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综合转录组分析揭示了一种对 CyHV-3 有抗性的鲤鱼品系的免疫机制。

Integrative Transcriptomic Analysis Reveals the Immune Mechanism for a CyHV-3-Resistant Common Carp Strain.

机构信息

Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Harbin, China.

National and Local Joint Engineering Laboratory for Freshwater Fish Breeding, Harbin, China.

出版信息

Front Immunol. 2021 Jul 5;12:687151. doi: 10.3389/fimmu.2021.687151. eCollection 2021.

Abstract

Anti-disease breeding is becoming the most promising solution to cyprinid herpesvirus-3 (CyHV-3) infection, the major threat to common carp aquaculture. Virus challenging studies suggested that a breeding strain of common carp developed resistance to CyHV-3 infection. This study illustrates the immune mechanisms involved in both sensitivity and anti-virus ability for CyHV3 infection in fish. An integrative analysis of the protein-coding genes and long non-coding RNAs (lncRNAs) using transcriptomic data was performed. Tissues from the head kidney of common carp were extracted at days 0 (the healthy control) and 7 after CyHV-3 infection (the survivors) and used to analyze the transcriptome through both Illumina and PacBio sequencing. Following analysis of the GO terms and KEGG pathways involved, the immune-related terms and pathways were merged. To dig out details on the immune aspect, the DEGs were filtered using the current common carp immune gene library. Immune gene categories and their corresponding genes in different comparison groups were revealed. Also, the immunological Gene Ontology terms for lncRNA modulation were retained. The weighted gene co-expression network analysis was used to reveal the regulation of immune genes by lncRNA. The results demonstrated that the breeding carp strain develops a marked resistance to CyHV-3 infection through a specific innate immune mechanism. The featured biological processes were autophagy, phagocytosis, cytotoxicity, and virus blockage by lectins and MUC3. Moreover, the immune-suppressive signals, such as suppression of IL21R on STAT3, PI3K mediated inhibition of inflammation by dopamine upon infection, as well as the inhibition of NLRC3 on STING during a steady state. Possible susceptible factors for CyHV-3, such as ITGB1, TLR18, and CCL4, were also revealed from the non-breeding strain. The results of this study also suggested that Nramp and PAI regulated by LncRNA could facilitate virus infection and proliferation for infected cells respectively, while T cell leukemia homeobox 3 (TLX3), as well as galectin 3 function by lncRNA, may play a role in the resistance mechanism. Therefore, immune factors that are immunogenetically insensitive or susceptible to CyHV-3 infection have been revealed.

摘要

抗病育种正成为鲤鱼疱疹病毒 3(CyHV-3)感染的最有前途的解决方案,这是鲤鱼养殖业的主要威胁。病毒挑战研究表明,鲤鱼的一个选育品种对 CyHV-3 感染产生了抵抗力。本研究说明了鱼类对 CyHV3 感染的敏感性和抗病毒能力所涉及的免疫机制。利用转录组数据对编码蛋白的基因和长非编码 RNA(lncRNA)进行综合分析。从感染 CyHV-3 后的第 0 天(健康对照组)和第 7 天(幸存者)的鲤鱼头肾组织中提取组织,并通过 Illumina 和 PacBio 测序进行转录组分析。对涉及的 GO 术语和 KEGG 途径进行分析后,将免疫相关术语和途径合并。为了挖掘免疫方面的细节,使用当前的鲤鱼免疫基因文库筛选差异表达基因。揭示了不同比较组中免疫基因类别及其相应基因。此外,还保留了 lncRNA 调节的免疫基因的免疫生物学 GO 术语。使用加权基因共表达网络分析来揭示 lncRNA 对免疫基因的调控。结果表明,通过特定的先天免疫机制,选育的鲤鱼品种对 CyHV-3 感染表现出明显的抗性。特征性的生物过程是自噬、吞噬作用、细胞毒性以及凝集素和 MUC3 对病毒的阻断。此外,在感染时,抑制 STAT3 上的 IL21R、多巴胺介导的 PI3K 抑制炎症、以及在稳定状态下抑制 STING 上的 NLRC3 等免疫抑制信号也被抑制。还从非选育品种中揭示了 CyHV-3 的可能易感因素,如 ITGB1、TLR18 和 CCL4。本研究结果还表明,LncRNA 调控的 Nramp 和 PAI 可分别促进感染细胞中的病毒感染和增殖,而 LncRNA 调控的 T 细胞白血病同源框 3(TLX3)和半乳糖凝集素 3 功能可能在抗性机制中发挥作用。因此,揭示了对 CyHV-3 感染具有免疫遗传不敏感性或易感性的免疫因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a231/8287582/da11da4d3af9/fimmu-12-687151-g001.jpg

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