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Ecological stoichiometry and its implications for aquatic ecosystem sustainability

机译:生态化学计量学及其对水生生态系统可持续性的影响

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摘要

Aquatic ecosystems are increasingly stressed not only by increased nutrient loads (eutrophication) but also by changing forms and proportions of nutrients. Nutrient enrichment, composition and stoichiometry interact with aquatic food web dynamics in complex ways. Both algal species composition and emergent properties within species change with changing nutrient composition, in turn affecting food webs at all levels. Consumers further regulate - and may even accelerate -discrepancies in nutrient stoichiometry by various feedbacks, release, and recycling pathways. Stoichiometric regulation of aquatic ecosystem structure also occurs at the sediment interface via altered biogeochemical processes and benthic food webs when nutrient composition changes. Thus, multiple feedbacks serve to alter food web structure when nutrient loads are altered. Such feedbacks may also lead to conditions conducive to invasive species and altered stable states as illustrated for the San Francisco Bay Delta and the Rhine River.
机译:水生生态系统的压力不仅增加了养分负荷(富营养化),而且还改变了养分的形式和比例。营养物的富集,组成和化学计量以复杂的方式与水生食物网动态相互作用。藻类的组成和物种内的涌现特性都随营养成分的变化而变化,进而影响各个层次的食物网。消费者通过各种反馈,释放和循环利用途径进一步调节甚至可能加速营养化学计量的差异。当营养成分发生变化时,通过改变的生物地球化学过程和底栖食物网,在沉积物界面也发生了化学计量的调节。因此,当营养负荷改变时,多个反馈可用来改变食物网的结构。如旧金山湾三角洲和莱茵河所示,这种反馈还可能导致有利于入侵物种和稳定状态改变的条件。

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