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Terrestrial runoff may reduce microbenthic net community productivity by increasing turbidity: a Mediterranean coastal lagoon mesocosm experiment

机译:地表径流可能会通过增加浊度来降低微底生物净群落生产力:地中海沿岸泻湖中观实验

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Terrestrial runoff into aquatic ecosystems may have both stimulatory and inhibitory effects, due to nutrient subsidies and increased light attenuation. To disentangle the effects of runoff on microbenthos, we added soil to coastal mesocosms and manipulated substrate depth. To test if fish interacted with runoff effects, we manipulated fish presence. Soil decreased microphytobenthic chlorophyll-a per area and per carbon (C) unit, increased microbenthic phosphorous (P), and reduced microbenthic nitrogen (N) content. Depth had a strong effect on the microbenthos, with shallow substrates exhibiting greater microbenthic net ecosystem production, gross primary production, and community respiration than deep substrates. Over time, micobenthic algae compensated for deeper substrate depth through increased chlorophyll-a synthesis, but despite algal shade compensation, the soil treatment still appeared to reduce the depth where microbenthos switched from net autotrophy to net heterotrophy. Fish interacted with soil in affecting microbenthic nutrient composition. Fish presence reduced microbenthic C/P ratios only in the no soil treatment, probably since soil nutrients masked the positive effects of fish excreta on microbenthos. Soil reduced microbenthic N/P ratios only in the absence of fish. Our study demonstrates the importance of light for the composition and productivity of microbenthos but finds little evidence for positive runoff subsidy effects.
机译:由于养分补贴和增加的光衰减,进入水生生态系统的陆地径流可能具有刺激作用和抑制作用。为了弄清径流对微底栖动物的影响,我们在沿海地膜中添加了土壤并控制了基质的深度。为了测试鱼是否与径流效应相互作用,我们操纵了鱼的存在。土壤每单位面积和每碳(C)单位的微生底微生物叶绿素-a减少,微生磷(P)增加,微生氮(N)含量降低。深度对微底栖动物有很强的影响,浅底物比深底物表现出更大的微底生物净生态系统产量,初级总产值和群落呼吸。随着时间的流逝,微底栖藻类通过增加叶绿素-a的合成来补偿更深的基质深度,但是尽管藻类阴影得到了补偿,但土壤处理仍似乎减小了微底栖动物从净自养变为净异养的深度。鱼与土壤相互作用,影响微底养分组成。鱼类的存在仅在不进行土壤处理的情况下才降低了微生物的C / P比,这可能是因为土壤养分掩盖了鱼类排泄物对微生物的积极作用。只有在没有鱼类的情况下,土壤才会降低微生物的底栖生物N / P比。我们的研究证明了光对微底栖动物的组成和生产力的重要性,但几乎没有证据证明有积极的径流补贴作用。

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