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Liver Transcriptome Responses to Heat Stress and Newcastle Disease Virus Infection in Genetically Distinct Chicken Inbred Lines

机译:肝脏转录组对遗传不同鸡自交系中的热应激和新城疫病毒感染的反应

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摘要

Heat stress results in reduced productivity, anorexia, and mortality in chickens. The objective of the study was to identify genes and signal pathways associated with heat stress and Newcastle disease virus (NDV) infection in the liver of chickens through RNA-seq analysis, using two highly inbred chicken lines (Leghorn and Fayoumi). All birds were held in the same environment until 14 days of age. On day 14, half the birds were exposed to 38 °C with 50% relative humidity for 4 h, then 35 °C until the end of the experiment. The remaining birds were kept at 25 °C throughout the experiment. The heat-treated birds were inoculated at 21 days of age with 107 EID50 (One EID50 unit is the amount of virus that will infect 50 percent of inoculated embryos) NDV La Sota strain to investigate the effects of both heat stress and NDV infection. Physiological parameters were recorded as blood phenotypes at three stages: acute heat (AH), chronic heat (CH1), and chronic heat combined with NDV infection (CH&NDV), at 4 h, 7 days, and 10 days post-initiation of heat treatment, respectively. Our previous work revealed that the heat-resilient Fayoumi line maintained a more stable acid-base balance in their blood compared to the Leghorn line. Liver samples were harvested on both AH and CH&NDV to characterize the transcriptome profiles of these two inbred lines. Both genetic lines and treatments had large impact on the liver transcriptome. Fayoumi birds had more differentially expressed genes (DEGs) than Leghorn birds for both treatments. Metabolic and immune-related genes were on the DEG list, with Fayoumi having more immune-related DEGs than Leghorns, which was confirmed by gene functional enrichment analysis. Weighted correlation network analysis (WGCNA) indicated that the driver genes such as Solute Carrier Family genes could be very important for stabilizing the acid-base balance in Fayoumi birds during heat stress. Therefore, candidate genes such solute carrier family genes could be potential genetic targets that are regulated by Fayoumis to maintain physical hemostasis under heat stress. Differential gene expression showed that Leghorns mainly performed metabolic regulation in response to heat stress and NDV infection, while Fayoumis regulated both immune and metabolic functions. This study provides novel insights and enhances our understandings of liver response to heat stress of heat resilient and susceptible inbred chicken lines.
机译:热应力导致鸡中的生产率,厌食和死亡率降低。该研究的目的是通过RNA-SEQ分析鉴定与鸡肝脏中的热应激和新宫疾病病毒(NDV)感染相关的基因和信号途径,使用两条高度近似的鸡肉线(Leghorn和Fayoumi)。所有鸟类在同一环境中持续到14天。在第14天,一半的鸟类暴露于38℃,在38℃下,50%相对湿度为4小时,然后35°C直到实验结束。剩余的鸟类在整个实验中保持在25°C。将热处理的鸟类在21天内接种,107次EID50(一个EID50单位是感染50%接种胚胎的病毒量)NDV La Sota菌株,以研究热应激和NDV感染的影响。将生理参数记录为三个阶段的血液表型:急性热(AH),慢性热(CH1)和慢性热与NDV感染(CH&NDV)合并,在4小时,7天和10天后热处理后10天, 分别。我们以前的工作表明,与Leghorn线相比,热弹性Fayoumi系列在血液中保持更稳定的酸碱平衡。在AH和CH&NDV上收获肝脏样品,以表征这两个自交系的转录组谱。遗传系和治疗均对肝脏转录组产生很大影响。 Fayoumi鸟类对两种治疗的血清鸟类具有比Leghorn鸟类更差异的基因(DEGS)。在DEG列表中,使用基因官能富集分析证实,代谢和免疫相关基因在DEG列表中,具有比LEGHORS更多的免疫相关的次数。加权相关网络分析(WGCNA)表明诸如溶质载体家族基因的驾驶员基因对于在热应激期间稳定Faymi鸟类的酸碱平衡可能非常重要。因此,候选基因这种溶质载体家族基因可能是由Fayoumis调节的潜在遗传靶标,以在热应激下保持物理止血。差异基因表达显示,Leghorns主要对热应激和NDV感染进行代谢调节,而Faymis调节免疫和代谢功能。本研究提供了新颖的见解,增强了我们对热弹性和易感近交鸡排热应激的肝反应的理解。

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