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从大头鱼(Hypophthalmichthys nobilis)/白鲢(Hypophthalmichthys molitrix)中鉴定 RBP4 及 CpG ODN 对嗜水气单胞菌攻毒下 RBP4 表达的影响。

Identification of RBP4 from bighead carp (Hypophthalmichthys nobilis) / silver carp (Hypophthalmichthys molitrix) and effects of CpG ODN on RBP4 expression under A. hydrophila challenge.

机构信息

Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms, College of Life Sciences, South China Agricultural University, Guangzhou, Guangdong, 510642, China.

Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms, College of Life Sciences, South China Agricultural University, Guangzhou, Guangdong, 510642, China; Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou, Guangdong, 510642, China.

出版信息

Fish Shellfish Immunol. 2020 May;100:476-488. doi: 10.1016/j.fsi.2020.03.036. Epub 2020 Mar 21.

Abstract

Retinol-binding protein 4 (RBP4) is known as a highly conserved adipokine for immune activation. Aeromonas hydrophila (A. hydrophila) is the most common zoonotic pathogen in aquaculture, which causes serious economic losses to aquaculture, especially to bighead carp (Hypophthalmichthys nobilis, H. nobilis) and silver carp (Hypophthalmichthys molitrix, H. molitrix). Recent studies along with our previous findings have shown that synthetic oligodeoxynucleotides containing CpG motifs (CpG ODN) can play a good role in aquatic animals against infection. In order to clarify the relationship between CpG ODN and RBP4 under A. hydrophila infection, firstly, full-length RBP4 cDNAs from H. nobilis and H. molitrix were cloned. And characteristics of RBP4, including sequence and structure, tissue distribution and genetic evolution were analyzed. In addition, mRNA expression levels of RBP4, cytokine, toll-like receptors (TLRs), morbidity and survival rates of H. nobilis and H. molitrix were observed post CpG ODN immunization or following challenge. The results indicated that hn/hm_RBP4 (RBP4 genes obtained from H. nobilis and H. molitrix) had the highest homology with Megalobrama amblycephala. Distribution data showed that the expression level of hn_RBP4 mRNA was higher than that of hm_RBP4. After CpG ODN immunization followed by A.hydrophila challenge, significantly higher survival was observed in both carps, together with up-regulated RBP4 expression. Meanwhile, hn/hm_IL-1β level was relatively flat (and decreased), hn/hm_IFN-γ, hn/hm_TLR4 and hn/hm_TLR9 levels increased significantly, but hn/hm_STRA6 showed no significant change, compared with control. Moreover, CpG ODN immunization could induce stronger immune protective responses (higher IFN-γ/gentle IL-1β level and lower morbidity/higher survival rate) against A. hydrophila in H. nobilis, along with higher RBP4 level, when compared with that in H. molitrix. These results demonstrated that RBP4 was well involved in the immune protection of CpG ODN. Based on the results, we speculated that in the case of A. hydrophila infection, TLR9 signaling pathway was activated by CpG ODN. Subsequently, CpG ODN up-regulated RBP4, and RBP4 activated TLR4 signaling pathway. Then TLR4 and TLR9 synergistically improved the anti-infection responses. Our findings have good significance for improving resistance to pathogen infection in freshwater fish.

摘要

视黄醇结合蛋白 4(RBP4)是一种高度保守的免疫激活脂肪因子。嗜水气单胞菌(A. hydrophila)是水产养殖中最常见的人畜共患病病原体,它会给水产养殖业造成严重的经济损失,尤其是对大头鱼(Hypophthalmichthys nobilis,H. nobilis)和白鲢(Hypophthalmichthys molitrix,H. molitrix)。最近的研究以及我们之前的研究结果表明,含有 CpG 基序的合成寡脱氧核苷酸(CpG ODN)可以在水生动物抗感染方面发挥良好作用。为了阐明 CpG ODN 与嗜水气单胞菌感染下 RBP4 之间的关系,首先,从大头鱼和白鲢中克隆了全长 RBP4 cDNA。并分析了 RBP4 的特性,包括序列和结构、组织分布和遗传进化。此外,观察了 CpG ODN 免疫接种或 A. hydrophila 攻毒后,大头鱼和白鲢 RBP4、细胞因子、 toll 样受体(TLRs)的 mRNA 表达水平、发病率和存活率。结果表明,hn/hm_RBP4(从大头鱼和白鲢获得的 RBP4 基因)与 Megalobrama amblycephala 的同源性最高。分布数据显示,hn_RBP4 mRNA 的表达水平高于 hm_RBP4。在 CpG ODN 免疫接种后 A. hydrophila 攻毒后,两种鲤鱼的存活率显著提高,同时 RBP4 表达上调。同时,hn/hm_IL-1β 水平相对平稳(下降),hn/hm_IFN-γ、hn/hm_TLR4 和 hn/hm_TLR9 水平显著升高,但 hn/hm_STRA6 无明显变化与对照组相比。此外,与白鲢相比,CpG ODN 免疫接种可诱导大头鱼更强的免疫保护反应(更高的 IFN-γ/温和的 IL-1β 水平和更低的发病率/更高的存活率),同时 RBP4 水平也更高。这些结果表明 RBP4 参与了 CpG ODN 的免疫保护。基于这些结果,我们推测在嗜水气单胞菌感染的情况下,CpG ODN 通过 TLR9 信号通路激活。随后,CpG ODN 上调 RBP4,RBP4 激活 TLR4 信号通路。然后 TLR4 和 TLR9 协同提高抗感染反应。我们的研究结果对提高淡水鱼对病原体感染的抵抗力具有重要意义。

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