Grünbaum Thomas, Cloutier Richard, Mabee Paula M, Le François Nathalie R
Laboratoire de Biologie Evolutive, Université du Québec à Rimouski, Rimouski, Québec, Canada.
J Exp Zool B Mol Dev Evol. 2007 Jul 15;308(4):396-408. doi: 10.1002/jez.b.21163.
Environmental conditions such as temperature and water velocity may induce changes among alternative developmental pathways, i.e. phenotypic responses, in vertebrates. However, the extent to which the environment induces developmental plasticity and integrated developmental responses during early ontogeny of fishes remains poorly documented. We analyzed the responses of newly hatched Arctic charr (Salvelinus alpinus) to four experimental water velocities during 100 days of development. To our knowledge, this work is the first to analyze developmental plasticity responses of body morphology to an experimental gradient of water velocities during early ontogeny of fish. Arctic charr body size and shape responses show first, that morphometric traits display significant differences between low and high water velocities, thus revealing directional changes in body traits. Secondly, trait variation allows the recognition of critical ontogenetic periods that are most responsive to environmental constraints (40-70 and 80-90 days) and exhibit different levels of developmental plasticity. This is supported by the observation of asynchronous timing of variation peaks among treatments. Third, morphological interaction of traits is developmentally plastic and time-dependent. We suggest that developmental responses of traits plasticity and interaction at critical ontogenetic periods are congruent with specific environmental conditions to maintain the functional integrity of the organism.
温度和水流速度等环境条件可能会诱导脊椎动物在不同发育途径之间发生变化,即表型反应。然而,在鱼类早期个体发育过程中,环境诱导发育可塑性和综合发育反应的程度仍缺乏充分的文献记载。我们分析了新孵化的北极红点鲑(Salvelinus alpinus)在100天的发育过程中对四种实验水流速度的反应。据我们所知,这项工作是首次分析鱼类早期个体发育过程中身体形态对实验性水流速度梯度的发育可塑性反应。北极红点鲑的体型和形状反应首先表明,形态测量特征在低水流速度和高水流速度之间存在显著差异,从而揭示了身体特征的方向性变化。其次,性状变异使我们能够识别对环境限制最敏感的关键个体发育时期(40 - 70天和80 - 90天),并表现出不同程度的发育可塑性。不同处理之间变异峰值的异步时间观察结果支持了这一点。第三,性状的形态学相互作用在发育上具有可塑性且依赖于时间。我们认为,在关键个体发育时期性状可塑性和相互作用的发育反应与特定环境条件相一致,以维持生物体的功能完整性。