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Reviews and syntheses: Carbon use efficiency from organisms to ecosystems – definitions, theories, and empirical evidence

机译:综述与综合:从生物体到生态系统的碳使用效率-定义,理论和经验证据

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The cycling of carbon (C) between the Earth surface and the atmosphere is controlled by biological and abiotic processes that regulate C storage in biogeochemical compartments and release to the atmosphere. This partitioning is quantified using various forms of C-use efficiency (CUE) – the ratio of C remaining in a system to C entering that system. Biological CUE is the fraction of C taken up allocated to biosynthesis. In soils and sediments, C storage depends also on abiotic processes, so the term C-storage efficiency (CSE) can be used. Here we first review and reconcile CUE and CSE definitions proposed for autotrophic and heterotrophic organisms and communities, food webs, whole ecosystems and watersheds, and soils and sediments using a common mathematical framework. Second, we identify general CUE patterns; for example, the actual CUE increases with improving growth conditions, and apparent CUE decreases with increasing turnover. We then synthesize ?5000?CUE estimates showing that CUE decreases with increasing biological and ecological organization – from unicellular to multicellular organisms and from individuals to ecosystems. We conclude that CUE is an emergent property of coupled biological–abiotic systems, and it should be regarded as a flexible and scale-dependent index of the capacity of a given system to effectively retain?C.
机译:碳(C)在地球表面与大气之间的循环受生物和非生物过程控制,这些过程调节生物地球化学隔室内的碳存储并释放到大气中。使用各种形式的C使用效率(CUE)(系统中残留的C与进入该系统的C的比率)来量化这种划分。生物CUE是分配给生物合成的碳吸收量。在土壤和沉积物中,碳存储还取决于非生物过程,因此可以使用术语碳存储效率(CSE)。在这里,我们首先使用通用的数学框架,审查并协调针对自养和异养生物和群落,食物网,整个生态系统和集水区以及土壤和沉积物提出的CUE和CSE定义。其次,我们确定一般的CUE模式;例如,实际CUE随生长条件的改善而增加,而表观CUE随营业额的增加而减少。然后,我们合成>?5000?CUE的估计值,表明CUE随生物和生态组织的增加而降低-从单细胞到多细胞生物,从个人到生态系统。我们得出的结论是,CUE是生物-非生物系统耦合的新兴特性,应将其视为给定系统有效保留C的能力的灵活且与规模有关的指标。

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