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首页> 外文期刊>The Veterinary Journal >Exercise influences circadian gene expression in equine skeletal muscle
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Exercise influences circadian gene expression in equine skeletal muscle

机译:运动对马骨骼肌中昼夜节律基因表达的影响

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Circadian rhythms are endogenously generated 24-h oscillations that coordinate numerous aspects of mammalian physiology, metabolism and behaviour. The existence of a molecular circadian clock in equine skeletal muscle has previously been demonstrated. This study investigates how the circadian 24-h expression of exercise-relevant genes in skeletal muscle is influenced by a regular exercise regime. Mid-gluteal, percutaneous muscle biopsies were obtained over a 24-h period from six Thoroughbred mares before and after an 8-week exercise programme. Real-time qPCR assays were used to assess the expression patterns of core clock genes ARNTL, PER2, NR1D1, clock-controlled gene DBP, and muscle genes MYF6, UCP3, VEGFA, FOXO1, MYOD1, PPARGC1A, PPARGC1B, FBXO32 and PDK4.Two-way repeated measures ANOVA revealed a significant interaction between circadian time and exercise for muscle genes MYF6, UCP3, MYOD1 and PDK4. A significant effect of time was observed for all genes with the exception of VEGFA, where a main effect of exercise was observed. By cosinor analysis, the core clock genes, ARNTL (P < 0.01) and NR1D1 (P < 0.05), showed 24-h rhythmicity both pre- and post-exercise, while PER2 expression was rhythmic post-exercise (P < 0.05) but not pre-exercise. The expression profiles of muscle genes MYOD1 and MYF6 showed significant fits to a 24-h cosine waveform indicative of circadian rhythmicity post-exercise only (P < 0.01). This study suggests that the metabolic capacity of muscle is influenced by scheduled exercise and that optimal athletic performance may be achieved when exercise times and competition times coincide.
机译:昼夜节律是内源性的24小时振荡,可协调哺乳动物生理,代谢和行为的许多方面。先前已证明马骨骼肌中存在分子昼夜节律时钟。这项研究调查了骨骼肌中与运动有关的基因的昼夜节律24小时表达如何受到常规运动方式的影响。在进行为期8周的锻炼计划之前和之后的24小时内,从6匹纯种母马获得了臀中部经皮肌肉活检。实时qPCR分析用于评估核心时钟基因ARNTL,PER2,NR1D1,时钟控制基因DBP和肌肉基因MYF6,UCP3,VEGFA,FOXO1,MYOD1,PPARGC1A,PPARGC1B,FBXO32和PDK4的表达模式.2重复测量方差分析显示肌肉基因MYF6,UCP3,MYOD1和PDK4的昼夜节律与锻炼之间存在显着相互作用。除VEGFA外,所有基因均观察到时间的显着影响,而VEGFA则观察到运动的主要作用。通过余弦分析,核心时钟基因ARNTL(P <0.01)和NR1D1(P <0.05)在运动前和运动后均显示24小时节律性,而PER2在运动后具有节律性(P <0.05),但不运动前。肌肉基因MYOD1和MYF6的表达谱与24小时余弦波形非常吻合,仅表示运动后的昼夜节律(P <0.01)。这项研究表明,肌肉的代谢能力受计划的运动影响,并且当运动时间和比赛时间重合时,可能会达到最佳运动表现。

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