A Transcriptomic Study Reveals That Fish Vibriosis Due to the Zoonotic Pathogen <i>Vibrio vulnificus</i> Is an Acute Inflammatory Disease in Which Erythrocytes May Play an Important Role

Hernandez-Cabanyero, Carla; Sanjuan, Eva; Reyes-Lopez, Felipe; Vallejos-Vidal, Eva; Tort, Lluis; Amaro, Carmen

Abstract

Vibrio vulnificus is a marine zoonotic pathogen associated with fish farms that is considered a biomarker of climate change. Zoonotic strains trigger a rapid death of their susceptible hosts (fish or humans) by septicemia that has been linked to a cytokine storm in mice. Therefore, we hypothesize that V. vulnificus also causes fish death by triggering a cytokine storm in which red blood cells (RBCs), as nucleated cells in fish, could play an active role. To do it, we used the eel immersion infection model and then analyzed the transcriptome in RBCs, white BCs, and whole blood using an eel-specific microarray platform. Our results demonstrate that V. vulnificus triggers an acute but atypical inflammatory response that occurs in two main phases. The early phase (3 h post-infection [hpi]) is characterized by the upregulation of several genes for proinflammatory cytokines related to the mucosal immune response (il17a/f1 and il20) along with genes for antiviral cytokines (il12 beta) and antiviral factors (ifna and ifnc). In contrast, the late phase (12 hpi) is based on the upregulation of genes for typical inflammatory cytokines (il1 beta), endothelial destruction (mmp9 and hyal2), and, interestingly, genes related to an RNA-based immune response (sidt1). Functional assays revealed significant proteolytic and hemolytic activity in serum at 12 hpi that would explain the hemorrhages characteristic of this septicemia in fish. As expected, we found evidence that RBCs are transcriptionally active and contribute to this atypical immune response, especially in the short term. Based on a selected set of marker genes, we propose here an in vivo RT-qPCR assay that allows detection of early sepsis caused by V. vulnificus. Finally, we develop a model of sepsis that could serve as a basis for understanding sepsis caused by V. vulnificus not only in fish but also in humans.

Más información

Título según WOS: ID WOS:000789110500001 Not found in local WOS DB
Título según SCOPUS: ID SCOPUS_ID:85128476776 Not found in local SCOPUS DB
Título de la Revista: FRONTIERS IN MICROBIOLOGY
Volumen: 13
Editorial: Frontiers
Fecha de publicación: 2022
DOI:

10.3389/FMICB.2022.852677

Notas: ISI, SCOPUS - WOS