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美洲鳗鲡()的体型发育变化与代谢率的比例关系

Ontogenetic Changes in Body Shape and the Scaling of Metabolic Rate in the American Eel ().

出版信息

Physiol Biochem Zool. 2022 Sep-Oct;95(5):430-437. doi: 10.1086/721189.

Abstract

AbstractThe body mass () scaling of resting metabolic rate (RMR) may vary significantly throughout ontogeny for multiple reasons that are not perfectly understood. To compare two major geometric theories of metabolic scaling, surface area (SA) theory and resource transport network (RTN) theory, we tested whether ontogenetic shifts in metabolic scaling relate to changes in body shape in the American eel (). To do so, we compared the log-linear scaling exponents of RMR to () and to body length () in juvenile and subadult eels (glass and yellow eel life stages, respectively). Glass eels exhibited a and significantly <2/3, as predicted by SA theory. Yellow eels also had a , but their was not significantly different from 2/3 or 3/4. We hypothesize that two developmental changes contribute to being higher for yellow eels: (1) a greater reliance on branchial respiration than body-surface-dependent cutaneous respiration and (2) a lower rate of thickening during subadult growth. An ontogenetic decrease in the ratio of cutaneous to gill respiration may have increased the relative importance of the physical constraints of a single-pump, closed circulatory system on the body-size-dependent rate of resource supply to metabolizing tissues (as predicted by RTN theory) in subadult eels. Future research is needed to quantify these developmental changes and their potential mechanistic effects on metabolic scaling, especially in the elver, a critical life stage between the glass and yellow eel stages, that was not analyzed in this study.

摘要

摘要

由于多种尚未完全了解的原因,静止代谢率(RMR)的体质量()缩放可能在整个个体发育过程中发生显著变化。为了比较代谢缩放的两种主要几何理论,表面积(SA)理论和资源运输网络(RTN)理论,我们测试了代谢缩放的个体发育变化是否与鳗鲡()身体形状的变化有关。为此,我们比较了 RMR 的对数线性缩放指数与幼鳗和亚成鳗(玻璃鳗和黄鳗生命阶段,分别)的()和()到体长()。玻璃鳗表现出 和 显著<2/3,这与 SA 理论预测的一致。黄鳗也有一个 ,但它的 与 2/3 或 3/4 没有显著差异。我们假设两个发育变化导致黄鳗的 更高:(1)对鳃呼吸的依赖程度大于体表依赖的皮肤呼吸,以及(2)在亚成体生长过程中厚度增加率较低。皮肤呼吸与鳃呼吸比率的个体发育下降可能增加了单一泵、封闭循环系统对代谢组织资源供应的体尺寸依赖性速率的物理限制的相对重要性(如 RTN 理论所预测的)在亚成鳗中。需要进一步研究来量化这些发育变化及其对代谢缩放的潜在机制影响,特别是在玻璃鳗和黄鳗阶段之间的关键生命阶段鳗鲡幼体,本研究未对此进行分析。

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