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Applications of ecological stoichiometry for sustainable acquisition of ecosystem services

机译:生态化学计量学在可持续获取生态系统服务中的应用

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Human activities have differentially altered biogeochemical cycling at local, regional and global scales. We propose that a stoichiometric approach, examining the fluxes of multiple elements and the ratio between them, may be a useful tool for better understanding human effects on ecosystem processes and services. The different scale of impacts of the elements carbon, nitrogen and phosphorus and the different nature of their biogeochemical cycles, imply a large variation of their stoichiometric ratios in space and time and thus divergent impacts on biota.In this paper, we examine the effects of anthropogenic perturbations on nutrient ratios in ecosystems in two examples and one case study. Altered stoichiometry in agricultural systems (example 1) can affect not only crop yield and quality but also the interactions between plants and their pollinators, pests and pathogens. Human activities have also altered stoichiometry in coastal ecosystems (example 2). Increased N loading has especially lead to increased N: P and reduced Si: N ratios, with detrimental effects on ecosystem services derived from coastal pelagic food webs, such as fish yield and water quality. The terrestrial-aquatic linkage in stoichiometric alterations is illustrated with a case study, the Mississippi River watershed, where anthropogenic activities have caused stoichiometric changes that have propagated through the watershed into the northern Gulf of Mexico.Coupled with altered stoichiometric nutrient inputs are the inherent differences in variation and sensitivity of different ecosystems to anthropogenic disturbance. Furthermore, the connections among the components of a watershed may result in downstream cascades of disrupted functioning. Applying a multiple element perspective to understanding and addressing societal needs is a new direction for both ecological stoichiometry and sustainability.
机译:人类活动已在地方,区域和全球范围内不同程度地改变了生物地球化学循环。我们建议,一种化学计量方法,检查多种元素的通量及其之间的比率,可能是有用的工具,可以更好地了解人类对生态系统过程和服务的影响。碳,氮和磷元素的影响程度不同以及它们的生物地球化学循环的性质不同,这意味着它们的化学计量比在空间和时间上有很大的变化,因此对生物区系的影响是不同的。在两个例子和一个案例研究中,人为地扰动了生态系统中的营养比。农业系统化学计量学的改变(示例1)不仅会影响作物的产量和质量,而且还会影响植物与其授粉媒介,害虫和病原体之间的相互作用。人类活动也改变了沿海生态系统的化学计量(实例2)。增加的氮负荷尤其导致增加的N:P和降低的Si:N比率,对沿海中上层食物网产生的生态系统服务(如鱼类产量和水质)产生不利影响。以密西西比河流域为例,说明了化学计量变化中的陆地-水生联系,其中人为活动导致化学计量变化,该化学计量变化通过分水岭传播到了墨西哥北部海湾。不同生态系统对人为干扰的变化和敏感性。此外,分水岭的各个组成部分之间的连接可能会导致下游功能中断。将多元观点应用于理解和满足社会需求是生态化学计量和可持续性的新方向。

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