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镉和砷酸盐对食蚊鱼(甲壳纲,端足目)的单一和联合效应:理解生理和行为反应之间的联系。

Single and combined effects of cadmium and arsenate in Gammarus pulex (Crustacea, Amphipoda): understanding the links between physiological and behavioural responses.

机构信息

Laboratoire Interdisciplinaire des Environnements Continentaux (LIEC), CNRS UMR 7360, Université de Lorraine - Metz, France.

出版信息

Aquat Toxicol. 2013 Sep 15;140-141:106-16. doi: 10.1016/j.aquatox.2013.05.010. Epub 2013 May 25.

Abstract

This study aimed at investigating the individual and interactive effects of cadmium (Cd) and arsenate (AsV) in Gammarus pulex (Crustacea, Amphipoda) through the use of several biomarkers. Individuals were exposed for 240 h to two concentrations of AsV or Cd alone, and all the possible binary mixtures of these concentrations of AsV and Cd in a complete factorial design. The pattern of the biomarkers' responses to Cd and AsV alone or in mixture was similar in Gammarus pulex, even if the response intensity varied depending on the tested conditions. G. pulex responded to contamination with increased mobilization of the detoxification systems [i.e. γ-glutamyl-cystein ligase activity (GCL), reduced glutathione content (GSH) and metallothionein concentrations (MT)]. This response seems to imply changes in energy reserve utilization (total lipids and proteins are used prior to glycogen reserves), but also a possible energy reallocation from locomotion to detoxification processes. The observed increase in lipid peroxidation could be relied to the increasing gammarid mortality, despite the higher mobilization of detoxification systems. Even if the outcome of the complex interactions between AsV and Cd remains difficult to unravel, such studies are critically important for better assessing the effects of stressors on organisms, populations and communities in a multi-contamination context of ecosystems.

摘要

本研究旨在通过使用多种生物标志物来研究镉(Cd)和砷酸盐(AsV)在食蚊鱼(甲壳纲,端足目)个体中的单独及交互作用。个体在 240 小时内分别暴露于两种浓度的 AsV 或 Cd 中,以及在完全析因设计中所有这些浓度的 AsV 和 Cd 的可能二元混合物。在食蚊鱼中,生物标志物对 Cd 和 AsV 单独或混合的反应模式相似,即使反应强度取决于测试条件。食蚊鱼对污染的反应是解毒系统的动员增加[即γ-谷氨酰半胱氨酸连接酶活性(GCL)、还原型谷胱甘肽含量(GSH)和金属硫蛋白浓度(MT)]。这种反应似乎意味着能量储备利用的变化(总脂质和蛋白质在糖原储备之前被利用),但也可能是从运动到解毒过程的能量重新分配。尽管解毒系统的动员程度更高,但观察到的脂质过氧化增加可能与食蚊鱼死亡率的增加有关。即使砷酸盐和镉之间复杂相互作用的结果仍然难以解释,但此类研究对于在生态系统的多污染背景下更好地评估应激源对生物体、种群和群落的影响至关重要。

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