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Label-free Quantitative Analysis of Changes in Broiler Liver Proteins under Heat Stress using SWATH-MS Technology

机译:利用SWATH-MS技术对热应激条件下肉鸡肝蛋白变化进行无标记定量分析

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摘要

High temperature is one of the key environmental stressors affecting broiler production efficiency and meat yield. Knowledge of broiler self-regulation mechanisms under heat stress is important for the modern scale of poultry breeding. In the present study, the SWATH strategy was employed to investigate the temporal response of the broiler liver to heat stress. A total of 4,271 proteins were identified and used to generate a reference library for SWATH analysis. During this analysis, 2,377 proteins were quantified, with a coefficient of variation ≤25% among technical and biological replicates. A total of 257 proteins showed differential expression between the control and heat stressed groups. Consistent results for 26 and 5 differential proteins were validated respectively by MRM and western blotting quantitative analyses. Bioinformatics analysis suggests that the up- and down-regulation of these proteins appear involved in the following three categories of cellular pathways and metabolisms: 1) inhibit the ERK signaling pathway; 2) affect broiler liver lipid and amino acid metabolism; 3) induce liver cell immune responses to adapt to the high temperatures and reduce mortality. The study reported here provides an insight into broiler self-regulation mechanisms and shed light on the improved broiler adaptability to high-temperature environments.
机译:高温是影响肉鸡生产效率和肉产量的关键环境压力之一。了解热应激下的肉鸡自我调节机制对于现代家禽育种规模非常重要。在本研究中,采用SWATH策略来研究肉鸡肝脏对热应激的时间反应。总共鉴定了4,271种蛋白质,并用于生成SWATH分析参考库。在此分析过程中,对2377种蛋白质进行了定量,技术和生物重复样本中的变异系数≤25%。总共257种蛋白质显示了对照组和热应激组之间的差异表达。 MRM和蛋白质印迹定量分析分别验证了26种和5种差异蛋白的一致结果。生物信息学分析表明,这些蛋白质的上调和下调似乎与以下三类细胞途径和代谢有关:1)抑制ERK信号传导途径; 2)影响肉鸡肝脏脂质和氨基酸代谢; 3)诱导肝细胞免疫反应以适应高温并降低死亡率。此处报道的研究提供了对肉鸡自我调节机制的见解,并为改善的肉鸡对高温环境的适应性提供了启示。

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