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盐碱胁迫下鲫鱼(Carassius auratus)阻断谷氨酸途径加剧氧化应激、氨毒性和代谢紊乱的机制

Mechanism of blocking the glutamate pathway to exacerbate oxidative stress, ammonia toxicity and metabolic disorders in crucian carp (Carassius auratus) under saline-alkaline exposure.

作者信息

Liu Wenzhi, Han Lin, Yuan Fangying, Liu Qianwen, Cheng Hongyu, Jin Xiaofeng, Sun Yanchun

机构信息

Heilongjiang River Fisheries Research Institute of Chinese Academy of Fishery Sciences/Laboratory of Quality & Safety Risk Assessment for Aquatic Products (Harbin), Ministry of Agriculture and Rural Areas, Harbin 150070, China; Department of Food Science and Engineering, College of Food Science and Technology, Shanghai Ocean University, Shanghai 201306, China.

Heilongjiang River Fisheries Research Institute of Chinese Academy of Fishery Sciences/Laboratory of Quality & Safety Risk Assessment for Aquatic Products (Harbin), Ministry of Agriculture and Rural Areas, Harbin 150070, China; Department of Chemical Engineering and Technology, College of Materials and Chemical Engineering, Harbin University of Science and Technology, Harbin 150080, China.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2025 May;291:110146. doi: 10.1016/j.cbpc.2025.110146. Epub 2025 Feb 17.

Abstract

Climate change and intensified human activities have accelerated the salinization and alkalinization of aquatic environments, further shrinking the space for freshwater aquaculture. One of the key survival mechanisms for fish in saline-alkaline habitats is the conversion of accumulated endogenous ammonia into less toxic glutamine. This study focuses on the freshwater teleost, crucian carp (Carassius auratus), using the liver as the target organ. Three groups were established: 0, 20, and 40 mmol/L NaHCO stress groups. After 30 days, methionine sulfoximine was injected to block the glutamate pathway, respectively. Through a combination of biochemical analysis and metabolomics, this study investigated the mechanisms by which blocking the glutamate pathway under different NaHCO stress concentrations affects metabolism in the liver of crucian carp. Biochemical results indicated that saline-alkaline stress led to oxidative stress and impaired ammonia excretion in crucian carp, and these effects were exacerbated after blocking the glutamate pathway. Metabolomic results revealed significant alterations in pathways such as glycerophospholipid metabolism, arachidonic acid metabolism, and purine metabolism. The study demonstrates that blocking the glutamate pathway exacerbates lipid and energy metabolism disorders under saline-alkaline stress, with crucian carp compensating by regulating glucose metabolism to mitigate energy deficiencies. In summary, this study elucidates the metabolic changes in crucian carp following the blockade of glutamate pathway under carbonate-alkaline stress, providing insight into the mechanisms leading to liver inflammation and metabolic dysregulation, and offers preliminary insights into the effects on ammonia excretion, which lay a scientific foundation for future research on freshwater teleosts in saline-alkaline environments.

摘要

气候变化和人类活动加剧加速了水生环境的盐碱化,进一步压缩了淡水养殖的空间。鱼类在盐碱栖息地的关键生存机制之一是将积累的内源性氨转化为毒性较小的谷氨酰胺。本研究以淡水硬骨鱼鲫鱼(Carassius auratus)为研究对象,以肝脏为靶器官。设立了三组:0、20和40 mmol/L NaHCO应激组。30天后,分别注射蛋氨酸亚砜亚胺以阻断谷氨酸途径。通过生化分析和代谢组学相结合的方法,本研究探讨了在不同NaHCO应激浓度下阻断谷氨酸途径对鲫鱼肝脏代谢的影响机制。生化结果表明,盐碱应激导致鲫鱼氧化应激和氨排泄受损,阻断谷氨酸途径后这些影响加剧。代谢组学结果显示甘油磷脂代谢、花生四烯酸代谢和嘌呤代谢等途径发生了显著变化。研究表明,阻断谷氨酸途径会加剧盐碱应激下的脂质和能量代谢紊乱,鲫鱼通过调节葡萄糖代谢来弥补能量不足。总之,本研究阐明了碳酸盐-碱应激下阻断谷氨酸途径后鲫鱼的代谢变化,深入了解了导致肝脏炎症和代谢失调的机制,并初步探讨了对氨排泄的影响,为未来盐碱环境中淡水硬骨鱼的研究奠定了科学基础。

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