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Physiological mechanisms of adaptive developmental plasticity in Rana temporaria island populations

机译:林蛙临时岛种群适应性发育可塑性的生理机制

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摘要

BackgroundAdaptive plasticity is essential for many species to cope with environmental heterogeneity. In particular, developmental plasticity allows organisms with complex life cycles to adaptively adjust the timing of ontogenetic switch points. Size at and time to metamorphosis are reliable fitness indicators in organisms with complex cycles. The physiological machinery of developmental plasticity commonly involves the activation of alternative neuroendocrine pathways, causing metabolic alterations. Nevertheless, we have still incomplete knowledge about how these mechanisms evolve under environments that select for differences in adaptive plasticity. In this study, we investigate the physiological mechanisms underlying divergent degrees of developmental plasticity across Rana temporaria island populations inhabiting different types of pools in northern Sweden.
机译:背景适应性可塑性对于许多物种应对环境异质性至关重要。特别地,发育可塑性使具有复杂生命周期的生物能够适应性地调整个体发育转换点的时间。在具有复杂周期的生物中,变态的大小和变态时间是可靠的适应性指标。发育可塑性的生理机制通常涉及替代性神经内分泌途径的激活,从而引起代谢改变。然而,我们仍然不完全了解这些机制在选择适应性可塑性差异的环境下如何进化。在这项研究中,我们调查了居住在瑞典北部不同类型水池中的整个林蛙种群中发育可塑性不同程度的潜在生理机制。

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