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Trophic state,ecosystem efficiency and biodiversity of transitional aquatic ecosystems:analysis of environmental quality based on different benthic indicators

机译:过渡性水生生态系统的营养状态,生态系统效率和生物多样性:基于不同底栖生物指标的环境质量分析

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摘要

Estuaries and coastal lagoons are characterized by a strong spatial and temporal variability of physico-chemical characteristics and productivity patterns.In these environments,the magnitude and direction of the ecological responses to inorganic nutrient increase (i.e.eutrophication) are difficult to predict.In the framework of the project,New Indicators of Trophic state and environmental quality of marine coastal ecosystems and transitional environments (NITIDA),we analysed benthic indicators of trophic state,ecosystem efficiency,and environmental quality in four different transitional environments.The trophic state of the sediments was assessed in terms of quantity and bioavailability of sediment organic C pools;ecosystem efficiency was determined in terms of the prokaryote efficiency in exploiting enzymatycally degraded organic C;environmental quality was determined in terms of meiofaunal diversity.Here,we provide a synopsis of the results obtained and a meta-analysis of the scores assessments obtained using the different ecological indicators of environmental quality and demonstrate that trophic state,ecosystem efficiency,and biodiversity in transitional ecosystems are closely linked.We conclude that the assessment of the environmental quality of transitional ecosystems should be based upon a battery of trophic state indicators and 'sensors' of ecosystem functioning,efficiency,and quality.
机译:河口和沿海泻湖的特征是理化特征和生产力格局的时空变化很大。在这些环境中,对无机养分增加(即富营养化)的生态反应的幅度和方向很难预测。该项目的“营养价值和海洋沿海生态系统和过渡环境的环境质量新指标”(NITIDA),我们分析了四种不同过渡环境中营养状态,生态系统效率和环境质量的底层指标。沉积物的营养状态为根据沉积物有机碳库的数量和生物利用度评估生态系统效率;根据酶解降解的有机碳的开发利用原核生物效率确定生态系统效率;根据动植物多样性确定环境质量。和分数的荟萃分析使用不同的环境质量生态指标进行的评估,表明过渡生态系统的营养状态,生态系统效率和生物多样性紧密相关。我们得出结论,过渡生态系统的环境质量评估应基于一系列营养状态指标以及生态系统功能,效率和质量的“传感器”。

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