首页> 外文期刊>Archives of Environmental Contamination and Toxicology >The influence of fresh water pollutants and interaction with Asellus aquaticus (L.) on the feeding activity of Gammarus pulex (L.).
【24h】

The influence of fresh water pollutants and interaction with Asellus aquaticus (L.) on the feeding activity of Gammarus pulex (L.).

机译:淡水污染物以及与水生阿瑟氏菌(L.)的相互作用对Gammarus pulex(L.)摄食活性的影响。

获取原文
获取原文并翻译 | 示例
       

摘要

The feeding response of juvenile amphipod Gammarus pulex (L.) was investigated following exposure to freshwater pollutants. The method employed is nondestructive, provides a rapid indication of the status of groups of individuals, and is based on a time-response analysis of the consumption of the eggs of Artemia salina and the determination of median feeding times or FT50s. The feeding activity of juvenile G. pulex was found to be a sensitive response criterion for use in assessing the sublethal toxicity of copper, lindane, and 3,4-dichloroaniline (3,4-DCA). Reductions in gammarid feeding activity were identified following 96 hours exposure at 12.1 microg/L copper or 8.4 microg/L lindane and 240 hours exposure at 918 microg/L 3,4-DCA. However, a significant increase was observed in the feeding rate of gammarids that had been exposed for 240 h at 0.09 microg/L lindane in comparison with control values. The increase in feeding rate may be interpreted as a possible stimulatory effect associated with the toxicant action of lindane. Increases in gammarid feeding activity were not determined during the experiments conducted with either copper or 3,4-DCA. A sustained reduction in G. pulex feeding rates may cause growth inhibition and impaired reproduction which have previously been identified as sublethal responses of other freshwater organisms exposed to comparable concentrations of lindane, 3,4-DCA, or copper. The feeding bioassay was also used as a tool in an investigation of species interactions in toxicant systems. The feeding responses of G. pulex, which had been maintained in the presence of Asellus aquaticus (as interacting pairs) and exposed to a range of concentrations of lindane or 3,4-DCA, were recorded and compared. The findings illustrate the complex nature of test systems that integrate the stresses of toxicant and competition. In the lindane test system a reduction in gammarid feeding activity was observed following a 96-h exposure with A. aquaticus at 3.8 and 6.0 microg/L lindane (mean measured concentrations). After a 240-h exposure period a decrease in feeding rate was recorded only for gammarids that had been exposed to 6.5 microg/L lindane, however exposure to very low concentrations of lindane (0.1 and 0.9 microg/L) resulted in a significant increase in gammarid feeding activity. In the experiment conducted with 3,4-DCA the calculation of median feeding times or FT50s of gammarids that had been exposed for 96 and 240 h in the toxicant treatment groups with A. aquaticus was largely precluded (in most groups less than 50% of the A. salina eggs were eaten). However, control group FT50 values were determined on each occasion the bioassay was performed, indicating that a substantial reduction in gammarid feeding activity had occurred in the majority of the 3,4-DCA treatment groups.
机译:在暴露于淡水污染物后,研究了幼年两足动物Gammarus pulex(L.)的摄食反应。所采用的方法是非破坏性的,可以快速指示个体群体的状态,并且基于对卤虫卤虫卵的消耗量的时间响应分析以及中位进食时间或FT50的确定。发现幼年G. pulex的摄食活性是用于评估铜,林丹和3,4-二氯苯胺(3,4-DCA)的亚致死毒性的敏感反应标准。在12.1微克/升铜或8.4微克/升林丹暴露96小时后和在918微克/升3,4-DCA暴露240小时后,确定了γ-甲酰胺摄食活性的降低。然而,与对照值相比,在0.09 microg / L林丹下暴露了240 h的γ-甲酰胺的进料速率观察到显着增加。喂食速率的增加可以解释为与林丹的毒性作用有关的可能的刺激作用。在用铜或3,4-DCA进行的实验过程中,未确定γ-射线补料活性的增加。产茶的持续减少可能会导致生长抑制和繁殖受损,这先前已被确定为暴露于其他浓度的林丹,3,4-DCA或铜的其他淡水生物的亚致死反应。进食生物测定法还用作调查毒物系统中物种相互作用的工具。记录并比较了在水生阿瑟氏菌(作为相互作用对)存在下保持的,暴露于一定浓度的林丹或3,4-DCA中的普雷克氏菌的摄食反应。这些发现说明了整合有毒物质和竞争压力的测试系统的复杂性。在林丹测试系统中,在3.8和6.0 microg / L的林丹(平均测量浓度)的水曲霉接触96小时后,观察到γ-酰胺的摄食活性降低。在240小时的暴露期后,仅记录了已暴露于6.5 microg / L林丹的γ-甲酰胺的进料速率降低,但是暴露于极低浓度的林丹(0.1和0.9 microg / L)导致其进食量显着增加。 γ射线摄食活动。在使用3,4-DCA进行的实验中,在水生曲霉毒素治疗组中暴露于96和240小时的γ-甲酰胺的中位进食时间或FT50的计算被大大排除(在大多数组中,不到50%吃了盐沼鸡蛋)。但是,每次进行生物测定时都要确定对照组的FT50值,这表明在大多数3,4-DCA治疗组中,γ-射线摄食活性已大大降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号