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As productive and slow as a stream can be-the metabolism of a Pampean stream

机译:像溪流一样高效而缓慢-潘邦溪流的新陈代谢

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Stream metabolism at both ecosystem and functional-compartment scales was measured in a low-order Pampean stream (La Choza) over a 3-wk period to characterize metabolic rates and discern the contribution of each functional compartment (submerged macrophytes, benthos, floating macroalgae, water column, and hyporheic zone) to ecosystem metabolism. La Choza stream is an autotrophic ecosystem during low flows and has gross primary production rates of up to 22 g O2 m-2d-1, which are among the highest reported in the literature and set an upper bound on how productive streams can be in the absence of light and nutrient limitations. Floating macroalgae provided most of the primary production (30-90%), whereas the hyporheic zone provided most of the ecosystem respiration (40-80%). The differential effects of high flows on the different functional compartments depressed the production:respiration ratio, suggesting a strong relationship between flow and metabolism. Thus, low flows enhanced primary production and led to diel dissolved O2 concentration oscillations between 0 and 25 g O2/m3. In contrast, high flow depressed primary production by an order of magnitude and increased ecosystem respiration. High production rates during the low-flow period and extreme physicochemical conditions (anoxia for 7-8 h on a daily basis) may be typical in this type of ecosystem during extended low-flow periods.
机译:在3周内在低阶的Pampean溪流(La Choza)中测量了生态系统和功能分区的溪流新陈代谢,以表征代谢率并辨别每个功能舱的作用(淹没的大型植物,底栖生物,漂浮的大型藻类,水柱和流变区)进行生态系统代谢。 La Choza溪流是低流量时的自养生态系统,总初级生产力高达22 g O2 m-2d-1,是文献中报道的最高水平,并设定了河流中生产性溪流的上限。没有光和营养的限制。浮游大型藻类提供了大部分初级生产力(30-90%),而低变带提供了大部分生态系统呼吸(40-80%)。高流量对不同功能区室的不同影响降低了生产:呼吸比,表明流量与代谢之间存在很强的关系。因此,低流量增强了一次生产,并导致diel溶解的O2浓度在0至25 g O2 / m3之间波动。相反,高流量使初级生产下降了一个数量级,并增加了生态系统的呼吸。在延长的低流量时期,这种类型的生态系统通常会在低流量时期和极端的物理化学条件(每天7-8小时缺氧)下实现高生产率。

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