解码鱼类起源:金属和代谢物如何区分野生、养殖和逃逸标本。

IF 3.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Metabolites Pub Date : 2025-07-21 DOI:10.3390/metabo15070490
Warda Badaoui, Kilian Toledo-Guedes, Juan Manuel Valero-Rodriguez, Adrian Villar-Montalt, Frutos C Marhuenda-Egea
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引用次数: 0

摘要

背景:水产养殖设施的鱼类逃逸事件正在增加,并引起了重大的生态、经济和可追溯性问题。准确区分野生、养殖和逃逸鱼类的方法对于渔业管理和海鲜认证至关重要。方法:采用多组学方法分析了aurus Sparus, Dicentrarchus labrax和Argyrosomus regius的肌肉组织。用ICP-MS对重金属进行定量,用GC-MS对脂肪酸谱进行评估,用1H NMR谱对代谢组学和脂质组学特征进行鉴定。采用多元统计模型(MDS和PLS-LDA)对鱼源进行分类。结果:野生海鱼的砷含量(9.5倍)、硒含量(3.5倍)、DHA和ARA脂肪酸含量(3.2倍)显著高于野生海鱼,而养殖海鱼的亚油酸和亚麻酸含量(6.5倍)显著高于野生海鱼。野生鱼类的TMAO浓度高达5.3倍,是一种强大的代谢生物标志物。逃脱的鱼表现出中等的生化特征。多变量模型在物种和分析技术上实现了100%的分类准确率。结论:重金属分析、脂肪酸谱和基于核磁共振的代谢组学的整合可以准确区分鱼类来源。虽然肌肉组织提供了与人体暴露相关的可靠生物标志物,但未来的研究应探索其他组织,如肝脏和鳃,以提高可追溯性的分辨率。这些方法支持海产品认证,提高水产养殖的可追溯性,并有助于管理逃逸事件的生态影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decoding Fish Origins: How Metals and Metabolites Differentiate Wild, Cultured, and Escaped Specimens.

Background: Fish escape events from aquaculture facilities are increasing and pose significant ecological, economic, and traceability concerns. Accurate methods to differentiate between wild, cultured, and escaped fish are essential for fishery management and seafood authentication.

Methods: This study analyzed muscle tissue from Sparus aurata, Dicentrarchus labrax, and Argyrosomus regius using a multiomics approach. Heavy metals were quantified by ICP-MS, fatty acid profiles were assessed via GC-MS, and metabolomic and lipidomic signatures were identified using 1H NMR spectroscopy. Multivariate statistical models (MDS and PLS-LDA) were applied to classify fish origins.

Results: Wild seabream showed significantly higher levels of arsenic (9.5-fold), selenium (3.5-fold), and DHA and ARA fatty acids (3.2-fold), while cultured fish exhibited increased linoleic and linolenic acids (6.5-fold). TMAO concentrations were up to 5.3-fold higher in wild fish, serving as a robust metabolic biomarker. Escaped fish displayed intermediate biochemical profiles. Multivariate models achieved a 100% classification accuracy across species and analytical techniques.

Conclusions: The integration of heavy metal analysis, fatty acid profiling, and NMR-based metabolomics enables the accurate differentiation of fish origin. While muscle tissue provides reliable biomarkers relevant to human exposure, future studies should explore additional tissues such as liver and gills to improve the resolution of traceability. These methods support seafood authentication, enhance aquaculture traceability, and aid in managing the ecological impacts of escape events.

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来源期刊
Metabolites
Metabolites Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
5.70
自引率
7.30%
发文量
1070
审稿时长
17.17 days
期刊介绍: Metabolites (ISSN 2218-1989) is an international, peer-reviewed open access journal of metabolism and metabolomics. Metabolites publishes original research articles and review articles in all molecular aspects of metabolism relevant to the fields of metabolomics, metabolic biochemistry, computational and systems biology, biotechnology and medicine, with a particular focus on the biological roles of metabolites and small molecule biomarkers. Metabolites encourages scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on article length. Sufficient experimental details must be provided to enable the results to be accurately reproduced. Electronic material representing additional figures, materials and methods explanation, or supporting results and evidence can be submitted with the main manuscript as supplementary material.
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