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      Life Histories, Salinity Zones, and Sublethal Contributions of Contaminants to Pelagic Fish Declines Illustrated with a Case Study of San Francisco Estuary, California, USA

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          Climate change affects marine fishes through the oxygen limitation of thermal tolerance.

          A cause-and-effect understanding of climate influences on ecosystems requires evaluation of thermal limits of member species and of their ability to cope with changing temperatures. Laboratory data available for marine fish and invertebrates from various climatic regions led to the hypothesis that, as a unifying principle, a mismatch between the demand for oxygen and the capacity of oxygen supply to tissues is the first mechanism to restrict whole-animal tolerance to thermal extremes. We show in the eelpout, Zoarces viviparus, a bioindicator fish species for environmental monitoring from North and Baltic Seas (Helcom), that thermally limited oxygen delivery closely matches environmental temperatures beyond which growth performance and abundance decrease. Decrements in aerobic performance in warming seas will thus be the first process to cause extinction or relocation to cooler waters.
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            Evolution of phosphorus limitation in lakes.

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              The thermal regime of rivers: a review

              D. CAISSIE (2006)
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                Author and article information

                Journal
                Estuaries and Coasts
                Estuaries and Coasts
                Springer Nature
                1559-2723
                1559-2731
                March 2012
                November 2011
                : 35
                : 2
                : 603-621
                Article
                10.1007/s12237-011-9459-6
                7b94de46-a2fd-4651-8387-4c1e903619ce
                © 2012
                History

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