Influence of pH and temperature on force development and shortening velocity in skinned muscle fibres from fish
- 1 October 1988
- journal article
- Published by Springer Nature in Fish Physiology and Biochemistry
- Vol. 5 (4) , 257-262
- https://doi.org/10.1007/bf01874803
Abstract
Three species of fish were studied: Atlantic cod (Gadus morhua), sculpin (Myoxocephalus scorpius) (from the North Sea, temperature 2 to 12°C) andNotothenia neglecta (from Antarctica, temperature −2 to +2°C). Single fast muscle fibres were isolated from anterior myotomes and skinned with detergent in order to directly determine the effects of pH and temperature on force production and shortening velocity. In all species maximum force production (Po) was independent of pH over the range 7.3–8.0. Decreasing the pH from 7.3 to 6.6 reduced maximum force by 28% in fibres fromG. morhua andN. neglecta but had no effect on fibres fromM. scorpius. The depression in maximum force with acidosis was accompanied by a proportional decrease in stiffness and an increase in the rate of force recovery after stretch. Unloaded contraction velocity of cod fibres (Vmax) showed a pH optimum at around pH 7.6 decreasing by 31% at pH 6.6. Vmax of fibres from the other species was independent of pH over the range 6.6–8.0. The effects of pH on Po and Vmax were similar at 0 and 10°C. Thus for maximally activated fibres both force and contraction velocity are independent of temperature induced changes in pH. In some species acidosis depresses contractility and is likely to be a contributory factor to muscle fatigue.Keywords
This publication has 26 references indexed in Scilit:
- Evolutionary adaptation of muscle power output to environmental temperature: force-velocity characteristics of skinned fibres isolated from antarctic, temperate and tropical marine fishPflügers Archiv - European Journal of Physiology, 1985
- Ca2+-activated force-generating properties of mammalian skeletal muscle fibres: histochemically identified single peeled rabbit fibresJournal of Muscle Research and Cell Motility, 1984
- Recovery from stress following capture and anaesthesia of antarctic fish: haematology and blood chemistryJournal of Fish Biology, 1984
- The influence of temperature on extracellular and intracellular pH in the American eel, Anguilla rostrata (le sueur)Respiration Physiology, 1982
- Influence of temperature upon contractile activation and isometric force production in mechanically skinned muscle fibers of the frog.The Journal of general physiology, 1982
- Effects of fatigue and altered pH on isometric force and velocity of shortening at zero load in frog muscle fibresJournal of Muscle Research and Cell Motility, 1981
- Effect of temperature on isotonic twitch of white muscle and predicted maximum swimming speeds of skipjack tuna, Katsuwonus pelamisEnvironmental Biology of Fishes, 1979
- The Interaction of Body Temperature and Acid-Base Balance in Ectothermic VertebratesAnnual Review of Physiology, 1977
- Limit of fish swimming speedNature, 1975
- Proposed Mechanism of Force Generation in Striated MuscleNature, 1971