Meza Cerda María-Ignacia, Gray Rachael, Higgins Damien P
Sydney School of Veterinary Science, Faculty of Science, The University of Sydney, Camperdown, NSW, Australia.
PeerJ. 2020 Nov 13;8:e10306. doi: 10.7717/peerj.10306. eCollection 2020.
Measurement of cytokine gene expression by reverse transcription quantitative polymerase chain reaction (RT-qPCR) is used widely to assess the immune system of animals and to identify biomarkers of disease, but its application is limited in wildlife species due to a lack of species-specific reagents. The free-ranging endangered Australian sea lion () experiences significant clinical disease and high pup mortality due to intestinal hookworm infection. Developing immunological tools specific to the species will aid in the assessment of drivers of disease and its impact in population demographics. This study describes the development and validation of cross-reactive RT-qPCR assays to measure five important cytokines involved in innate and Th1/Th2 responses (IL-6, TNFα, IFNγ, IL-4 and IL-10) in unstimulated blood samples from a range of different mammalian species including the Australian sea lion. All RT-qPCR assays efficiencies ranged between 87% ( TNFα) and 111% ( IL-10) and had strong linearity ( ). IL-4 and IFNγ gene expression for fell below the dynamic range (and therefore quantifiable limits) of RT-qPCR assays but were able to be quantified using the novel droplet digital PCR (ddPCR). This study delivers new immunological tools for eco-immunologists studying cytokine gene expression in wildlife species and is to our knowledge, the first cytokine ddPCR approach to be reported in a pinniped species.
通过逆转录定量聚合酶链反应(RT-qPCR)测量细胞因子基因表达被广泛用于评估动物的免疫系统和识别疾病的生物标志物,但由于缺乏物种特异性试剂,其在野生动物物种中的应用受到限制。自由放养的濒危澳大利亚海狮()由于肠道钩虫感染而经历严重的临床疾病和高幼崽死亡率。开发针对该物种的免疫工具将有助于评估疾病驱动因素及其对种群统计学的影响。本研究描述了交叉反应性RT-qPCR检测方法的开发和验证,以测量一系列不同哺乳动物物种(包括澳大利亚海狮)未刺激血液样本中参与固有免疫和Th1/Th2反应的五种重要细胞因子(IL-6、TNFα、IFNγ、IL-4和IL-10)。所有RT-qPCR检测方法的效率在87%(TNFα)至111%(IL-10)之间,并且具有很强的线性()。澳大利亚海狮的IL-4和IFNγ基因表达低于RT-qPCR检测方法的动态范围(因此低于可量化限度),但能够使用新型微滴数字PCR(ddPCR)进行量化。本研究为生态免疫学家提供了新的免疫工具,用于研究野生动物物种中的细胞因子基因表达,据我们所知,这是首次在鳍足类物种中报道的细胞因子ddPCR方法。