, and behavior patterns.
机译:捕食是一种强大的选择性力量,可促进猎物中反掠食者行为和伪装的发展。然而,单一性状的独立进化不能解释群体中如何保持这些性状的表型变异。我们通过基于谱系的定量遗传分析来测试表型整合(或复杂表型)的进化,研究了青少年三棘背le的反掠食者行为(浅滩和冒险行为)与形态特征(色素沉着和大小)之间的遗传和表型相关性。应对捕食风险。具有强烈黑化(即被伪装)的表型和基因型的个体对同种型较不友好,但在有捕食风险的觅食过程中胆大。表型和基因型增长较快的个体更大胆,而眼睛较大的个体则更恐惧。这些表型整合并没有与对捕食风险的相关塑性反应相混淆,因为这些表型是在实验室出生的幼稚鱼中测得的,但来源于具有捕食压力的自然种群。在捕食压力或多效性基因下对特定性状组合的一致选择可能会影响黑色素颜色,生长轨迹和行为方式的遗传(共)变异和多态性的维持。

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