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Correlated mRNAs and miRNAs from co-expression and regulatory networks affect porcine muscle and finally meat properties

机译:来自共表达和调控网络的相关mRNA和miRNA影响猪肌肉,最终影响肉的特性

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Background Physiological processes aiding the conversion of muscle to meat involve many genes associated with muscle structure and metabolic processes. MicroRNAs regulate networks of genes to orchestrate cellular functions, in turn regulating phenotypes. Results We applied weighted gene co-expression network analysis to identify co-expression modules that correlated to meat quality phenotypes and were highly enriched for genes involved in glucose metabolism, response to wounding, mitochondrial ribosome, mitochondrion, and extracellular matrix. Negative correlation of miRNA with mRNA and target prediction were used to select transcripts out of the modules of trait-associated mRNAs to further identify those genes that are correlated with post mortem traits. Conclusions Porcine muscle co-expression transcript networks that correlated to post mortem traits were identified. The integration of miRNA and mRNA expression analyses, as well as network analysis, enabled us to interpret the differentially-regulated genes from a systems perspective. Linking co-expression networks of transcripts and hierarchically organized pairs of miRNAs and mRNAs to meat properties yields new insight into several biological pathways underlying phenotype differences. These pathways may also be diagnostic for many myopathies, which are accompanied by deficient nutrient and oxygen supply of muscle fibers.
机译:背景技术帮助肌肉向肉的转化的生理过程涉及与肌肉结构和代谢过程相关的许多基因。 MicroRNA调节基因网络以协调细胞功能,进而调节表型。结果我们应用加权基因共表达网络分析来确定与肉质表型相关的共表达模块,并高度丰富了涉及葡萄糖代谢,创伤反应,线粒体核糖体,线粒体和细胞外基质的基因。 miRNA与mRNA的负相关性和靶标预测可用于从与性状相关的mRNA的模块中选择转录本,以进一步鉴定与尸体性状相关的基因。结论鉴定了与尸体性状相关的猪肌肉共表达转录网络。 miRNA和mRNA表达分析的整合以及网络分析,使我们能够从系统角度解释差异调节基因。将转录本以及miRNA和mRNA的分层组织对的共表达网络链接到肉的特性,可以对表型差异的几种生物学途径产生新的见解。这些途径还可以诊断许多肌病,并伴有肌纤维营养和氧气供应不足。

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