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Metabolic rates associated with membrane fatty acids in mice selected for increased maximal metabolic rate

机译:与小鼠中的膜脂肪酸相关的代谢率用于增加最大代谢率

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摘要

Aerobic metabolism of vertebrates is linked to membrane fatty acid (FA) composition. Although the membrane pacemaker hypothesis posits that desaturation of FAs accounts for variation in resting or basal metabolic rate (BMR), little is known about the FA profiles that underpin variation in maximal metabolic rate (MMR). We examined membrane FA composition of liver and skeletal muscle in mice after seven generations of selection for increased MMR. In both liver and skeletal muscle, unsaturation index did not differ between control and high-MMR mice. We also examined membrane FA composition at the individual-level of variation. In liver, 18:0, 20:3 n-6, 20:4 n-6, and 22:6 n-3 FAs were significant predictors of MMR. In gastrocnemius muscle, 18:2 n-6, 20:4 n-6, and 22:6 n-3 FAs were significant predictors of MMR. In addition, muscle 16:1 n-7, 18:1 n-9, and 22:5 n-3 FAs were significant predictors of BMR, whereas no liver FAs were significant predictors of BMR. Our findings indicate that (i) individual variation in MMR and BMR appear to be linked to membrane FA composition in the skeletal muscle and liver, and (ii) FAs that differ between selected and control lines are involved in pathways that can affect MMR or BMR.
机译:脊椎动物的有氧代谢与膜脂肪酸(FA)的组成有关。尽管膜起搏器假说假设FA的去饱和是引起静息或基础代谢率(BMR)变化的原因,但对于支撑最大代谢率(MMR)变化的FA分布图知之甚少。我们选择了七代提高MMR后的小鼠肝脏和骨骼肌膜FA成分。在肝脏和骨骼肌中,不饱和指数在对照组和高MMR小鼠之间没有差异。我们还检查了个体变化水平上的膜FA组成。在肝脏中,18:0、20:3 n-6、20:4 n-6和22:6 n-3 FAs是MMR的重要预测因子。在腓肠肌中,18:2 n-6、20:4 n-6和22:6 n-3 FAs是MMR的重要预测指标。此外,肌肉16:1 n-7、18:1 n-9和22:5 n-3 FAs是BMR的重要预测指标,而没有肝脏FAs是BMR的重要预测指标。我们的发现表明(i)MMR和BMR的个体差异似乎与骨骼肌和肝脏中膜FA的成分有关,并且(ii)所选和对照系之间存在差异的FAs可能影响MMR或BMR的途径。

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