综合多种鱼类生物标志物作为水生生态系统重金属污染指标的研究进展

Vijay Hemmadi
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引用次数: 11

摘要

与不同的生态毒物相关的生物标记物有大量的数据可用。但是关于鱼类中特定污染物的生物标志物的数据很少。传统上,沉积物、水和生物群中重金属的检测和量化为我们提供了有关生态系统中重金属含量和类型的宝贵信息。该信息可用于选择重金属特异性生物标志物。例如,如果镉(Cd)、锌(Zn)和铜(Cu)浓度较高,则金属硫蛋白(MT)可以作为一个很好的候选生物标志物。与此同时,超氧化物歧化酶(SOD)是铁(Fe)和汞(Hg)污染的一个非常有效的指标,过氧化氢酶(CAT)是镉(Cd)和锌(Zn)暴露的特异性指标。对于这类生物标志物的选择,研究人员应该了解重金属类型特异性的生物标志物。这篇综述是积累重金属类型特异性生物标志物的一项小努力。本文通过重金属定量和生物标志物选择的结合,展示了重金属在鱼类中的暴露和影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A critical review on integrating multiple fish biomarkers as indicator of heavy metals contamination in aquatic ecosystem
An immense amount of data is available on biomarkers related to different eco-toxicants. But data on contaminant-specific biomarkers in fishes is sparse. Traditionally, detection and quantification of heavy metals in sediment, water, and biota gave us valuable information on the quantity and the type of heavy metal present in the ecosystem. This information can be utilized to select a heavy metal specific biomarker. For an instance, if Cadmium (Cd), Zinc (Zn) and Cupper (Cu) are at high concentration, then Metallothionein (MT) can be a good candidate biomarker. Along with this, Superoxide dismutase (SOD) is a very potent indicator of Iron (Fe) and Mercury (Hg) contamination and also Catalase (CAT) is specific for Cadmium (Cd) and Zinc (Zn) exposure. For these kinds of selection of biomarker, the researchers should know heavy metals type specific biomarker. This review is the small effort towards cumulating the heavy metals type specific biomarker. This demonstrates the exposure and effects of heavy metals in fishes by integrating the heavy metal quantification and biomarker selection.
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