重金属在海洋鱼类体内的生物积累和营养转移:生态和生态系统水平的影响。

IF 6.8 Q1 TOXICOLOGY
Andra Oros
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引用次数: 0

摘要

海洋生态系统中的重金属污染构成了严峻的环境挑战,对生物多样性、营养动力学和人类健康具有重大影响。由于海洋鱼类在食物网中的作用以及它们的生物积累和营养转移能力,它们是重金属污染的关键生物指标。本文综述了目前海洋鱼类重金属积累的途径和机制,重点介绍了影响重金属吸收、滞留和组织分布的因素。我们探索了控制营养转移和生物放大的过程,强调了物种特定的积累模式和对包括人类在内的顶级捕食者构成的风险。此外,我们评估了重金属污染在种群、群落和生态系统水平上的生态后果,强调了其对鱼类繁殖、群落结构和营养相互作用的影响。通过整合最近的研究成果,本文强调了关键的知识差距,并提出了未来的研究方向,以改善环境监测和风险评估。鉴于重金属在海洋环境中的持久性和生物利用度,有效的污染控制战略和可持续渔业管理对于减轻长期生态和公共健康风险至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioaccumulation and Trophic Transfer of Heavy Metals in Marine Fish: Ecological and Ecosystem-Level Impacts.

Heavy metal contamination in marine ecosystems poses a critical environmental challenge, with significant implications for biodiversity, trophic dynamics, and human health. Marine fish are key bioindicators of heavy metal pollution because of their role in food webs and their capacity for bioaccumulation and trophic transfer. This review synthesizes current knowledge on the pathways and mechanisms of heavy metal accumulation in marine fish, focusing on factors that influence the uptake, retention, and tissue distribution. We explore the processes governing trophic transfer and biomagnification, highlighting species-specific accumulation patterns and the risks posed to apex predators, including humans. Additionally, we assess the ecological consequences of heavy metal contamination at population, community, and ecosystem levels, emphasizing its effects on fish reproduction, community structure, and trophic interactions. By integrating recent findings, this review highlights key knowledge gaps and suggests future research directions to improve environmental monitoring and risk assessment. Given the persistence and bioavailability of heavy metals in marine environments, effective pollution control strategies and sustainable fisheries management are imperative to mitigate long-term ecological and public health risks.

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来源期刊
CiteScore
5.30
自引率
1.70%
发文量
21
审稿时长
10 weeks
期刊介绍: The Journal of Xenobiotics publishes original studies concerning the beneficial (pharmacology) and detrimental effects (toxicology) of xenobiotics in all organisms. A xenobiotic (“stranger to life”) is defined as a chemical that is not usually found at significant concentrations or expected to reside for long periods in organisms. In addition to man-made chemicals, natural products could also be of interest if they have potent biological properties, special medicinal properties or that a given organism is at risk of exposure in the environment. Topics dealing with abiotic- and biotic-based transformations in various media (xenobiochemistry) and environmental toxicology are also of interest. Areas of interests include the identification of key physical and chemical properties of molecules that predict biological effects and persistence in the environment; the molecular mode of action of xenobiotics; biochemical and physiological interactions leading to change in organism health; pathophysiological interactions of natural and synthetic chemicals; development of biochemical indicators including new “-omics” approaches to identify biomarkers of exposure or effects for xenobiotics.
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