State Key Laboratory for Biocontrol / Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering, School of Marine Sciences, Sun Yat-sen University, No.132 Waihuan Dong Road, Higher Education Mega Center, Guangzhou, Guangdong, 510006, PR China.
Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Zhuhai, 519000, China.
Fish Shellfish Immunol. 2019 Sep;92:141-150. doi: 10.1016/j.fsi.2019.04.298. Epub 2019 Jun 5.
Mandarin fish (Siniperca chuatsi) is a popular cultured freshwater fish species due to its high market value in China. With increasing density of breeding, mandarin fish is often cultured under low environmental oxygen concentrations (hypoxia). In this study, the relative expression levels of hypoxia response element (HRE)-luciferase reporter and the HIF signaling pathway downstream genes (scldha, scvegf, and scglut-1) were significantly increased by hypoxic stress, thereby indicating that mandarin fish has an HIF signaling pathway. The mandarin fish HIF-1α (scHIF-1α) was also characterized. Multiple sequence alignments showed that scHIF-1α presented similar architectures to other known vertebrates. Subcellular localization analysis showed that scHIF-1α was mainly located in the nucleus of the mandarin fish fry-1 (MFF-1) cells. The role of scHIF-1α in the regulation of the HIF signaling pathway was confirmed. Overexpression of scHIF-1α could induce the HIF signaling pathway, whereas knockdown of scHIF-1α inhibited the activity of the HIF-1 signaling pathway. Tissue distribution analysis showed that schif-1α was significantly highly expressed in the blood, heart, and liver, which indicated that the main function of scHIF-1α was closely related to the circulatory system. Furthermore, scHIF-1α expression was significantly induced by poly I:C, poly dG:dC or PMA, thereby indicating that scHIF-1α was involved in the immune response. HIF-1α plays an important role in pathogen infections in mammals, but its role in fish is rarely investigated. Overexpression of scHIF-1α could inhibit MRV and SCRV infections, whereas knockdown of scHIF-1α could promote such infections. Those results suggested that scHIF-1α played an important role in fish virus infection. Our study will help understand the hypoxia associated with the outbreaks of aquatic viral disease.
鳜鱼(Siniperca chuatsi)因其在中国市场的高价值而成为一种受欢迎的淡水养殖鱼类。随着养殖密度的增加,鳜鱼经常在低环境氧浓度(缺氧)下养殖。在这项研究中,缺氧应激显著增加了低氧反应元件(HRE)-荧光素酶报告基因和 HIF 信号通路下游基因(scldha、scvegf 和 scglut-1)的相对表达水平,从而表明鳜鱼具有 HIF 信号通路。还对鳜鱼 HIF-1α(scHIF-1α)进行了表征。多重序列比对表明,scHIF-1α与其他已知脊椎动物具有相似的结构。亚细胞定位分析表明,scHIF-1α主要位于鳜鱼 fry-1(MFF-1)细胞的核内。证实了 scHIF-1α在调节 HIF 信号通路中的作用。过表达 scHIF-1α可诱导 HIF 信号通路,而敲低 scHIF-1α则抑制 HIF-1 信号通路的活性。组织分布分析表明,schif-1α在血液、心脏和肝脏中的表达显著较高,这表明 scHIF-1α的主要功能与循环系统密切相关。此外,scHIF-1α的表达被 Poly I:C、Poly dG:dC 或 PMA 显著诱导,表明 scHIF-1α参与了免疫反应。HIF-1α在哺乳动物的病原体感染中起着重要作用,但在鱼类中很少被研究。过表达 scHIF-1α可抑制 MRV 和 SCRV 感染,而敲低 scHIF-1α则可促进此类感染。这些结果表明 scHIF-1α在鱼类病毒感染中起重要作用。我们的研究将有助于了解与水产病毒性疾病爆发相关的缺氧情况。