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Liver mitochondrial oxygen consumption and proton leak kinetics in broilers supplemented with dietary copper or zinc following coccidiosis challenge

机译:肝脏线粒体氧气消耗和质子泄漏动力学在肉鸡补充有膳食铜或锌的肉体挑战

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摘要

Mitochondrial respiration was assessed in sixteen 7-day-old broilers as a subset of a larger study assessing the effects of Cu and Zn supplementation above requirements with a coccidiosis challenge on gain/feed ratio. The birds were selected from four treatments (four birds/treatment): a control diet (Cu 15mg/kg and Zn 60mg/kg) + coccidiosis challenge (CC), a Cu diet with 245mg/kg Cu from tribasic copper chloride (TBCC) + CC, a negative control diet (Cu 15mg/kg and Zn 60mg/kg) - CC and a Zn diet with 2000mg/kg Zn from ZnO. The diets were composed of 49% corn, 40% soybean meal, 6.2% vegetable oil (diet dry matter=90.62%, crude protein=21.37%, fat=7.7%, metabolizable energy=12.1 MJ/day) and were fed for 14days. Birds were dissected, and approximately one gram of liver tissue was used for mitochondrial oxygen consumption and proton leak kinetics assays. Respiratory control ratio and mitochondrial proton leak assessed by calculating rates of oxygen consumption at 175mV membrane potential were greater for the negative control group, but there were no differences in average gain/feed among treatments. In summary, broilers that did not undergo coccidiosis challenge had lower proton leak and higher respiratory control ratio. However, the impact of supplementation of Cu and Zn above requirements did not appear to prevent changes in respiratory control ratio and proton leak kinetics with coccidiosis challenge.
机译:在16日7日龄肉鸡中评估了线粒体呼吸,作为评估Cu和Zn补充以上要求的较大研究的较大研究的子集。这些鸟类选自四种治疗(四只鸟/治疗):对照饮食(Cu 15mg / kg和Zn 60mg / kg)+椰子症攻击(Cc),Cu饮食来自三肢氯化铜(TBCC)的245mg / kg Cu + Cc,阴性对照饮食(Cu 15mg / kg和Zn 60mg / kg) - Cc和ZnO的Zn饮食,来自ZnO的2000mg / kg Zn。饮食由49%的玉米,40%豆粕,6.2%植物油(饮食干物质= 90.62%,粗蛋白= 21.37%,脂肪= 7.7%,代谢能量= 12.1 mJ /天),并被喂入14天。解剖鸟类,并且大约一克肝组织用于线粒体氧消耗和质子泄漏动力学测定。通过计算175mV膜电位的氧气消耗率评估的呼吸控制率和线粒体质子泄漏对于阴性对照组更大,但治疗中的平均增益/饲料没有差异。总之,没有经历球尾病挑战的肉鸡具有较低的质子泄漏和更高的呼吸控制比率。然而,补充Cu和Zn的对要求的影响似乎并未妨碍呼吸控制比和质子泄漏动力学的变化与椰子症攻击。

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