首页> 外文期刊>Environmental toxicology and chemistry >MULTIPLE STRESS EFFECTS OF VISION~(~R) HERBICIDE, pH, AND FOOD ON ZOOPLANKTON AND LARVAL AMPHIBIAN SPECIES FROM FOREST WETLANDS
【24h】

MULTIPLE STRESS EFFECTS OF VISION~(~R) HERBICIDE, pH, AND FOOD ON ZOOPLANKTON AND LARVAL AMPHIBIAN SPECIES FROM FOREST WETLANDS

机译:视觉〜(〜R)除草剂,pH和食物对森林湿地浮游动物和幼虫两栖动物物种的多重胁迫效应

获取原文
获取原文并翻译 | 示例
       

摘要

As part of a multiple-tier research program, interactions of the herbicide Vision~(~R) (glyphosate) with two stressors, pH and food level, were examined. Effects of the formulated product Vision were tested at two test concentrations (0.75 and 1.50 mg acid equivalent/L), two pH levels (pH 5.5 and 7.5), and under high and low food concentrations. Effects of each stressor alone and in combination were examined using two common wetland taxa: Zooplankton, Simocephalus vetulus, and tadpoles (Gosner stage 25) of Rana pipiens. For S. vetulus, survival, reproduction, and development time were measured; survival was measured for R. pipiens. For both species, significant effects of the herbicide were measured at concentrations lower than the calculated worst-case value for the expected environmental concentration ([EEC], 1.40 mg acid equivalent/L). Moreover, high pH (7.5) increased the toxic effects of the herbicide on all response variables for both species even though it improved reproductive rate of 5. vetulus over pH 5.5 in the absence of herbicide. Stress due to low food alone also interacted with pH 5.5 to diminish 5. vetulus survival. These results support the general postulate that multiple stress interactions may exacerbate chemical effects on aquatic biota in natural systems.
机译:作为一项多层研究计划的一部分,研究了除草剂Vision〜(〜R)(草甘膦)与两个压力因子(pH和食物水平)的相互作用。在两种测试浓度(0.75和1.50 mg酸当量/ L),两种pH值(pH 5.5和7.5)以及高和低食物浓度下测试了配方产品Vision的效果。使用两种常见的湿地生物分类:浮游动物,Simocephalus vetulus和R(Rana pipiens)(Gosner阶段25)来检查单独或组合每个应激源的效果。对于野葡萄链球菌,测定其存活,繁殖和发育时间。测定了Pipiens的存活。对于这两个物种,所测除草剂的显着效果均低于预期环境浓度的计算出的最坏情况值([EEC],1.40 mg酸当量/ L)。此外,高pH(7.5)增强了除草剂对两种物种所有反应变量的毒性作用,即使在不使用除草剂的情况下,其pH值比5.5提高了5倍。仅仅由于食物不足而引起的压力也与pH 5.5相互作用,从而降低了5.存活率。这些结果支持一般的假设,即多重应力相互作用可能加剧自然系统中对水生生物的化学作用。

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