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首页> 外文期刊>Frontiers in Marine Science >Influence of benthic macrofauna community shifts on ecosystem functioning in shallow estuaries
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Influence of benthic macrofauna community shifts on ecosystem functioning in shallow estuaries

机译:底河大型底栖动物群落转移对生态系统功能的影响

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We identify how ecosystem functioning in shallow estuaries is affected by shifts in benthic fauna communities. We use the shallow estuary, Odense Fjord, Denmark, as a case study to test our hypotheses that (1) shifts in benthic fauna composition and species functional traits affect biogeochemical cycling with cascading effects on ecological functioning, which may (2) modulate pelagic primary productivity with feedbacks to the benthic system. Odense Fjord is suitable because it experienced dramatic shifts in benthic fauna community structure from 1998 to 2008. We focused on infaunal species with emphasis on three dominating burrow-dwelling polychaetes: the native Nereis (Hediste) diversicolor and Arenicola marina, and the invasive Marenzelleria viridis. The impact of functional traits in the form of particle reworking and ventilation on biogeochemical cycles, i.e. sediment metabolism and nutrient dynamics, was determined from literature data. Historical records of summer nutrient levels in the water column of the inner Odense Fjord show elevated concentrations of NH4+ and NO3- (DIN) during the years 2004-2006, exactly when the N. diversicolor population declined and A. marina and M. viridis populations expanded dramatically. In support of our first hypothesis, we show that excess NH4+ delivery from the benthic system during the A. marina and M. viridis expansion period enriched the overlying water in DIN and stimulated phytoplankton concentration. The altered benthic-pelagic coupling and stimulated pelagic production may, in support of our second hypothesis, have feedback to the benthic system by changing the deposition of organic material. We therefore advice to identify the exact functional traits of the species involved in a community shift before studying its impact on ecosystem functioning. We also suggest studying benthic community shifts in shallow environments to obtain knowledge about the drivers and controls before exploring deep-water environments.
机译:我们确定底栖动物群落的变化如何影响浅河口生态系统的功能。我们以丹麦欧登塞峡湾的浅河口为例,以检验以下假设:(1)底栖动物区系组成和物种功能性状的变化会影响生物地球化学循环,并对生态功能产生级联效应,这可能(2)调节远洋初生底栖系统反馈的生产力。欧登塞峡湾(Odense Fjord)之所以合适,是因为它在1998年至2008年间底栖动物群落结构发生了巨大变化。我们重点研究了不常见的物种,重点研究了三种主要的洞穴居多毛cha:原生Nereis(Hediste)杂色和Arenicola marina,以及入侵性Marenzelleria viridis 。从文献数据中确定了以颗粒再加工和通风形式存在的功能性状对生物地球化学循环的影响,即沉积物代谢和养分动态。欧登塞峡湾内水柱夏季养分水平的历史记录显示,在2004-2006年期间,正好是杂色猪笼草种群减少以及滨海拟杆菌和绿脓杆菌种群的NH4 +和NO3-(DIN)浓度升高。大大扩展。为了支持我们的第一个假设,我们显示了在滨海曲霉和藻分枝杆菌扩增期间底栖系统过量释放的NH4 +丰富了DIN中的上层水,并刺激了浮游植物的浓度。支持我们的第二种假设,改变底栖-上层耦合和刺激的上层生产可能会通过改变有机物质的沉积而对底栖系统产生反馈。因此,我们建议在研究其对生态系统功能的影响之前,先确定参与社区转移的物种的确切功能特征。我们还建议研究浅水环境中的底栖动物群落转移,以在探索深水环境之前获得有关驱动程序和控制的知识。

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