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Ecosystem functioning approach applied to a large contaminated coastal site: the study case of the Mar Piccolo of Taranto (Ionian Sea)

机译:生态系统功能方法适用于受污染较大的沿海地区:塔兰托(爱奥尼亚海)Mar Piccolo研究案例

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Knowledge on ecosystem functioning can largely contribute to promote ecosystem-based management and its application. The Mar Piccolo of Taranto is a densely populated area at a high risk of environmental crisis. Here, planktonic primary production (PP) and heterotrophic prokaryotic production (HPP) were measured as proxies of functioning in three sampling sites located in two inlets at different levels of industrial contamination, during three sampling surveys (June 2013, February and April 2014). To have a better overall view and provide some insights into the benthic-pelagic coupling, we integrated PP and HPP in the water column with those in the sediments and then discussed this with the origin of the organic matter pools based on analysis of stable isotopes. Heavy metals and polychlorobiphenyls (PCBs) were also analysed in the surface (1 cm) sediment layer and related to the overall ecosystem functioning. Multidimensional scaling (MDS) analysis, based on the main data, clearly separated the second inlet from the first one, more severely impacted by anthropogenic activities. The stable isotope mixing model suggested the prevalent terrestrial/riverine origin of the particulate organic matter pools (mean 45.5 %) in all sampling periods, whereas phytoplankton contributed up to 29 % in February. Planktonic PP and HPP rates followed the same pattern over the entire study period and seemed to respond to phytoplankton dynamics confirming this community as the main driver for the C cycling in the water column. On the contrary, benthic PP rates were almost negligible while HPP rates were lower or comparable to those in the water column indicating that although the Mar Piccolo is very shallow, the water column is much more productive than the surface sediments. The sediment resuspension is likely responsible for a pulsed input of contaminants into the water column. However, their interference with the proper functioning of the pelagic ecosystem seems to be limited to the bottom layers.
机译:有关生态系统功能的知识可以极大地促进基于生态系统的管理及其应用。塔兰托的马尔·皮克洛(Mar Piccolo)是一个人口稠密的地区,极有可能发生环境危机。在三个抽样调查中(2013年6月,2014年2月和2014年4月),在两个工业污染程度不同的两个进水口的三个采样点中,浮游生物的初级生产(PP)和异养原核生物的生产(HPP)被用作功能的代理。为了更好地了解底栖-上层耦合,我们将水柱中的PP和HPP与沉积物中的PP和HPP进行了整合,然后基于对稳定同位素的分析,与有机质库的起源进行了讨论。还对表层(1厘米)沉积物层中的重金属和多氯联苯(PCB)进行了分析,并与生态系统的整体功能有关。基于主要数据的多维标度(MDS)分析清楚地将第二个入口与第一个入口分开,受人为活动的影响更为严重。稳定的同位素混合模型表明,在所有采样期中,颗粒有机物池的陆地/河流元素起源普遍(平均为45.5%),而浮游植物在2月份的贡献高达29%。在整个研究期间,浮游生物的PP和HPP速率遵循相同的模式,并且似乎对浮游植物的动力学作出了反应,从而证实了该群落是水柱中C循环的主要驱动力。相反,底栖PP率几乎可以忽略不计,而HPP率则较低或与水柱相当,这表明尽管Mar Piccolo非常浅,但水柱比表层沉积物的生产率高得多。沉积物的重新悬浮可能是污染物以脉冲方式输入水柱的原因。但是,它们对远洋生态系统正常运作的干扰似乎仅限于底层。

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