Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 1 de 1
Filter
Add more filters

Database
Language
Affiliation country
Publication year range
1.
J Anim Sci ; 97(10): 4101-4113, 2019 Oct 03.
Article in English | MEDLINE | ID: mdl-31410479

ABSTRACT

Feedlot performance is reduced by heat stress and improved by ß adrenergic agonists (ßAA). However, the physiological mechanisms underlying these outcomes are not well characterized, and anecdotal reports suggest that ßAA may confound the effects of heat stress on wellbeing. Thus, we sought to determine how heat stress and ßAA affect growth, metabolic efficiency, and health indicators in lambs on a feedlot diet. Wethers (38.6 ± 1.9 kg) were housed under thermoneutral (controls; n = 25) or heat stress (n = 24) conditions for 21 d. In a 2 × 3 factorial, their diets contained no supplement (unsupplemented), ractopamine (ß1AA), or zilpaterol (ß2AA). Blood was collected on days -3, 3, 9, and 21. On day 22, lambs were harvested and ex vivo skeletal muscle glucose oxidation was determined to gauge metabolic efficiency. Feet and organ tissue damage was assessed by veterinary pathologists. Heat stress reduced (P < 0.05) feed intake by 21%, final bodyweight (BW) by 2.6 kg, and flexor digitorum superficialis (FDS) muscle mass by 5%. ß2AA increased (P < 0.05) FDS mass/BW by 9% and average muscle fiber area by 13% compared with unsupplemented lambs. Blood lymphocytes and monocytes were greater (P < 0.05) in heat-stressed lambs, consistent with systemic inflammation. Plasma insulin was 22% greater (P < 0.05) and glucose/insulin was 16% less (P < 0.05) in heat-stressed lambs than controls. Blood plasma urea nitrogen was increased (P < 0.05) by heat stress on day 3 but reduced (P < 0.05) on days 9 and 21. Plasma lipase and lactate dehydrogenase were reduced (P < 0.05) by heat stress. Glucose oxidation was 17% less (P < 0.05) in muscle from heat-stressed lambs compared with controls and 15% greater (P < 0.05) for ß2AA-supplemented compared with unsupplemented lambs. Environment and supplement interacted (P < 0.05) for rectal temperature, which was increased (P < 0.05) by heat stress on all days but more so (P < 0.05) in ß2AA-supplemented lambs on days 4, 9, and 16. Heat stress increased (P < 0.05) the frequency of hoof wall overgrowth, but ßAA did not produce any pathologies. We conclude that reduced performance in heat-stressed lambs was mediated by reduced feed intake, muscle growth, and metabolic efficiency. ß2AA increased muscle growth and improved metabolic efficiency by increasing muscle glucose oxidation, but no such effects were observed with ractopamine. Finally, ßAA supplementation was not detrimental to health indicators in this study, nor did it worsen the effects of heat stress.


Subject(s)
Adrenergic beta-Agonists/administration & dosage , Heat Stress Disorders/veterinary , Hypertrophy/veterinary , Muscular Diseases/veterinary , Phenethylamines/administration & dosage , Sheep Diseases/drug therapy , Trimethylsilyl Compounds/administration & dosage , Animal Feed/analysis , Animals , Blood Urea Nitrogen , Body Weight , Diet/veterinary , Dietary Supplements , Heat Stress Disorders/metabolism , Heat-Shock Response/drug effects , Hot Temperature , Humidity , Hypertrophy/drug therapy , Hypertrophy/physiopathology , Immunohistochemistry , Male , Muscular Diseases/drug therapy , Muscular Diseases/physiopathology , Myosin Heavy Chains/analysis , Random Allocation , Sheep , Sheep Diseases/physiopathology , Sheep, Domestic
SELECTION OF CITATIONS
SEARCH DETAIL