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UV radiation and freshwater zooplankton: damage, protection and recovery

机译:紫外线和淡水浮游动物:破坏,保护和恢复

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While many laboratory and field studies show that zooplankton are negatively affected when exposed to high intensities of ultraviolet radiation (UVR), most studies also indicate that zooplankton are well adapted to cope with large variations in theirUVR exposure in the pelagic zone of lakes. The response mechanisms of zooplankton are diverse and efficient and may explain the success and richness of freshwater zooplankton in optically variable waters. While no single behavioural or physiological protection mechanism seems to be superior, and while several unexplained and contradictory patterns exist in zooplankton UVR ecology, recent increases in our understanding are consistent with UVR playing an important role for zooplankton. This review examines the variability in freshwater zooplankton responses to UVR, with a focus on crustacean zooplankton (Cladocera and Copepoda). We present an overview of UVR-induced damages, and the protection and recovery mechanisms freshwater zooplankton use when exposed to UVR. We review the current knowledge of UVR impact on freshwater zooplankton at species and community levels, and discuss briefly how global change over the last three decades has influenced the UVR milieu in lakes.
机译:尽管许多实验室和现场研究表明,浮游动物在暴露于高强度的紫外线(UVR)时会受到负面影响,但大多数研究还表明,浮游动物非常适合应对湖泊中上层带的UVR暴露的较大变化。浮游动物的响应机制是多样且有效的,并且可以解释淡水浮游动物在光学可变水中的成功和丰富性。虽然没有单一的行为或生理保护机制似乎是优越的,并且浮游动物的UVR生态学中存在几种无法解释和矛盾的模式,但我们最近的了解与UVR在浮游动物中扮演重要角色是一致的。这篇综述研究了淡水浮游动物对UVR的响应的变异性,重点是甲壳类浮游动物(Cladocera和Copepoda)。我们概述了紫外线辐射诱发的损害,以及暴露于紫外线辐射时淡水浮游动物使用的保护和恢复机制。我们回顾了在物种和群落水平上对紫外线辐射对淡水浮游动物的影响的现有知识,并简要讨论了过去三十年中的全球变化如何影响湖泊中的紫外线辐射环境。

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