Beauclercq Stéphane, Mignon-Grasteau Sandrine, Petit Angélique, Berger Quentin, Lefèvre Antoine, Métayer-Coustard Sonia, Tesseraud Sophie, Emond Patrick, Berri Cécile, Le Bihan-Duval Elisabeth
INRAE, Université de Tours, BOA, Tours, France.
Université de Tours, PST Analyse des Systèmes Biologiques, Tours, France.
Front Physiol. 2022 Jun 22;13:935868. doi: 10.3389/fphys.2022.935868. eCollection 2022.
Chicken meat has become a major source of protein for human consumption. However, the quality of the meat is not yet under control, especially since pH values that are too low or too high are often observed. In an attempt to get a better understanding of the genetic and biochemical determinants of the ultimate pH, two genetic lines of broilers were divergently selected for low (pHu-) or high (pHu+) breast meat pHu. In this study, the serum lipidome of 17-day-old broilers from both lines was screened for pHu markers using liquid-chromatography coupled with mass spectrometry (LC-HRMS). A total of 185 lipids belonging to 4 groups (glycerolipids, glycerophospholipids, sterols, sphingolipids) were identified in the sera of 268 broilers from the pHu lines by targeted lipidomics. The glycerolipids, which are involved in energy storage, were in higher concentration in the blood of pHu- birds. The glycerophospholipids (phosphatidylcholines, phosphatidylethanolamines) with long and polyunsaturated acyl chains were more abundant in pHu+ than in pHu- while the lysophosphatidylcholines and lysophosphatidylethanolamines, known to be associated with starch, were observed in higher quantity in the serum of the pHu- line. Finally, the concentration of the sterols and the ceramides, belonging to the sphingolipids class, were higher in the pHu+ and pHu-, respectively. Furthermore, orthogonal partial least-squares analyses highlighted a set of 68 lipids explaining 77% of the differences between the two broilers lines (RY = 0.77, Q = 0.67). Among these lipids, a subset of 40 predictors of the pHu value was identified with a Root Mean Squared Error of Estimation of 0.18 pH unit (RY = 0.69 and Q = 0.62). The predictive model of the pHu value was externally validated on 68 birds with a Root Mean Squared Error of Prediction of 0.25 pH unit. The sets of molecules identified will be useful for a better understanding of relationship between serum lipid profile and meat quality, and will contribute to define easily accessible pHu biomarkers on live birds that could be useful in genetic selection.
鸡肉已成为人类食用蛋白质的主要来源。然而,肉的品质尚未得到控制,尤其是经常观察到pH值过低或过高的情况。为了更好地了解最终pH值的遗传和生化决定因素,对两个肉鸡遗传品系进行了不同方向的选择,分别培育出胸肉pH值低(pHu-)或高(pHu+)的品系。在本研究中,使用液相色谱-高分辨质谱联用技术(LC-HRMS)对两个品系17日龄肉鸡的血清脂质组进行筛选,以寻找pHu的标记物。通过靶向脂质组学,在来自pHu品系的268只肉鸡血清中鉴定出了总共185种属于4类(甘油脂、甘油磷脂、固醇、鞘脂)的脂质。参与能量储存的甘油脂在pHu-肉鸡的血液中浓度更高。具有长链和多不饱和酰基链的甘油磷脂(磷脂酰胆碱、磷脂酰乙醇胺)在pHu+肉鸡中比在pHu-肉鸡中更丰富,而已知与淀粉相关的溶血磷脂酰胆碱和溶血磷脂酰乙醇胺在pHu-品系的血清中含量更高。最后,属于鞘脂类的固醇和神经酰胺的浓度分别在pHu+和pHu-肉鸡中更高。此外,正交偏最小二乘法分析突出显示了一组68种脂质,它们解释了两个肉鸡品系之间77%的差异(RY = 0.77,Q = 0.67)。在这些脂质中,鉴定出了一个由40种pHu值预测因子组成的子集,其估计均方根误差为0.18 pH单位(RY = 0.69,Q = 0.62)。pHu值的预测模型在68只鸡上进行了外部验证,预测均方根误差为0.25 pH单位。所鉴定出的分子组将有助于更好地理解血清脂质谱与肉质之间的关系,并将有助于在活禽上定义易于获取的pHu生物标志物,这在遗传选择中可能会有用。