Duox mediated ROS production inhibited WSSV replication in Eriocheir sinensis under short-term nitrite stress

亚硝酸盐 活性氧 生物 氧化应激 绒螯蟹 白斑综合征 细胞生物学 生物化学 微生物学 基因 生态学 硝酸盐 动物科学
作者
Rui Jia,Xiaoling Dai,Yanfang Li,Xintong Yang,Xiuwen Min,Derun Quan,Peng Liu,Xin Huang,Jiachun Ge,Qian Ren
出处
期刊:Aquatic Toxicology [Elsevier]
卷期号:260: 106575-106575 被引量:4
标识
DOI:10.1016/j.aquatox.2023.106575
摘要

Nitrite stress and white spot syndrome virus (WSSV) infection are major problems threatening the sustainable and healthy development of Eriocheir sinensis. Some studies have found that nitrite stress can lead to the production of reactive oxygen species (ROS), whereas synthetic ROS plays a vital role in the signaling pathway. However, whether nitrite stress influences the infection of crabs by WSSV remains unclear. NADPH oxidases, including NOX1-5 and Duox1-2, are important for ROS production. In the present study, a novel Duox gene (designated as EsDuox) was identified from E. sinensis. The studies found that nitrite stress could increase the expression of EsDuox during WSSV infection and decrease the transcription of the WSSV envelope protein VP28. Moreover, nitrite stress could increase the production of ROS, and the synthesis of ROS relied on EsDuox. These results indicated a potential "nitrite stress-Duox activation-ROS production" pathway that plays a negative role in WSSV infection in E. sinensis. Further studies found that nitrite stress and EsDuox could promote the expression of EsDorsal transcriptional factor and antimicrobial peptides (AMPs) during WSSV infection. Moreover, the synthesis of AMPs was positively regulated by EsDorsal in the process of WSSV infection under nitrite stress. Furthermore, EsDorsal played an inhibitory role in the replication of WSSV under nitrite stress. Our study reveals a new pathway for "nitrite stress-Duox activation-ROS production-Dorsal activation-AMP synthesis" that is involved in the defense against WSSV infection in E. sinensis during short-term nitrite stress.
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