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首页> 外文期刊>Oikos: A Journal of Ecology >To be or not to be what you eat: regulation of stoichiometric homeostasis among autotrophs and heterotrophs
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To be or not to be what you eat: regulation of stoichiometric homeostasis among autotrophs and heterotrophs

机译:成为或不成为饮食:自养生物和异养生物之间化学计量稳态的调节

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Homeostasis of element composition is one of the central concepts of ecological stoichiometry. In this context, homeostasis is the resistance to change of consumer body composition in response to the chemical composition of consumer's food. To simplify theoretical analysis, it has generally been assumed that autotrophs exhibit flexibility in their composition, while heterotrophs are confined to a constant (strictly homeostatic) body composition. Yet, recent studies suggest that heterotrophs are not universally strictly homeostatic. We examined the degree to which autotrophs and heterotrophs regulate stoichiometric homeostasis (P:C, N:C, N:P, or %P and %N). We conducted a quantitative review and meta-analysis using 132 datasets extracted from 57 literature sources which examined the dependence of organismal stoichiometry on resource stoichiometry. Among individual datasets, there was a wide range of responses from strictly homeostatic to non-homeostatic. Even within heterotrophic organisms, varying levels of homeostasis were observed. Comparing the degree of homeostasis between organisms based on large-scale habitat types using meta-analysis indicated some significant differences between groups. For example, aquatic macroinvertebrates were significantly more homeostatic in terms of P:C than terrestrial invertebrates. Our meta-analysis also confirmed that, with regard to N:P, heterotrophs are significantly more homeostatic than autotrophs. Furthermore, our analysis indicated that the homeostasis parameter 1/H, despite being a potentially useful predictive metric, has to be utilized with caution since it oversimplifies some important aspects of the responses of organisms to elemental imbalances. This critical evaluation of stoichiometric homeostasis contributes to a better understanding of many food-web interactions, which are commonly driven by elemental imbalances between consumers and their resources.
机译:元素组成的稳态是生态化学计量学的中心概念之一。在这种情况下,动态平衡是抵抗消费者食品化学成分改变消费者身体成分的抵抗力。为了简化理论分析,通常假设自养生物在其组成方面表现出灵活性,而异养生物被限制在恒定的(严格的稳态)身体组成中。然而,最近的研究表明,异养菌并非普遍严格地稳态。我们检查了自养生物和异养生物调节化学计量稳态(P:C,N:C,N:P或%P和%N)的程度。我们使用从57个文献来源中提取的132个数据集进行了定量审查和荟萃分析,这些数据集检查了生物化学计量对资源化学计量的依赖性。在各个数据集中,从严格的稳态到非稳态都存在广泛的响应。即使在异养生物中,也观察到不同水平的体内平衡。使用荟萃分析比较基于大规模生境类型的生物之间的体内稳态程度,表明各组之间存在一些显着差异。例如,就水溶碳而言,水生大型无脊椎动物比陆地无脊椎动物具有更高的稳态。我们的荟萃分析还证实,就N:P而言,异养生物比自养生物具有更大的稳态。此外,我们的分析表明,稳态参数1 / H尽管是潜在有用的预测指标,但由于它过于简化了生物对元素失衡反应的一些重要方面,因此必须谨慎使用。对化学计量稳态的这一重要评估有助于更好地理解许多食物网之间的相互作用,而这种相互作用通常是由消费者及其资源之间的元素失衡引起的。

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