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Why is body size more variable in stressful conditions: an analysis of a potential proximate mechanism

机译:为什么在压力条件下体重会更多变化:对潜在潜在机制的分析

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Patterns of variability in quantitative traits across environmental gradients have received relatively little attention in evolutionary ecology. A recent meta-analysis showed that relative phenotypic variability in body size tends to decrease with improving environmental conditions. This pattern was explained by introducing the concept of upper threshold size to a general optimality model of individual growth but alternative explanations certainly exist. In particular, it is frequently observed in insects that variability in individual growth rates decreases with improving environmental conditions. Here we explore the effect of this phenomenon on environment-specific variability in adult sizes. A quantitative model shows that relative variability in adult sizes is independent of environmental quality if absolute variability in growth rates remains constant across the gradient of environmental quality. Deviations from this borderline case are definitely realistic in both directions. Both negative and positive relationships between relative variability of body size and environmental quality can thus be predicted to arise as a consequence of environment-specific variability in growth rates. The variability itself can be both genetic or environmental in its nature. We present empirical data which support both the assumptions and conclusions of our model-based analysis, as well as emphasize the advantages of controlled experiments for understanding the proximate sources of phenotypic variance.
机译:跨环境梯度的数量性状的变异性模式在进化生态学中受到的关注相对较少。最近的一项荟萃​​分析表明,随着环境条件的改善,体表相对表型变异性趋于降低。通过将上阈值大小的概念引入个人增长的一般最优模型来解释这种模式,但是当然存在替代解释。特别是,在昆虫中经常观察到,随着环境条件的改善,个体生长速率的变异性降低。在这里,我们探讨了这种现象对成年大小特定于环境的变异性的影响。定量模型表明,如果增长率的绝对变化在整个环境质量梯度范围内保持恒定,则成年大小的相对变化与环境质量无关。从这个极端情况出发,在两个方向上肯定是现实的。因此,可以预测由于环境特定的增长率变化,身体大小的相对变化与环境质量之间的负向和正向关系都会出现。变异本身本身可以是遗传的或环境的。我们提供的经验数据支持我们基于模型的分析的假设和结论,并强调受控实验对于了解表型方差的近来来源的优势。

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