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血清和肌肉代谢组学用于预测终极pH值,这是鸡肉品质的关键因素。

Serum and Muscle Metabolomics for the Prediction of Ultimate pH, a Key Factor for Chicken-Meat Quality.

作者信息

Beauclercq Stéphane, Nadal-Desbarats Lydie, Hennequet-Antier Christelle, Collin Anne, Tesseraud Sophie, Bourin Marie, Le Bihan-Duval Elisabeth, Berri Cécile

机构信息

URA, INRA , F-37380 Nouzilly, France.

Département d'Analyses Chimique Biologique et Médicale, PPF Analyse des Systèmes Biologiques, Université François-Rabelais , F-37000 Tours, France.

出版信息

J Proteome Res. 2016 Apr 1;15(4):1168-78. doi: 10.1021/acs.jproteome.5b01050. Epub 2016 Mar 18.

Abstract

Variations in muscle glycogen storage are highly correlated with variations in meat ultimate pH (pHu), a key factor for poultry meat quality. A total of two chicken lines were divergently selected on breast pHu to understand the biological basis for variations in meat quality (i.e., the pHu- and the pHu+ lines that are characterized by a 17% difference in muscle glycogen content). The effects of this selection on bird metabolism were investigated by quantifying muscle metabolites by high-resolution NMR ((1)H and (31)P) and serum metabolites by (1)H NMR. A total of 20 and 26 discriminating metabolites between the two lines were identified by orthogonal partial least-squares discriminant analysis (OPLS-DA) in the serum and muscle, respectively. There was over-representation of carbohydrate metabolites in the serum and muscle of the pHu- line, consistent with its high level of muscle glycogen. However, the pHu+ line was characterized by markers of oxidative stress and muscle catabolism, probably because of its low level of energy substrates. After OPLS-DA multiblock analysis, a metabolic set of 15 high-confidence biomarkers was identified that could be used to predict the quality of poultry meat after validation on an independent population.

摘要

肌肉糖原储存的变化与肉的最终pH值(pHu)变化高度相关,而pHu是禽肉品质的关键因素。总共选择了两个鸡品系,根据胸肉pHu进行差异选择,以了解肉质变化的生物学基础(即pHu -和pHu +品系,其肌肉糖原含量相差17%)。通过高分辨率核磁共振((1)H和(31)P)定量肌肉代谢物以及通过(1)H核磁共振定量血清代谢物,研究了这种选择对鸡代谢的影响。分别通过正交偏最小二乘判别分析(OPLS - DA)在血清和肌肉中鉴定出两个品系之间共有20种和26种有鉴别意义的代谢物。在pHu -品系的血清和肌肉中,碳水化合物代谢物的含量过高,这与其高水平的肌肉糖原一致。然而,pHu +品系的特征是具有氧化应激和肌肉分解代谢的标志物,这可能是由于其能量底物水平较低。经过OPLS - DA多组分析,确定了一组由15种高可信度生物标志物组成的代谢物集,在独立群体上验证后可用于预测禽肉品质。

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