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Genome-wide analysis of differentially expressed genes and the modulation of PEDV infection in Vero E6 cells

机译:Vero E6细胞中差异表达基因的全基因组分析和PEDV感染的调节

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摘要

PEDV remains one of the most important swine diseases that infects pigs of all ages. It causes devastating viral enteric disease in piglets with a high mortality rate, leading to significant threats and huge economic loss to the pork industry. In this study, a transcriptomic shotgun sequencing (RNA-Seq) procedure was used to study gene responses against PEDV infection. Genome-wide analysis of differentially expressed genes (DEGs) was performed in Vero E6 cells post-PEDV infection. mTOR signaling pathway activator-MHY1485, and inhibitor-PP242 were used to study the antiviral function. Results revealed that the IRF3 was significantly up-regulated post-PEDV infection. Although most of the IFN-regulatory and –related genes evaluated in this study were either down-regulated or remained unchanged, IL11 behaved significantly up-regulated, with the peak at 16 hpi. Nearly 90% of PEDV infections were suppressed in the PP242 pretreated cells whereas the reverse effect was observed in the MYH1485 pretreated cells. Results indicated that the mTOR signaling pathway played a vital role in the PEDV antiviral regulation in the Vero E6 cells. Future studies will contribute to better understand the cellular antiviral mechanism against PEDV.
机译:PEDV仍然是感染所有年龄猪的最重要的猪疾病之一。它导致高死亡率的仔猪毁灭性病毒性肠病,对猪肉行业造成重大威胁和巨大经济损失。在这项研究中,转录shot弹枪测序(RNA-Seq)程序用于研究针对PEDV感染的基因应答。 PEDV感染后在Vero E6细胞中进行了差异表达基因(DEG)的全基因组分析。使用mTOR信号传导通路激活剂MHY1485和抑制剂PP242来研究其抗病毒功能。结果显示,IRF3在PEDV感染后显着上调。尽管在这项研究中评估的大​​多数IFN调控基因和相关基因要么被下调,要么保持不变,但IL11表现出明显的上调,​​峰值在16 hpi。在PP242预处理的细胞中抑制了近90%的PEDV感染,而在MYH1485预处理的细胞中观察到了相反的作用。结果表明,mTOR信号通路在Vero E6细胞的PEDV抗病毒调节中起着至关重要的作用。未来的研究将有助于更好地了解针对PEDV的细胞抗病毒机制。

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