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Effects of temperature on mitochondrial function in the Antarctic fish Trematomus bernacchii
Effects of temperature on O sub(2) consumption by mitochondria of the Antarctic fish Trematomus bernacchii were compared with effects obtained with mitochondria from tropical (Sarotherodon mossambicus) and temperate zone fishes (Sebastes carnatus and Sebastes mystinus). Arrhenius plots of O sub(2) c...
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Published in: | Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology Biochemical, systemic, and environmental physiology, 1998-04, Vol.168 (3), p.190-196 |
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Main Authors: | , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that cite this one |
Online Access: | Get full text |
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Summary: | Effects of temperature on O sub(2) consumption by mitochondria of the Antarctic fish Trematomus bernacchii were compared with effects obtained with mitochondria from tropical (Sarotherodon mossambicus) and temperate zone fishes (Sebastes carnatus and Sebastes mystinus). Arrhenius plots of O sub(2) consumption versus temperature exhibited slope discontinuities ("breaks") at temperatures (Arrhenius break temperatures: ABTs) reflective of the species' adaptation temperatures. The ABT for mitochondria of T. bernacchii is the lowest reported for any animal and is similar to 12 degree C below the value predicted by a regression equation based on ABT data for several invertebrates and fishes. The temperature at which the acceptor control ratio (ACR), an index of efficiency of coupling of electron transport to synthesis of ATP, began to decrease with rising temperature also reflected adaptation temperature. The decrease in ACR with rising temperature began at similar to 18 degree C for mitochondria of T. bernacchii, in contrast to similar to 35 degree C for mitochondria of Sarotheridon mossambica. Maintaining T. bernacchii at 4 degree C for 2 weeks led to no changes in ABT or in the response of ACR to temperature. The thermal sensitivities of mitochondria of T. bernacchii reflect the high level of cold adaptation and stenothermy that is characteristic of Antarctic Notothenioid fishes. |
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ISSN: | 0174-1578 1432-136X |
DOI: | 10.1007/s003600050136 |