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淡水溞属(Apuseles aquaticus)作为环境污染生物监测模型的研究进展:综述。

The freshwater isopod Asellus aquaticus as a model biomonitor of environmental pollution: A review.

机构信息

School of Biological, Earth & Environmental Sciences, University College Cork, Ireland; School of Chemistry, University College Cork, Ireland.

School of Biological, Earth & Environmental Sciences, University College Cork, Ireland.

出版信息

Chemosphere. 2019 Nov;235:498-509. doi: 10.1016/j.chemosphere.2019.06.217. Epub 2019 Jun 28.

Abstract

Anthropogenic substances pollute freshwater systems worldwide, with serious, long-lasting effects to aquatic biota. Present methods of detecting elevated levels of trace metal pollutants are typically accurate but expensive, and therefore not suitable for applications requiring high spatial resolution. Additionally, these methods are not efficient solutions for the determination of long-term averages of pollution concentration. This is the rationale for the implementation of a biomonitoring programme as an alternative means of pollutant detection. This review summarises recent literature concerning the past and potential uses of the benthic isopod Asellus aquaticus as a biomonitor for pollution in freshwater systems. Recent studies indicate that A. aquaticus is well suited for this purpose. However, the mechanisms by which it bioaccumulates toxins have yet to be fully understood. In particular, the interactions between coexisting trace metal pollutants in the aquatic environment have only recently been considered, and it remains unclear how a biomonitoring programme should adapt to the effects of these interactions. It is evident that failing to account for these additional stressors will result in an ineffective biomonitoring programme; for this reason, a comprehensive understanding of the bioaccumulation mechanisms is required in order to reliably anticipate the effects of any interferences on the outcome.

摘要

人为物质污染了全世界的淡水系统,对水生生物群有严重且持久的影响。目前检测痕量金属污染物水平升高的方法通常准确但昂贵,因此不适合需要高空间分辨率的应用。此外,这些方法也不是确定污染浓度长期平均值的有效解决方案。这就是实施生物监测计划作为一种替代污染物检测手段的基本原理。本综述总结了有关过去和潜在使用底栖等足类动物水生真象鼻虫作为淡水系统污染生物监测器的最新文献。最近的研究表明,水生真象鼻虫非常适合这一目的。然而,其生物积累毒素的机制尚未完全了解。特别是,水生环境中共存的痕量金属污染物之间的相互作用最近才被考虑,目前尚不清楚生物监测计划应该如何适应这些相互作用的影响。很明显,如果不考虑这些额外的胁迫因素,生物监测计划将是无效的;因此,为了可靠地预测任何干扰对结果的影响,需要全面了解生物积累机制。

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