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Fishes In High-co_2, Acidified Oceans

机译:高CO_2酸化海洋中的鱼类

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Research interest in CO_2-driven ocean acidification has been centered on certain groups of calcifying marine organisms, but knowledge on the possible impacts of ocean acidification on fish is limited. Our survey of the existing literature on the effects of increased pCO_2 on fish (total of 116 papers) revealed that few studies were conducted under pCO_2 conditions relevant to the future scenarios of ocean acidification. Information is nearly absent on reproduction, early development, and behaviour of marine fish. The short experimental durations of these studies preclude forecasting of how mortality and growth of marine fish would be affected by future increases in seawater CO_2. Fish have been shown to maintain their oxygen consumption under elevated pCO_2 conditions, in contrast to declines seen in several marine invertebrates, in spite of possible additional energetic costs incurred by higher pCO_2. Impacts of prolonged CO_2 exposure on reproduction, early development, growth, and behaviour of marine fish are important areas that need urgent investigation. There is also a need to rapidly advance research into possible acclimation of marine fish to high pCO_2 environments, endocrine responses to prolonged CO_2 exposure, and indirect influences through food availability and quality on fish growth, survival and reproduction. Useful guidance could be gained from the rich literature on the effects of freshwater acidification.
机译:对CO_2驱动的海洋酸化的研究兴趣集中在某些钙化海洋生物体上,但是对海洋酸化对鱼类可能产生的影响的了解有限。我们对pCO_2增加对鱼类的影响的现有文献调查(总共116篇论文)显示,很少有人在与未来海洋酸化相关的pCO_2条件下进行研究。关于海鱼的繁殖,早期发育和行为的信息几乎不存在。这些研究的实验持续时间短,因此无法预测海水CO_2的未来增加将如何影响海水鱼类的死亡率和生长。尽管在较高的pCO_2条件下,尽管较高的pCO_2可能会增加能量消耗,但已证明鱼类在较高的pCO_2条件下仍能保持其氧气消耗。长期暴露于CO_2对海水鱼类繁殖,早期发育,生长和行为的影响是需要紧急调查的重要领域。还需要迅速推进有关海水鱼类适应高pCO_2环境,内分泌对长时间暴露于CO_2的反应以及通过食物供应和质量对鱼类生长,存活和繁殖的间接影响的可能的研究。可以从丰富的有关淡水酸化作用的文献中获得有用的指导。

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