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化学计量比灵活性作为变化下陆地生态系统碳和养分循环的调节剂。

Stoichiometric flexibility as a regulator of carbon and nutrient cycling in terrestrial ecosystems under change.

机构信息

Department of Ecology, Evolution and Marine Biology, University of California Santa Barbara, Santa Barbara, CA 93108, USA.

出版信息

New Phytol. 2012 Oct;196(1):68-78. doi: 10.1111/j.1469-8137.2012.04234.x. Epub 2012 Jul 27.

Abstract

Ecosystems across the biosphere are subject to rapid changes in elemental balance and climatic regimes. A major force structuring ecological responses to these perturbations lies in the stoichiometric flexibility of systems - the ability to adjust their elemental balance whilst maintaining function. The potential for stoichiometric flexibility underscores the utility of the application of a framework highlighting the constraints and consequences of elemental mass balance and energy cycling in biological systems to address global change phenomena. Improvement in the modeling of ecological responses to disturbance requires the consideration of the stoichiometric flexibility of systems within and across relevant scales. Although a multitude of global change studies over various spatial and temporal scales exist, the explicit consideration of the role played by stoichiometric flexibility in linking micro-scale to macro-scale biogeochemical processes in terrestrial ecosystems remains relatively unexplored. Focusing on terrestrial systems under change, we discuss the mechanisms by which stoichiometric flexibility might be expressed and connected from organisms to ecosystems. We suggest that the transition from the expression of stoichiometric flexibility within individuals to the community and ecosystem scales is a key mechanism regulating the extent to which environmental perturbation may alter ecosystem carbon and nutrient cycling dynamics.

摘要

生物圈中的生态系统都受到元素平衡和气候制度的快速变化的影响。塑造生态系统对这些干扰的反应的主要力量在于系统的化学计量灵活性 - 即在维持功能的同时调整其元素平衡的能力。化学计量灵活性的潜力强调了应用突出生物系统中元素质量平衡和能量循环的约束和后果的框架来解决全球变化现象的实用性。改善对干扰的生态响应的模型需要考虑相关尺度内和跨尺度的系统的化学计量灵活性。尽管存在大量跨越各种时空尺度的全球变化研究,但在陆地生态系统中,从微观尺度到宏观尺度的生物地球化学过程中,化学计量灵活性所起的作用的明确考虑仍然相对未被探索。关注变化下的陆地系统,我们讨论了从生物体到生态系统表达和连接化学计量灵活性的机制。我们认为,从个体内的化学计量灵活性表达到群落和生态系统尺度的转变是调节环境干扰可能改变生态系统碳和养分循环动态的程度的关键机制。

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