小虾
基因敲除
副溶血性弧菌
生物
活性氧
磷脂酰胆碱
过氧化氢酶
细胞生物学
血蓝蛋白
生物化学
免疫系统
微生物学
新陈代谢
肝胰腺
免疫
对虾科
分子生物学
超氧化物歧化酶
吞噬作用
细胞内
酶
化学
代谢组学
代谢途径
斑节对虾
生物发光
作者
Yunyu Shi,Yong-Hui Kong,Shiyuan Bao,Yuqing Zhou,Jiawei Cheng,Zhihong Zheng,Yongzhen Zhao,Xianliang Zhao,Yueling Zhang
标识
DOI:10.1093/jimmun/vkag018
摘要
Acute hepatopancreatic necrosis disease (AHPND) is one of the most severe threats to global shrimp aquaculture. Recent studies report a significant reduction in hepatopancreas hemocyanin levels in Penaeus vannamei (PvHMC) by AHPND. To investigate the functional implications, we performed liquid chromatography-tandem mass spectrometry-based metabolomics and found that PvHMC knockdown caused a marked accumulation of phosphatidylcholine (PC). qPCR and ELISA analyses further showed that PvHMC suppression upregulated the mRNA expression, protein abundance, and enzymatic activity of PvCPT1, a key enzyme in PC synthesis. Co-immunoprecipitation and confocal immunofluorescence analyses confirmed a direct interaction between PvHMC and PvCPT1, indicating that PvHMC regulates PC metabolism by binding to PvCPT1. Functional assays demonstrated that exogenous PC supplementation significantly increased reactive oxygen species (ROS) production, whereas simultaneous knockdown of PvHMC and PvCPT1 reduced plasma PC levels and ROS activity. Under pathogenic challenge, PC administration inhibited Vibrio parahaemolyticus (VpAHPND) proliferation by enhancing intracellular ROS-mediated antimicrobial responses, ultimately improving shrimp survival. In summary, PvHMC regulates PC metabolism to modulate ROS levels, strengthening shrimp's immune defense against pathogenic infections. These findings reveal a novel metabolic regulatory role of PvHMC in response to VpAHPND infection and suggest potential strategies for controlling AHPND in shrimp aquaculture.
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