Untargeted LC–MS metabolomics reveals the metabolic responses in the Eriocheir sinensis gills exposed to salinity and alkalinity stress

IF 3.9 3区 环境科学与生态学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Comparative Biochemistry and Physiology C-toxicology & Pharmacology Pub Date : 2024-04-03 DOI:10.1016/j.cbpc.2024.109908
Shihui Wang , Yingying Song , Liang Luo , Rui Zhang , Kun Guo , Zhigang Zhao
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Abstract

In recent years, saline–alkaline aquaculture development has become an important measure for China to expand its fishery development space to ensure food safety. Previous studies have verified that salinity and alkalinity positively influence the quality of Chinese mitten crabs (Eriocheir sinensis). However, the regulatory mechanism of E. sinensis endures saline–alkaline stress which remains obscure. This study investigated the metabolic changes in puberty-molting E. sinensis gills exposed to freshwater (FW), sodium chloride salinity of 5 ppt (SW), and carbonate alkalinity 10.00 mmol/L (AW) for 50 days using untargeted liquid chromatography-mass spectrometry metabolomics (LC–MS). A total of 5802 (positive-ion mode) and 6520 (negative-ion mode) peaks were extracted by LC–MS, respectively. A total of 188 (50 upregulated and 138 downregulated), 141 (94 upregulated and 47 downregulated), and 130 (87 upregulated and 43 downregulated) significantly regulated metabolites (SRMs) were observed in the FW–SW, FW–AW, and SW–AW treatments, respectively, wherein 42 generic SRMs were also found by Venn diagram analysis. Seven of the top 10 SRMs with the highest (variable importance in projection) VIP values were similarly identified in FW–SW and SW–AW. Integrated analysis of key metabolic pathways revealed glycerophospholipid, choline in cancer, phenylalanine, and butanoate metabolism. Overall, significant differences were observed in the metabolites and key metabolic pathways of E. sinensis gill exposed to salinity and alkalinity stress. These results will be helpful in understanding the environmental adaptability of aquatic crustaceans to saline–alkaline water.

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非靶向LC-MS代谢组学揭示暴露于盐度和碱度胁迫的中华鳖鳃的代谢反应
近年来,发展盐碱地水产养殖已成为我国拓展渔业发展空间、保障食品安全的重要举措。以往研究证实,盐度和碱度对中华绒螯蟹的品质有积极影响。然而,中华绒螯蟹承受盐碱胁迫的调控机制仍不清楚。本研究采用非靶向液相色谱-质谱代谢组学(LC-MS)方法,研究了暴露于淡水(FW)、氯化钠盐度5 ppt(SW)和碳酸盐碱度10.00 mmol/L(AW)条件下50天的中华绒螯蟹的代谢变化。LC-MS分别提取了5802个(正离子模式)和6520个(负离子模式)峰。在 FW-SW、FW-AW 和 SW-AW 处理中分别观察到 188 个(50 个上调,138 个下调)、141 个(94 个上调,47 个下调)和 130 个(87 个上调,43 个下调)显著调控代谢物(SRMs),其中通过文氏图分析还发现了 42 个通用 SRMs。在 VIP 值最高的前 10 个 SRM 中,有 7 个在 FW-SW 和 SW-AW 中同样被确定。对关键代谢途径的综合分析显示了甘油磷脂、癌症中的胆碱、苯丙氨酸和丁酸代谢。总体而言,暴露于盐度和碱度胁迫的中华绒鳃的代谢物和关键代谢途径存在明显差异。这些结果将有助于了解水生甲壳动物对盐碱水环境的适应性。
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来源期刊
CiteScore
7.50
自引率
5.10%
发文量
206
审稿时长
30 days
期刊介绍: Part C: Toxicology and Pharmacology. This journal is concerned with chemical and drug action at different levels of organization, biotransformation of xenobiotics, mechanisms of toxicity, including reactive oxygen species and carcinogenesis, endocrine disruptors, natural products chemistry, and signal transduction with a molecular approach to these fields.
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