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Differential expression analysis of the broiler tracheal proteins responsible for the immune response and muscle contraction induced by high concentration of ammonia using iTRAQ-coupled 2D LC-MS/MS

机译:使用iTRAQ耦合二维LC-MS / MS分析高浓度氨水引起的免疫反应和肌肉收缩的肉鸡气管蛋白差异表达分析

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摘要

Ammonia has been considered the contaminant primarily responsible for respiratory disease in poultry. Even though it can cause tracheal lesions, its adverse effects on the trachea have not been sufficiently studied. The present study investigated tracheal changes in Arbor Acres broilers ( ) induced by high concentration of ammonia using isobaric tag for relative and absolute quantification (iTRAQ)-based proteome analysis. In total, 3,706 proteins within false discovery rate of 1% were identified, including 119 significantly differentially expressed proteins. Functional analysis revealed that proteins related to immune response and muscle contraction were significantly enriched. With respect to the immune response, up-regulated proteins (like FGA) were pro-inflammatory, while down-regulated proteins participated in antigen processing and antigen presenting (like MYO1G), immunoglobulin and cathelicidin production (like fowlicidin-2), and immunodeficiency (like PTPRC). Regarding muscle contraction, all differentially expressed proteins (like TPM1) were up-regulated. An over-expression of mucin, which is a common feature of airway disease, was also observed. Additionally, the transcriptional alterations of 6 selected proteins were analyzed by quantitative RT-PCR. Overall, proteomic changes suggested the onset of airway obstruction and diminished host defense in trachea after ammonia exposure. These results may serve as a valuable reference for future interventions against ammonia toxicity.
机译:氨被认为是造成家禽呼吸系统疾病的主要污染物。尽管它可以引起气管病变,但对气管的不良影响尚未得到充分研究。本研究使用等压线标签基于相对和绝对定量(iTRAQ)的蛋白质组分析方法研究了高浓度氨诱导的Arbor Acres肉鸡的气管变化。总共鉴定出3706种蛋白质,错误发现率不到1%,其中包括119种差异显着表达的蛋白质。功能分析表明,与免疫反应和肌肉收缩有关的蛋白质明显富集。关于免疫反应,上调的蛋白(如FGA)具有促炎性,而下调的蛋白则参与抗原加工和抗原呈递(如MYO1G),免疫球蛋白和cathelicidin的产生(如fowlicidin-2)和免疫缺陷。 (如PTPRC)。关于肌肉收缩,所有差异表达的蛋白质(如TPM1)均被上调。还观察到粘蛋白过表达,这是气道疾病的常见特征。另外,通过定量RT-PCR分析了6种选择的蛋白质的转录改变。总体而言,蛋白质组学改变提示在接触氨后气管发生气道阻塞并减弱了宿主防御能力。这些结果可为将来针对氨毒性的干预提供有价值的参考。

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