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First principles of copepod development help explain global marine diversity patterns

机译:pe足类动物发育的首要原理有助于解释全球海洋多样性格局

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摘要

A major goal of modern ecology is to understand macroecological patterns based on their mechanistic underpinnings. The metabolic theory of ecology predicts a monotonic increase of biodiversity with temperature based on the principles of metabolism. For marine copepods, observations have shown that while biodiversity does increase with temperature, the theory's prediction overestimates the slope of this relationship by a factor of two. By relaxing the theory's assumption that size is invariant with respect to temperature, and by incorporating a mechanistic description of copepod development into the theory, we provide an adjusted prediction that agrees with the observed relationship. The addition of development into the theory adds the potential to refine the prediction for a wider range of taxa, to account for discrepancies between prediction and observations, and to describe a wider variety of temperature-richness relationships.
机译:现代生态学的一个主要目标是基于其机理基础来理解宏观生态学模式。生态代谢理论根据新陈代谢原理,预测生物多样性随温度单调增加。对于海洋co足类动物,观察表明,尽管生物多样性确实随温度增加,但该理论的预测高估了这种关系的斜率两倍。通过放宽该理论的假设,即大小相对于温度不变,并且通过将co足类动物发育的机理描述纳入该理论,我们提供了一种与观察到的关系相符的调整后的预测。该理论的发展增加了对更广泛的分类单元进行预测,解决预测和观测值之间的差异以及描述更广泛的温度-富度关系的潜力。

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