Jiangsu Key Laboratory for Bioresources of Saline Soils, Jiangsu Synthetic Innovation Center for Coastal Bio-agriculture, Jiangsu Provincial Key Laboratory of Coastal Wetland Bioresources and Environmental Protection, School of Wetlands, Yancheng Teachers University, Yancheng, China.
School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, China.
Front Immunol. 2023 Jan 10;13:1039956. doi: 10.3389/fimmu.2022.1039956. eCollection 2022.
The yellow catfish () is a freshwater fish with high economic value in eastern China. Nevertheless, pathogens causing bacterial diseases in have brought about huge economic loss and high mortality in artificial aquaculture. For disease control, it is critical to further understand the immune system of yellow catfish and immune-related genes with which they respond to pathogenic infections. In this study, high-throughput sequencing methods were used to analyze the transcriptomic spectrum of the head kidney from challenged by . A total of 45,544 unique transcript fragments (unigenes) were acquired after assembly and annotation, with an average length of 1,373 bp. Additionally, 674 differentially expressed genes (DEGs) were identified after stimulation with , 353 and 321 genes were identified as remarkably up- or downregulated, respectively. To further study the immune-related DEGs, we performed KEGG enrichment and GO enrichment. The results showed gene regulation of response to stimulus, immune response, immune system progress, response to external stimuli and cellular response to stimuli. Analysis of KEGG enrichment is important to identify chief immune related pathways. Real-time quantitative reverse transcription-PCR (qRT-PCR) results indicated 10 immune response genes that were found to be upregulated compared to a control group after 6 h of challenging. In summary, the results of our study are helpful to determine the defense mechanisms and immune system responses of yellow catfish in reaction to bacterial challenges.
黄颡鱼 () 是中国东部具有高经济价值的淡水鱼类。然而,导致细菌性疾病的病原体在人工养殖中造成了巨大的经济损失和高死亡率。为了进行疾病控制,深入了解黄颡鱼的免疫系统以及它们对病原体感染的免疫相关基因至关重要。在这项研究中,使用高通量测序方法分析了 刺激的头肾转录组谱。组装和注释后共获得 45544 个独特的转录片段(unigenes),平均长度为 1373bp。此外, 刺激后鉴定出 674 个差异表达基因(DEGs),分别有 353 和 321 个基因明显上调和下调。为了进一步研究免疫相关的 DEGs,我们进行了 KEGG 富集和 GO 富集。结果显示基因对刺激的反应、免疫反应、免疫系统进程、对外界刺激的反应和细胞对刺激的反应的调控。KEGG 富集分析对于确定主要的免疫相关途径非常重要。实时定量逆转录 PCR (qRT-PCR) 结果表明,在 刺激 6 小时后,与对照组相比,有 10 个免疫反应基因上调。总之,我们的研究结果有助于确定黄颡鱼对细菌挑战的防御机制和免疫系统反应。