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Effect of restricted feeding on metabolic adaptations of Kamphaengsaen and crossbred Brahman heifers.

机译:限制饲喂对甘烹青和杂交婆罗门小母牛代谢适应的影响。

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摘要

Metabolic adaptation during feed deprivation was determined in five Kamphaengsaen (KPS) and six crossbred Brahman (Crossbred Bra) heifers. All heifers were fed at the rate of 85% of the metabolizable energy requirement for maintenance. At the end of 20 days of restricted feeding, the Crossbred Bra heifers lost more bodyweight than the KPS heifers (12.0 vs. 7.2 kg) (P<0.05). In both groups of heifers there was a similar depletion of back-fat thickness, however, the loin eye area of the Crossbred Bra heifers decreased more than KPS heifers (8.43 vs. 0.92%; P<0.05). Feed restriction elevated the rate of lipolysis in adipose tissue, resulting in increased nonesterified fatty acids concentrations in plasma. The Crossbred Bra heifers had a greater serum high density lipoprotein triacylglycerol concentration than the KPS heifers (17.02 vs. 9.53 mg/dL; P<0.05). This would suggest that the hepatic tissues in the Crossbred Bra heifers exported more triacylglycerols as very low density lipoprotein than in the KPS heifers. During the feed restriction period, the plasma beta -hydroxybutyrate concentration for the heifers was elevated; however, Crossbred Bra heifers shown less plasma beta -hydroxybutyrate concentration than KPS heifers (242 vs. 326 micro mol/L; P<0.05). This may be due to the difference in very low density lipoprotein secretion between the two groups of heifers. There were significant differences in plasma urea-nitrogen and plasma glucose concentrations (P<0.05), with the KPS heifers showing less extensive plasma urea-nitrogen concentration and hypoglycemia, whereas the Crossbred Bra heifers had more extensive plasma ureanitrogen concentration and euglycemia. These two metabolites were suggestive of a ketogenic effect on muscle protein catabolism. In conclusion, it was found that the underfed KPS heifers utilized ketone bodies as their energy source, thus limiting body protein degradation, whereas the Crossbred Bra adapted to feed deprivation by exhibiting an auto-regulation mechanism for ketogenesis and broke down body protein extensively to satisfy their demand for glucose..
机译:在5个甘烹森(KPS)和6个杂交布拉曼(Crossbred Bra)小母牛中确定了饲料缺乏期间的代谢适应性。所有小母牛都以维持所需的代谢能的85%的速度进行饲喂。在限制进食的20天结束时,杂种Bra母牛的体重比KPS母牛的体重减轻了更多(12.0对7.2千克)(P <0.05)。两组小母牛的后脂肪厚度都有相似的消耗,但是,杂种Bra小母牛的腰眼面积下降幅度大于KPS小母牛(8.43对0.92%; P <0.05)。进食限制提高了脂肪组织中脂解的速率,导致血浆中非酯化脂肪酸的浓度增加。杂种Bra母牛比KPS母牛具有更高的血清高密度脂蛋白三酰甘油浓度(17.02对9.53 mg / dL; P <0.05)。这表明杂种Bra母牛的肝脏组织比KPS母牛输出的三酰甘油脂密度非常低。在饲喂限制期内,小母牛的血浆β-羟基丁酸酯浓度升高。但是,杂种Bra母牛的血浆β-羟基丁酸酯浓度比KPS母牛低(242对326 micro mol / L; P <0.05)。这可能是由于两组小母牛之间极低密度脂蛋白分泌的差异。血浆尿素氮和血浆葡萄糖浓度存在显着差异(P <0.05),KPS小母牛显示的血浆尿素氮浓度和低血糖水平较低,而杂种Bra小母牛的血浆尿素氮浓度和血糖水平较高。这两种代谢物提示对肌肉蛋白质分解代谢有生酮作用。结论是,发现饲喂不足的KPS母牛利用酮体作为其能量来源,从而限制了人体蛋白质的降解,而杂种胸罩则通过表现出生酮的自动调节机制而适应了饲料的剥夺,并广泛分解人体蛋白质以满足他们对葡萄糖的需求

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