Article ID Journal Published Year Pages File Type
6383028 Continental Shelf Research 2015 11 Pages PDF
Abstract

•We characterized the trophic structure and functioning of Daya Bay with the context of strong human activities by applying a food-web model.•We found that phytoplankton, zooplankton and micro-zoobenthos are classified as the main keystone groups of the Daya ecosystem.•A comparisons of this model with other coastal ecosystems underpinned that the ecosystem is an obviously stressed system and is more vulnerable to external disturbance.

Daya Bay, is one of the largest and most important semi-closed bays along the southern coast of China. Due to the favorable geomorphological and climatic conditions, this bay has become an important conservation zone of aquatic germplasm resources in South China Sea. To characterize the trophic structure, ecosystem properties and keystone species, a food-web model for Daya Bay has been developed by the means of a mass-balance approach using the Ecopath with Ecosim software. The mean trophic transfer efficiency for the entire ecosystem as a whole is 10.9% while the trophic level II is 5.1%. The primary- and secondary-producers, including phytoplankton, zooplankton and micro-zoobenthos demonstrated the important overall impacts on the rest of the groups based on mixed trophic impact (MIT) analysis and are classified as the keystone groups. The analysis of ecosystem attributes indicated that ecosystem of Daya Bay can be categorized as an immature one and/or is in the degraded stage. A comparison of this model with other coastal ecosystems, including Kuosheng Bay, Tongoy Bay, Beibu Gulf and Cadiz Gulf, underpinned that the ecosystem of Daye Bay is an obviously stressed system and is more vulnerable to the external disturbance. In general, our study indicates that a holistic approach is needed to minimize the impacts of anthropogenic activities to ensure the sustainability of the ecosystem in the future.

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Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Geology
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