College of Marine Life Sciences, Ocean University of China, Qingdao, China.
Institute of Evolution & Marine Biodiversity, Ocean University of China, Qingdao, China.
J Fish Dis. 2022 Jul;45(7):1045-1057. doi: 10.1111/jfd.13628. Epub 2022 May 11.
The diseases triggered by Vibrio anguillarum infection have created huge economic losses to the turbot (Scophthalmus maximus) farming industry. However, the immune mechanism of turbot to V. anguillarum infection has not been deeply investigated. To better understand the immune response of turbot to V. anguillarum infection, transcriptome analysis of the head kidney and liver of turbot was performed. A total of 15,948 and 11,494 differentially expressed genes (DEGs) were obtained from the turbot head kidney and liver, respectively. Transcriptome analysis revealed that the head kidney and liver of turbot have some differences in the gene ontology and Kyoto Encyclopedia of Genes and Genomes enrichment analysis of the DEGs for the different functions of these two organs. Although there are many uncertain factors in this immune process, such as the occurrence of alternative splicing (AS) events and the differences in the protein structure of the DEGs, the NFκB signalling pathway, MKK-dependent AP-1 activation, JAK-STAT signalling pathway, the signal transmission of MHC Ⅰ and a series of DEGs including HSP90 driving NLRP3 to produce inflammatory factors (IL-1β, IL-8, TNFα, etc.) were possible important immune response pathways for turbot to V. anguillarum infection. Overall, our research has conducted a preliminary exploration of the immune mechanism of turbot in response to V. anguillarum infection.
鳗弧菌感染引发的疾病给大菱鲆(Scophthalmus maximus)养殖业造成了巨大的经济损失。然而,大菱鲆对鳗弧菌感染的免疫机制尚未得到深入研究。为了更好地了解大菱鲆对鳗弧菌感染的免疫反应,我们对大菱鲆的头肾和肝脏进行了转录组分析。分别从大菱鲆头肾和肝脏中获得了 15948 和 11494 个差异表达基因(DEGs)。转录组分析显示,头肾和肝脏在 DEGs 的基因本体论和京都基因与基因组百科全书富集分析方面存在差异,这与这两个器官的不同功能有关。尽管在这个免疫过程中有许多不确定因素,如选择性剪接(AS)事件的发生和 DEGs 蛋白质结构的差异,但 NFκB 信号通路、MKK 依赖性 AP-1 激活、JAK-STAT 信号通路、MHC Ⅰ信号转导以及包括 HSP90 在内的一系列 DEGs 驱动 NLRP3 产生炎症因子(IL-1β、IL-8、TNFα 等),可能是大菱鲆对鳗弧菌感染的重要免疫反应途径。总的来说,我们的研究初步探索了大菱鲆对鳗弧菌感染的免疫机制。