globalchange  > 过去全球变化的重建
DOI: 10.3389/fmars.2019.00210
WOS记录号: WOS:000465457100001
论文题名:
Reevaluating the Role of Organic Matter Sources for Coastal Eutrophication, Oligotrophication, and Ecosystem Health
作者: Deininger, Anne1,2,3; Frigstad, Helene2,3
通讯作者: Deininger, Anne
刊名: FRONTIERS IN MARINE SCIENCE
EISSN: 2296-7745
出版年: 2019
卷: 6
语种: 英语
英文关键词: browning ; coastal darkening ; dissolved organic carbon ; eutrophication ; nutrients ; organic carbon ; terrestrial organic matter
WOS关键词: LONG-TERM TRENDS ; CLIMATE-CHANGE ; TERRESTRIAL RUNOFF ; CORAL-REEFS ; BALTIC SEA ; FOOD-WEB ; CYANOBACTERIAL BIOMASS ; HUMIC SUBSTANCES ; RIVER DISCHARGE ; CARBON
WOS学科分类: Environmental Sciences ; Marine & Freshwater Biology
WOS研究方向: Environmental Sciences & Ecology ; Marine & Freshwater Biology
英文摘要:

Organic matter (OM) in aquatic systems is either produced internally (autochthonous OM) or delivered from the terrestrial environment (ter-OM). For eutrophication (or the reverse - oligotrophication), the amount of autochthonous OM plays a key role for coastal ecosystem health. However, the influence of ter-OM on eutrophication or oligotrophication processes of coastal ecosystems is largely unclear. Therefore, ter-OM, or ter-OM proxies are currently not included in most policies or monitoring programs on eutrophication. Nevertheless, ter-OM is increasingly recognized as a strong driver of aquatic productivity: By influencing underwater light conditions and nutrient- and carbon availability, increased ter-OM input may shift systems from autotrophic toward heterotrophic production, but also alter the interactions between benthic, and pelagic habitats. Thus, by changing baseline conditions in coastal zones, ongoing, and predicted changes in inputs of ter-OM due to climate change (e.g., in precipitation) and anthropogenic activities (e.g., reduced sulfate deposition, damming, and coastal erosion) may strongly modify eutrophication symptoms within affected ecosystems, but also hinder recovery from eutrophication following a reduction in nutrient loadings (i.e., oligotrophication). In this review, we aim to shed light upon the role of ter-OM for coastal eutrophication and oligotrophication processes and ecosystem health. Specifically, we (1) discuss the theoretical interactions between ter-OM and eutrophication and oligotrophication processes in coastal waters, (2) present global case studies where altered ter-OM supply to coastal ecosystems has shifted baseline conditions, with implications for eutrophication and oligotrophication processes, and (3) provide an outlook and recommendations for the future management of coastal zones given changes in ter-OM input. We conclude that it is essential to include and target all OM sources (i.e., also ter-OM) in monitoring programs to better understand the consequences of both eutrophication and oligotrophication processes on coastal ecosystems. Our review strongly urges to include ter-OM, or ter-OM proxies in eutrophication monitoring, and policies to safeguard coastal ecosystem health also under changing climatic conditions and globally increasing anthropogenic perturbations of coastal ecosystems.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/136724
Appears in Collections:过去全球变化的重建

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作者单位: 1.Univ Agder, Dept Nat Sci, Kristiansand, Norway
2.Norwegian Inst Water Res, Grimstad, Norway
3.Univ Agder, Ctr Coastal Res, Kristiansand, Norway

Recommended Citation:
Deininger, Anne,Frigstad, Helene. Reevaluating the Role of Organic Matter Sources for Coastal Eutrophication, Oligotrophication, and Ecosystem Health[J]. FRONTIERS IN MARINE SCIENCE,2019-01-01,6
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