Hypoxia triggers the outbreak of infectious spleen and kidney necrosis virus disease through viral hypoxia response elements

Virulence. 2022 Dec;13(1):714-726. doi: 10.1080/21505594.2022.2065950.

Abstract

Hypoxia frequently occurs in aquatic environments, especially in aquaculture areas. However, research on the relationship between hypoxic aquatic environments with viral diseases outbreak is limited, and its underlying mechanisms remain elusive. Herein, we demonstrated that hypoxia directly triggers the outbreak of infectious spleen and kidney necrosis virus (ISKNV) disease. Hypoxia or activated hypoxia-inducible factor (HIF) pathway could remarkably increase the levels of viral genomic DNA, titers, and gene expression, indicating that ISKNV can response to hypoxia and HIF pathway. To reveal the mechanism of ISKNV respond to HIF pathway, we identified the viral hypoxia response elements (HREs) in ISKNV genome. Fifteen viral HREs were identified, and four related viral genes responded to the HIF pathway, in which the hre-orf077r promoter remarkably responded to the HIF pathway. The level of orf077r mRNA dramatically increased after the infected cells were treated with dimethyloxalylglycine (DMOG) or the infected cells/fish subjected to hypoxic conditions, and overexpressed orf077r could remarkably increase the ISKNV replication. These finding shows that hypoxic aquatic environments induce the expression of viral genes through the viral HREs to promote ISKNV replication, indicating that viral HREs might be important biomarkers for the evaluation of the sensitivity of aquatic animal viral response to hypoxia stress. Furthermore, the frequencies of viral HREs in 43 species aquatic viral genomes from 16 families were predicted and the results indicate that some aquatic animal viruses, such as Picornavirdea, Dicistronviridae, and Herpesviridae, may have a high risk to outbreak when the aquatic environment encounters hypoxic stress.

Keywords: HIF pathway; ISKNV; Iridovirus; hypoxia; hypoxia response elements.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • DNA, Viral
  • Fish Diseases* / epidemiology
  • Fish Diseases* / genetics
  • Humans
  • Hypoxia / genetics
  • Iridoviridae* / genetics
  • Response Elements

Substances

  • DNA, Viral

Supplementary concepts

  • Infectious spleen and kidney necrosis virus

Grants and funding

This work was supported by the National Key Research and Development Program of China (Nos. 2018YFD0900504 and 2018YFD0900501), the Science and Technology Planning Project of Guangzhou (No. 201904020043), the Guangdong Basic and Applied Basic Research Foundation (No. 2021A1515010647), Guangdong Laboratory for Lingnan Modern Agriculture (No. NZ2021018), the China Agriculture Research System (No. CARS-46), the Guangdong Key Research and Development Program (No. 2021B0202040002), and Innovation Group Project of Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai) (No. 311021006). We also thank Dr. Dong CF for the monoclonal antibody of ISKNV VP101L (mAb2D8, unpublished data).