Abstract
Heat-stressed pigs experience metabolic alterations, including altered insulin profiles, reduced lipid mobilization, and compromised intestinal integrity. This is bioenergetically distinct from thermal neutral pigs on a similar nutritional plane. To delineate differences in substrate preferences between direct and indirect (via reduced feed intake) heat stress effects, skeletal muscle fuel metabolism was assessed. Pigs (35.3 ± 0.8 kg) were randomly assigned to three treatments: thermal neutral fed ad libitum (TN; 21°C, n = 8), heat stress fed ad libitum (HS; 35°C, n = 8), and TN, pair-fed/HS intake (PF; n = 8) for 7 days. Body temperature (TB) and feed intake (FI) were recorded daily. Longissimus dorsi muscle was biopsied for metabolic assays on days -2, 3, and 7 relative to initiation of environmental treatments. Heat stress increased TB and decreased FI (P < 0.05). Heat stress inhibited incomplete fatty acid oxidation and glucose oxidation (P < 0.05). Metabolic flexibility decreased in HS pigs compared with TN and PF controls (P < 0.05). Both phospho-fructokinase and pyruvate dehydrogenase (PDH) activities increased in PF (P < 0.05); however, TN and HS did not differ. Heat stress inhibited citrate synthase and β-hydroxyacyl-CoA dehydrogenase (β-HAD) activities (P < 0.05). Heat stress did not alter PDH phosphorylation or carnitine palmitoyltransferase 1 abundance but reduced acetyl-CoA carboxylase 1 (ACC1) protein abundance (P < 0.05). In conclusion, HS decreased skeletal muscle fatty acid oxidation and metabolic flexibility, likely involving β-HAD and ACC regulation.
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Zhao, L., McMillan, R. P., Xie, G., Giridhar, S. G. L. W., Baumgard, L. H., El-Kadi, S., … Rhoads, R. P. (2018). Heat stress decreases metabolic flexibility in skeletal muscle of growing pigs. American Journal of Physiology - Regulatory Integrative and Comparative Physiology, 315(6), R1096–R1106. https://doi.org/10.1152/ajpregu.00404.2017
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