首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Shape shifting predicts ontogenetic changes in metabolic scaling in diverse aquatic invertebrates
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Shape shifting predicts ontogenetic changes in metabolic scaling in diverse aquatic invertebrates

机译:形状变化预测了各种水生无脊椎动物代谢尺度上的个体发育变化

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摘要

Metabolism fuels all biological activities, and thus understanding its variation is fundamentally important. Much of this variation is related to body size, which is commonly believed to follow a 3/4-power scaling law. However, during ontogeny, many kinds of animals and plants show marked shifts in metabolic scaling that deviate from 3/4-power scaling predicted by general models. Here, we show that in diverse aquatic invertebrates, ontogenetic shifts in the scaling of routine metabolic rate from near isometry (bR = scaling exponent approx. 1) to negative allometry (bR < 1), or the reverse, are associated with significant changes in body shape (indexed by bL = the scaling exponent of the relationship between body mass and body length). The observed inverse correlations between bR and bL are predicted by metabolic scaling theory that emphasizes resource/waste fluxes across external body surfaces, but contradict theory that emphasizes resource transport through internal networks. Geometric estimates of the scaling of surface area (SA) with body mass (bA) further show that ontogenetic shifts in bR and bA are positively correlated. These results support new metabolic scaling theory based on SA influences that may be applied to ontogenetic shifts in bR shown by many kinds of animals and plants.
机译:代谢为所有生物活动提供了动力,因此了解其变化至关重要。这种变化大部分与身体大小有关,通常认为它遵循3/4功率缩放定律。但是,在个体发育过程中,许多动物和植物都表现出明显的代谢尺度变化,这与一般模型所预测的3/4功率尺度不同。在这里,我们表明,在各种水生无脊椎动物中,例行代谢率的比例从近等轴测图(bR =标度指数约1)到负等轴测图(bR <1)或相反的发生的遗传变化与显着变化相关。体形(由bL索引=体重与体长之间关系的比例指数)。 bR和bL之间观察到的逆相关性是通过代谢标度理论预测的,该理论强调了穿过体外表面的资源/废物通量,但与强调资源通过内部网络进行运输的理论相矛盾。表面积(SA)与体重(bA)比例缩放的几何估计进一步表明,bR和bA的个体发生变化呈正相关。这些结果支持了基于SA影响的新的代谢定标理论,该理论可能适用于许多动物和植物显示的bR的个体发生变化。

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