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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The impact of metabolism on stable isotope dynamics: a theoretical framework
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The impact of metabolism on stable isotope dynamics: a theoretical framework

机译:代谢对稳定同位素动力学的影响:理论框架

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Stable isotope analysis is a powerful tool used for reconstructing individual life histories, identifying food-web structures and tracking flow of elemental matter through ecosystems. The mechanisms determining isotopic incorporation rates and discrimination factors are, however, poorly understood which hinders a reliable interpretation of field data when no experimental data are available. Here, we extend dynamic energy budget (DEB) theory with a limited set of new assumptions and rules in order to study the impact of metabolism on stable isotope dynamics in a mechanistic way. We calculate fluxes of stable isotopes within an organism by following fluxes of molecules involved in a limited number of macrochemical reactions: assimilation, growth but also structure turnover that is here explicitly treated. Two mechanisms are involved in the discrimination of isotopes: (i) selection of molecules occurs at the partitioning of assimilation, growth and turnover into anabolic and catabolic sub-fluxes and (ii) reshuffling of atoms occurs during transformations. Such a framework allows for isotopic routing which is known as a key, but poorly studied, mechanism. As DEB theory specifies the impact of environmental conditions and individual state on molecule fluxes, we discuss how scenario analysis within this framework could help reveal common mechanisms across taxa.
机译:稳定的同位素分析是一种强大的工具,可用于重建个人的生活史,识别食物网结构以及跟踪元素通过生态系统的流动。然而,对于确定同位素掺入率和判别因子的机制了解甚少,这在没有实验数据可得时妨碍了对现场数据的可靠解释。在这里,我们以一组有限的新假设和规则扩展了动态能量收支(DEB)理论,以便以机械方式研究代谢对稳定同位素动力学的影响。我们通过跟踪参与有限的大量化学反应的分子通量来计算生物体内稳定同位素的通量:同化,生长以及此处明确处理的结构更新。同位素的鉴别涉及两种机制:(i)分子的选择发生在同化,生长和转换为合成代谢和分解代谢子通量的分配中,以及(ii)原子在转化过程中发生改组。这种框架允许进行同位素路由,这被认为是关键的但研究不足的机制。由于DEB理论规定了环境条件和个体状态对分子通量的影响,因此我们讨论了此框架内的情景分析如何帮助揭示整个分类单元的共同机制。

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