Postprandial changes in enteric electrical activity and gut blood flow in rainbow trout (Oncorhynchus mykiss) acclimated to different temperatures
Author:
Gräns Albin1, Albertsson Fredrik1, Axelsson Michael1, Olsson Catharina1
Affiliation:
1. Department of Zoology, University of Gothenburg, Göteborg,Sweden
Abstract
SUMMARYEnteric electrical activity, cardiac output and gut blood flow were measured in rainbow trout (Oncorhynchus mykiss) acclimated to either 10°C or 16°C. Enteric electrical activity showed, in both the fasted and postprandial state, a distinct pattern with clusters of burst-like events interspersed by silent periods. The frequency of electrical events increased postprandially for both acclimation groups. Event frequency increased from 3.0±0.5 to 9.6±1.4 events min–1 and from 5.9±0.9 to 11.8±2.0 events min–1 in the 10°C and 16°C groups, respectively. Similarly, the number of events per cluster increased postprandially for both acclimation groups. Gut blood flow, cardiac output and heart rate increased after feeding. The gut blood flow significantly increased in both groups and peaked at 257±19% and 236±22% in the 10°C and 16°C groups, respectively. There was a strong correlation between the number of events and gut blood flow at both temperatures. Comparison between the two groups showed that fish acclimated to 16°C may have an increased cost of sustaining the basal activity of the gut compared with the group acclimated to 10°C. In conclusion, we have for the first time measured enteric electrical activity in vivo in a fish species and we have also demonstrated a strong correlation between gut blood flow and enteric electrical activity in fasted and postprandial fish.
Publisher
The Company of Biologists
Subject
Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics
Reference52 articles.
1. Altimiras, J. and Larsen, E. (2000). Non-invasive recording of heart rate and ventilation rate in rainbow trout during rest and swimming: fish go wireless! J. Fish Biol.57,197-209. 2. Altimiras, J., Claireaux, G., Sandblom, E., Farrell, A. P.,McKenzie, D. J. and Axelsson, M. (2008). Gastrointestinal blood flow and postprandial metabolism in swimming sea bass Dicentrarchus labrax.Physiol. Biochem. Zool.81,663-672. 3. Aviv, R., Policker, S., Brody, F., Bitton, O., Haddad, W.,Kliger, A., Sanmiguel, C. P. and Soffer, E. E. (2008). Circadian patterns of gastric electrical and mechanical activity in dogs. Neurogastroenterol. Motil.20, 63-68. 4. Axelsson, M., Fritsche, R., Holmgren, S., Grove, D. J. and Nilsson, S. (1991). Gut blood-flow in the estuarine crocodile, Crocodylus-Porosus. Acta Physiol. Scand.142,509-516. 5. Axelsson, M., Thorarensen, H., Nilsson, S. and Farrell, A. P. (2000). Gastrointestinal blood flow in the red Irish lord,Hemilepidotus hemilepidotus: long-term effects of feeding and adrenergic control. J. Comp. Physiol. B Biochem. Syst. Environ. Physiol.170,145-152.
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