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海洋生态系统人为影响的生态评估:以巴尼奥利湾为例。

Ecological assessment of anthropogenic impact in marine ecosystems: The case of Bagnoli Bay.

机构信息

Stazione Zoologica Anton Dohrn, Villa Comunale 80121, Naples, Italy.

Stazione Zoologica Anton Dohrn, Villa Comunale 80121, Naples, Italy.

出版信息

Mar Environ Res. 2020 Jun;158:104953. doi: 10.1016/j.marenvres.2020.104953. Epub 2020 Mar 10.

Abstract

Pollutants alter marine systems, interfering with provisioning of ecosystem services; understanding their interaction with ecological communities is therefore critical to inform environmental management. Here we propose a joint compositional- and interaction-based analysis for ecological status assessment and apply it on the benthic communities of the Bagnoli Bay. We found that contamination differentially affects the communities' composition in the bay, with prokaryotes influenced only by depth, and benthos not following the environmental gradient at all. This result is confirmed by analyses of the community structure, whose network structure suggest fast carbon flow and cycling, especially promoted by nematodes and polychaetes; the benthic prey/predator biomass ratio, adjusted for competition, successfully synthesise the status of predator taxa. We found demersal fish communities to separate into a deep, pelagic-like community, and two shallow communities where a shift from exclusive predators to omnivores occurs, moving from the most polluted to the least polluted sampling units. Finally, our study indicate that indices based on interspecific interactions are better indicators of environmental gradients than those defined based on species composition exclusively.

摘要

污染物改变海洋系统,干扰生态系统服务的供给;因此,了解它们与生态群落的相互作用对于环境管理至关重要。在这里,我们提出了一种联合组成和基于相互作用的分析方法,用于生态状况评估,并将其应用于巴尼奥利湾的底栖群落。我们发现,污染对海湾中群落的组成有不同的影响,只有深度影响原核生物,而底栖生物根本不遵循环境梯度。这一结果得到了群落结构分析的证实,其网络结构表明碳的快速流动和循环,特别是由线虫和多毛类动物促进;底栖猎物/捕食者生物量比,经竞争调整后,成功综合了捕食者类群的状况。我们发现底栖鱼类群落分为一个深的、像浮游生物一样的群落,以及两个浅的群落,在这些群落中,从专性捕食者向杂食者的转变发生,从污染最严重的采样单元向污染最轻的采样单元转移。最后,我们的研究表明,基于种间相互作用的指数比仅基于物种组成定义的指数更能指示环境梯度。

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