Oxidative and glycolytic skeletal muscles show marked differences in gene expression profile in Chinese Qingyuan partridge chickens
نویسندگان
چکیده
Oxidative and glycolytic myofibers have different structures and metabolic characteristics and their ratios are important in determining poultry meat quality. However, the molecular mechanisms underlying their differences are unclear. In this study, global gene expression profiling was conducted in oxidative skeletal muscle (obtained from the soleus, or SOL) and glycolytic skeletal muscle (obtained from the extensor digitorum longus, or EDL) of Chinese Qingyuan partridge chickens, using the Agilent Chicken Gene Expression Chip. A total of 1224 genes with at least 2-fold differences were identified (P < 0.05), of which 654 were upregulated and 570 were downregulated in SOL. GO, KEGG pathway, and co-expressed gene network analyses suggested that PRKAG3, ATP2A2, and PPARGC1A might play important roles in myofiber composition. The function of PPARGC1A gene was further validated. PPARGC1A mRNA expression levels were higher in SOL than in EDL muscles throughout the early postnatal development stages. In myoblast cells, shRNA knockdown of PPARGC1A significantly inhibited some muscle development and transition-related genes, including PPP3CA, MEF2C, and SM (P < 0.01 or P < 0.05), and significantly upregulated the expression of FWM (P < 0.05). Our study demonstrates strong transcriptome differences between oxidative and glycolytic myofibers, and the results suggest that PPARGC1A is a key gene involved in chicken myofiber composition and transition.
منابع مشابه
Ursolic acid induces myoglobin expression and skeletal muscle remodeling in mice
Introduction: Ursolic Acid (UA) is a lipophilic triterpenoid compound, found in large amounts in apple peel. Anabolic effects of UA on the skeletal muscle and the role of this tissue as a key regulator of systematic aging aroused this question in mind whether UA might amend skeletal muscle performances such as myoglobin expression and also whether it switches skeletal muscle fibers from glyc...
متن کاملFiber Type-Specific Nitric Oxide Protects Oxidative Myofibers against Cachectic Stimuli
Oxidative skeletal muscles are more resistant than glycolytic muscles to cachexia caused by chronic heart failure and other chronic diseases. The molecular mechanism for the protection associated with oxidative phenotype remains elusive. We hypothesized that differences in reactive oxygen species (ROS) and nitric oxide (NO) determine the fiber type susceptibility. Here, we show that intraperito...
متن کاملThe Effect of High and Low-Intensity Interval Training on TRF1 and TRF2 Gene Expression in Slow and Fast-Twitch Skeletal Muscles of C57BL/6 Mice: An Experimental Study
Background and Objectives: The process of chronic diseases and aging is associated with reduced telomere length. The aim of this study was to investigate the effect of high-intensity interval training (HIIT) and low-intensity interval training (LIIT) on telomere repeat binding factor 1 and 2 (TRF1 and TRF2) in Soleus (SOL) muscle as a slow-twitch (ST) and Extensor Digitorum Longus (EDL) muscle ...
متن کاملThe Expression of Myogenin and Myostatin Genes in Baluchi Sheep
Myogenin gene (MYoG) affects the synthesis of muscle myofibrillar growth and increase of meat production. The myostatin (MSTN) gene is identified as a specific negative regulator of skeletal muscle growth. Reduction of the expression level of MSTN throughmutation in the sequence of this gene leads to an increase of myogenesis and regeneration of muscle cells during the postnatal growing period ...
متن کاملEffect of eight weeks of resistance training on the expression of klotho protein and insulin-like growth factor 1 genes in slow twitch and fast twitch skeletal muscles of aged Wistar rats
Background and Aims: Klotho protein is a substance effective in increasing life expectancy. Moreover, it prevents muscle atrophy, osteoporosis, and cardiovascular disease. Therefore, the present aimed to assess changes in the expression of klotho protein and insulin-like growth factor 1 (IGF-1) genes in the muscles of aged Wistar rats after eight weeks of resistance training. Materials and Met...
متن کامل