Li Xiaohui, Feng Cui, Sha Hang, Zhou Tong, Zou Guiwei, Liang Hongwei
Yangtze River Fisheries Research Institute, Chinese Academy of Fisheries, Wuhan 430223, China.
State Key Laboratory of Developmental Biology of Freshwater Fish, College of Life Sciences, Hunan Normal University, Changsha 410081, China.
Antioxidants (Basel). 2022 Mar 19;11(3):589. doi: 10.3390/antiox11030589.
Aquaculture environments frequently experience hypoxia and subsequent reoxygenation conditions, which have significant effects on hypoxia-sensitive fish populations. In this study, hepatic biochemical activity indices in serum and the content of major neurotransmitters in the brain were altered markedly after acute hypoxia and reoxygenation exposure in silver carp (). Proteomics analysis of the liver showed that a number of immune-related and cytoskeletal organization-related proteins were downregulated, the ferroptosis pathway was activated, and several antioxidant molecules and detoxifying enzymes were upregulated. Proteomics analysis of the brain showed that somatostatin-1A (SST1A) was upregulated, dopamine-degrading enzyme catechol O methyltransferase (COMT) and ferritin, heavy subunit (FerH) were downregulated, and the levels of proteins involved in the nervous system were changed in different ways. In conclusion, these findings highlight that hypoxia-reoxygenation has potential adverse effects on growth, locomotion, immunity, and reproduction of silver carp, and represents a serious threat to liver and brain function, possibly via ferroptosis, oxidative stress, and cytoskeleton destruction in the liver, and abnormal expression of susceptibility genes for neurodegenerative disorders in the brain. Our present findings provide clues to the mechanisms of hypoxia and reoxygenation damage in the brain and liver of hypoxia-sensitive fish. They could also be used to develop methods to reduce hypoxia or reoxygenation injury to fish.
水产养殖环境经常经历缺氧及随后的复氧情况,这对缺氧敏感的鱼类种群有重大影响。在本研究中,鲢鱼经急性缺氧和复氧暴露后,血清中的肝脏生化活性指标以及脑中主要神经递质的含量发生了显著变化。肝脏的蛋白质组学分析表明,一些与免疫相关和细胞骨架组织相关的蛋白质表达下调,铁死亡途径被激活,一些抗氧化分子和解毒酶表达上调。脑的蛋白质组学分析表明,生长抑素 - 1A(SST1A)表达上调,多巴胺降解酶儿茶酚 - O - 甲基转移酶(COMT)和铁蛋白重链亚基(FerH)表达下调,且参与神经系统的蛋白质水平发生了不同方式的变化。总之,这些发现突出表明,缺氧 - 复氧对鲢鱼的生长、运动、免疫和繁殖具有潜在的不利影响,并且可能通过肝脏中的铁死亡、氧化应激和细胞骨架破坏以及脑中神经退行性疾病易感基因的异常表达,对肝脏和脑功能构成严重威胁。我们目前的研究结果为缺氧敏感鱼类脑和肝脏中缺氧及复氧损伤的机制提供了线索。它们还可用于开发减少鱼类缺氧或复氧损伤的方法。