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RNA-Seq transcriptome analysis of breast muscle in Pekin ducks supplemented with the dietary probiotic Clostridium butyricum

机译:补充饮食益生菌酪酸梭菌的北京鸭鸭胸肌RNA-Seq转录组分析

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Increased attention is being paid to breast muscle yield and meat quality in the duck breeding industry. Our previous report has demonstrated that dietary Clostridium butyricum (C. butyricum) can improve meat quality of Pekin ducks. However, the potential biological processes and molecular mechanisms that are modulated by dietary C. butyricum in the breast muscle of Pekin ducks remain unknown. Supplementation with C. butyricum increased growth performance and meat yield. Therefore, we utilized de novo assembly methods to analyze the RNA-Seq transcriptome profiles in breast muscle to explore the differentially expressed genes between C. butyricum-treated and control Pekin ducks. A total of 1119 differentially expressed candidate genes were found of which 403 genes were significantly up-regulated and 716 genes were significantly down-regulated significantly. qRT-PCR analysis was used to confirm the accuracy of the of RNA-Seq results. GO annotations revealed potential genes, processes and pathways that may participate in meat quality and muscle development. KEGG pathway analysis showed that the differentially expressed genes participated in numerous pathways related to muscle development, including ECM-receptor interaction, the MAPK signaling pathway and the TNF signaling pathway. This study suggests that long-time dietary supplementation with C. butyricum can modulate muscle development and meat quality via altering the expression patterns of genes involved in crucial metabolic pathways. The findings presented here provide unique insights into the molecular mechanisms of muscle development in Pekin ducks in response to dietary C. butyricum.
机译:鸭养殖业越来越重视胸肌产量和肉质。我们以前的报告已经证明,日粮酪酸梭菌(C. butyricum)可以改善北京烤鸭的肉质。然而,北冰鸭胸肌中日粮丁酸梭菌调节的潜在生物过程和分子机制仍然未知。补充丁酸梭菌可提高生长性能和肉产量。因此,我们利用从头组装方法分析了乳腺肌肉中的RNA-Seq转录组图谱,以探究丁酸鸭和对照北京鸭之间差异表达的基因。共发现1119个差异表达的候选基因,其中403个基因显着上调,而716个基因显着下调。 qRT-PCR分析用于确认RNA-Seq结果的准确性。 GO注释揭示了可能参与肉质和肌肉发育的潜在基因,过程和途径。 KEGG通路分析表明,差异表达的基因参与了许多与肌肉发育相关的通路,包括ECM-受体相互作用,MAPK信号通路和TNF信号通路。这项研究表明,长期饮食中添加丁酸梭菌可以通过改变关键代谢途径中相关基因的表达模式来调节肌肉发育和肉质。这里提出的发现提供了独特的见解,以响应饮食丁酸梭菌对北京烤鸭肌肉发育的分子机制的影响。

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