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13C nuclear magnetic resonance spectroscopy – a non-invasive in vivo method to measure muscle glycogen metabolism in pigs of different genotypes

机译:13C核磁共振波谱–一种非侵入性的体内方法,用于测量不同基因型猪的肌肉糖原代谢

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摘要

The three gene variants (: homozygous normal, : heterozygous, : homozygous defective) and the degree of Hampshire origin (0 %, 25 %, 50 %) serve as model for the investigation of the glycogen muscle metabolism in 27 pigs. The pigs originate from 4 different cross-breeding lines with an age varying between 41 and 58 days and a body weight between 7.3 and 19 kg. C nuclear magnetic resonance spectroscopy was applied non-invasively and in a few pigs also to study the metabolic processes in the biceps femoris muscle after halothane exposure. In contrast to no visible effects of the halothane challenge test, the heterozygous defective allele carriers showed a drastic reduction in the level of glycogen (57 %) coupled with an increase in body temperature (1.36 °C). Overall, these changes were intermediate compared to the dramatic response in the homozygous nn genotype and to the very slow processes in , considering that the drastic glycogen depletion in the heterozygous genotype occurred after a rather long time of halothane exposure ( >20 min). In addition, pigs with the highest degree of Hampshire origin (50% → allele frequency: ~31.5 %) showed the slowest glycogen depletion compared to pigs with a lower degree of Hampshire origin (0 or 25 %).
机译:这三个基因变体(正常纯合,杂合纯合,缺陷纯合)和汉普郡起源程度(0%,25%,50%)用作研究27头猪糖原肌代谢的模型。猪来自4个不同的杂交系,年龄在41至58天之间,体重在7.3至19公斤之间。 C核磁共振波谱技术被无创地应用,并且在几只猪中还研究了氟烷暴露后股二头肌的代谢过程。与氟烷攻击试验没有可见效果相反,杂合缺陷等位基因携带者显示糖原水平急剧下降(57%),同时体温升高(1.36℃)。总体而言,与纯合nn基因型中的剧烈反应和in的非常缓慢的过程相比,这些变化处于中间状态,考虑到杂合基因型中糖原的急剧消耗是在氟烷暴露较长时间(> 20分钟)后发生的。此外,与汉普郡起源程度较低的猪(0或25%)相比,汉普郡起源程度最高的猪(50%→等位基因频率:〜31.5%)显示出最慢的糖原消耗。

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