Two White Spot Syndrome Virus MicroRNAs Target the Dorsal Gene To Promote Virus Infection in Marsupenaeus japonicus Shrimp
0301 basic medicine
MicroRNAs
03 medical and health sciences
White spot syndrome virus 1
Penaeidae
Host-Pathogen Interactions
Animals
RNA, Viral
Virus Replication
Transcription Factors
3. Good health
DOI:
10.1128/jvi.02261-16
Publication Date:
2017-02-09T01:50:25Z
AUTHORS (6)
ABSTRACT
ABSTRACT
In eukaryotes, microRNAs (miRNAs) serve as regulators of many biological processes, including virus infection. An miRNA can generally target diverse genes during virus-host interactions. However, the regulation of gene expression by multiple miRNAs has not yet been extensively explored during virus infection. This study found that the Spaztle (Spz)-Toll-Dorsal-antilipopolysaccharide factor (ALF) signaling pathway plays a very important role in antiviral immunity against invasion of white spot syndrome virus (WSSV) in shrimp (
Marsupenaeus japonicus
).
Dorsal
, the central gene in the Toll pathway, was targeted by two viral miRNAs (WSSV-miR-N13 and WSSV-miR-N23) during WSSV infection. The regulation of
Dorsal
expression by viral miRNAs suppressed the Spz-Toll-Dorsal-ALF signaling pathway in shrimp
in vivo
, leading to virus infection. Our study contributes novel insights into the viral miRNA-mediated Toll signaling pathway during the virus-host interaction.
IMPORTANCE
An miRNA can target diverse genes during virus-host interactions. However, the regulation of gene expression by multiple miRNAs during virus infection has not yet been extensively explored. The results of this study indicated that the shrimp
Dorsal
gene, the central gene in the Toll pathway, was targeted by two viral miRNAs during infection with white spot syndrome virus. Regulation of
Dorsal
expression by viral miRNAs suppressed the Spz-Toll-Dorsal-ALF signaling pathway in shrimp
in vivo
, leading to virus infection. Our study provides new insight into the viral miRNA-mediated Toll signaling pathway in virus-host interactions.
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