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Muscle transcriptome analysis reveals molecular pathways and biomarkers involved in extreme ultimate pH and meat defect occurrence in chicken

机译:肌肉转录组分析揭示了鸡终极pH值和肉缺陷发生中涉及的分子途径和生物标志物

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摘要

The processing ability and sensory quality of chicken breast meat are highly related to its ultimate pH (pHu), which is mainly determined by the amount of glycogen in the muscle at death. To unravel the molecular mechanisms underlying glycogen and meat pHu variations and to identify predictive biomarkers of these traits, a transcriptome profiling analysis was performed using an Agilent custom chicken 8 × 60 K microarray. The breast muscle gene expression patterns were studied in two chicken lines experimentally selected for high (pHu+) and low (pHu−) pHu values of the breast meat. Across the 1,436 differentially expressed (DE) genes found between the two lines, many were involved in biological processes related to muscle development and remodelling and carbohydrate and energy metabolism. The functional analysis showed an intensive use of carbohydrate metabolism to produce energy in the pHu− line, while alternative catabolic pathways were solicited in the muscle of the pHu+ broilers, compromising their muscle development and integrity. After a validation step on a population of 278 broilers using microfluidic RT-qPCR, 20 genes were identified by partial least squares regression as good predictors of the pHu, opening new perspectives of screening broilers likely to present meat quality defects.
机译:鸡胸肉的加工能力和感官质量与其最终pH(pHu)高度相关,pH最终取决于死亡时肌肉中糖原的含量。为了揭示糖原和肉pHu变异的潜在分子机制,并鉴定这些特征的预测生物标记,使用安捷伦定制的8××60×K鸡微阵列进行了转录组谱分析。在两个鸡系中研究了胸肌基因表达模式,这些鸡系通过实验选择了胸肉的高(pHu +)和低(pHu-)pHu值。在两系之间发现的1,436个差异表达(DE)基因中,许多基因参与了与肌肉发育和重塑以及碳水化合物和能量代谢有关的生物过程。功能分析表明,大量使用碳水化合物代谢来在pHu-系中产生能量,而在pHu +肉鸡的肌肉中寻求其他分解代谢途径,从而损害了它们的肌肉发育和完整性。在使用微流控RT-qPCR对278只肉鸡进行验证之后,通过偏最小二乘回归将20个基因鉴定为pHu的良好预测因子,为筛选可能存在肉质缺陷的肉鸡提供了新的视角。

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