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Impact of rearing temperature on the innate antiviral immune response of growth hormone transgenic female triploid Atlantic salmon (Salmo salar)

机译:饲养温度对生长激素转基因女三倍体大型鲑鱼(Salmo Salar)的抗病毒免疫应答的影响

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AquAdvantage Salmon (growth hormone transgenic female triploid Atlantic salmon) are a faster-growing alternative to conventional farmed diploid Atlantic salmon. To investigate optimal rearing conditions for their commercial production, a laboratory study was conducted in a freshwater recirculating aquaculture system (RAS) to examine the effect of rearing temperature (10.5 degrees C, 13.5 degrees C, 16.5 degrees C) on their antiviral immune and stress responses. When each temperature treatment group reached an average weight of 800 g, a subset of fish were intraperitoneally injected with either polyriboinosinic polyribocytidylic acid (pIC, a viral mimic) or an equal volume of sterile phosphate-buffered saline (PBS). Blood and head kidney samples were collected before injection and 6, 24 and 48 h post-injection (hpi). Transcript abundance of 7 antiviral biomarker genes (tlr3, lgp2, stat1b, isg15a, rsad2, mxb, ifng) was measured by real-time quantitative polymerase chain reaction (qPCR) on head kidney RNA samples. Plasma cortisol levels from blood samples collected pre-injection and from pIC and PBS groups at 24 hpi were quantified by ELISA. While rearing temperature and treatment did not significantly affect circulating cortisol, all genes tested were significantly upregulated by pIC at all three temperatures (except for tlr3, which was only upregulated in the 10.5 degrees C treatment). Target gene activation was generally observed at 24 hpi, with most transcript levels decreasing by 48 hpi in pIC-injected fish. Although a high amount of biological variability in response to pIC was evident across all treatments, rearing temperature significantly influenced transcript abundance and/or fold-changes comparing time- and temperature-matched pIC- and PBS-injected fish for several genes (tlr3, Isp2, stat1b, isg15a, rsad2 and ifng) at 24 hpi. As an example, significantly higher fold-changes of rsad2, isg15a and ifng were found in fish reared at 10.5 degrees C when compared to 16.5 degrees C. Multivariate analysis confirmed that rearing temperature modulated antiviral immune response. The present experiment provides novel insight into the relationship between rearing temperature and innate antiviral immune response in AquAdvantage Salmon.
机译:Aqualyage Salmon(生长激素转基因女性三倍体大西洋鲑鱼)是对常规养殖二倍体大西洋三文鱼的更快增长的替代品。为了调查其商业生产的最佳饲养条件,在淡水再循环水产养殖系统(RAS)中进行实验室研究,以检查饲养温度(10.5℃,13.5℃,16.5℃)的抗病毒免疫和应激的影响回复。当每个温度处理组达到800克的平均重量时,用多吡吡吡吡吡吡吡吡啶鎓(PIC,病毒模拟)或等体积的无菌磷酸盐缓冲盐水(PBS)腹膜内喷射鱼的子集。在注射之前收集血液和头肾样品,并在注射后6,24和48小时(HPI)。通过对头肾RNA样品上的实时定量聚合酶链反应(QPCR)测量7抗病毒生物标志物基因的转录物丰度(TLR3,LGP2,Stat1B,ISG15A,RSAD2,MXB,IFNG)。通过ELISA量化来自预热预热和PIC和PBS组的血液样品的血浆皮质醇水平被ELISA定量。虽然饲养温度和治疗没有显着影响循环皮质醇,但在所有三个温度下,所测试的所有基因都是通过PIC显着上调的(除了TLR3除外,只有在10.5摄氏度的10.5摄氏度上上调)。通常在24 HPI中观察到靶基因活化,在PIC注入的鱼中,大多数转录水平降低了48 HPI。虽然响应PIC的高量生物变异性在所有处理中都明显明显,但饲养温度显着影响转录性丰度和/或折叠变化比较多时和温度匹配的鱼类和PBS注射的鱼类(TLR3,ISP2 24 HPI的Stat1B,ISG15A,RSAD2和IFNG)。作为一个例子,与16.5摄氏度相比,在10.5摄氏度的鱼中发现RSAD2,ISG15A和IFNG的显着更高的折叠变化。多变量分析证实饲养温度调节抗病毒免疫应答。目前的实验提供了对Aqualyage Salmon中饲养温度和先天抗病毒免疫应答的关系的新颖洞察。

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