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太阳紫外线辐射对水生生态系统的影响及其与气候变化的相互作用。

Effects of solar UV radiation on aquatic ecosystems and interactions with climate change.

作者信息

Häder D-P, Kumar H D, Smith R C, Worrest R C

机构信息

Institut für Botanik und Pharmazeutische Biologie, Friedrich-Alexander-Universität, Staudtstr. 5, D-91058 Erlangen, Germany.

出版信息

Photochem Photobiol Sci. 2007 Mar;6(3):267-85. doi: 10.1039/b700020k. Epub 2007 Jan 25.

Abstract

Recent results continue to show the general consensus that ozone-related increases in UV-B radiation can negatively influence many aquatic species and aquatic ecosystems (e.g., lakes, rivers, marshes, oceans). Solar UV radiation penetrates to ecological significant depths in aquatic systems and can affect both marine and freshwater systems from major biomass producers (phytoplankton) to consumers (e.g., zooplankton, fish, etc.) higher in the food web. Many factors influence the depth of penetration of radiation into natural waters including dissolved organic compounds whose concentration and chemical composition are likely to be influenced by future climate and UV radiation variability. There is also considerable evidence that aquatic species utilize many mechanisms for photoprotection against excessive radiation. Often, these protective mechanisms pose conflicting selection pressures on species making UV radiation an additional stressor on the organism. It is at the ecosystem level where assessments of anthropogenic climate change and UV-related effects are interrelated and where much recent research has been directed. Several studies suggest that the influence of UV-B at the ecosystem level may be more pronounced on community and trophic level structure, and hence on subsequent biogeochemical cycles, than on biomass levels per se.

摘要

近期结果继续表明,人们普遍认为与臭氧相关的紫外线B辐射增加会对许多水生物种和水生生态系统(如湖泊、河流、沼泽、海洋)产生负面影响。太阳紫外线辐射能穿透到水生系统中具有生态意义的深度,并能影响从主要生物量生产者(浮游植物)到食物网中更高层级消费者(如浮游动物、鱼类等)的海洋和淡水系统。许多因素会影响辐射穿透天然水体的深度,包括溶解有机化合物,其浓度和化学成分可能会受到未来气候和紫外线辐射变化的影响。也有大量证据表明,水生物种利用多种机制来抵御过度辐射。通常,这些保护机制会给物种带来相互冲突的选择压力,使紫外线辐射成为生物体的额外压力源。正是在生态系统层面,对人为气候变化和紫外线相关影响的评估相互关联,也是近期许多研究的方向所在。几项研究表明,紫外线B在生态系统层面的影响可能对群落和营养级结构,进而对随后的生物地球化学循环,比对生物量水平本身更为显著。

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