Department of Ecology, University of Barcelona, Diagonal 645, 08028 Barcelona, Spain.
Arch Environ Contam Toxicol. 2010 May;58(4):955-62. doi: 10.1007/s00244-009-9441-5. Epub 2009 Dec 18.
Herbicides affect the structure and functional parameters of fluvial biofilm. Diuron is toxic to primary producers and disrupts endocrine activity. Here, we studied the interaction between this toxicant and several biological compartments in a simple food chain composed of herbivores (the snail Physella [Costatella] acuta) and biofilm. We used indoor experimental channels to which Diuron was added at a realistic concentration (2 mug/L). Bacterial survival and chlorophyll-a and photosynthetic activity were analyzed in the biofilm. We monitored biomass, mortality, reproduction, and motility as end points in the freshwater snail P. acuta. Our results showed that bacterial survival and photosynthetic activity were sensitive to Diuron. Snails were not affected by the herbicide at the concentration tested. No significant interactions between the toxicant and grazers were observed on the biofilm. Reproductive traits, however, were slightly affected, indicating a possible endocrine disruption.
除草剂会影响河流生物膜的结构和功能参数。敌草隆对初级生产者有毒,并扰乱内分泌活动。在这里,我们研究了这种有毒物质与由食草动物(蜗牛 Physella [Costatella] acuta)和生物膜组成的简单食物链中几个生物区室之间的相互作用。我们使用室内实验渠道,在其中添加了实际浓度(2 微克/升)的敌草隆。分析了生物膜中的细菌存活率以及叶绿素-a 和光合作用活性。我们监测了淡水蜗牛 P. acuta 的生物量、死亡率、繁殖和运动能力等终点。我们的结果表明,细菌存活率和光合作用活性对敌草隆敏感。在测试的浓度下,蜗牛不受除草剂的影响。在生物膜上没有观察到有毒物质和食草动物之间的显著相互作用。然而,繁殖特征受到轻微影响,表明可能存在内分泌干扰。