首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Effects of the fungicide benomyl on earthworms in laboratory tests under tropical and temperate conditions.
【24h】

Effects of the fungicide benomyl on earthworms in laboratory tests under tropical and temperate conditions.

机译:在热带和温带条件下的实验室测试中,杀菌剂苯菌灵对earth的影响。

获取原文
获取原文并翻译 | 示例
           

摘要

Soil organisms play a crucial role in the terrestrial ecosystem. Plant protection products (PPPs) are known to affect soil organisms and might have negative impacts on soil functions influenced by these organisms. Little research has been performed to date on the impact of PPPs on tropical soil ecosystems. Therefore, in this study it was investigated whether the effects of the fungicide benomyl (chosen as a model substance) differ between tropical and temperate regions and whether data generated under temperate conditions can be used for the Environmental Risk Assessment (ERA) in tropical regions. The effect of benomyl on earthworms was evaluated in acute and chronic laboratory tests modified for tropical conditions. These tests were performed at two temperatures (20 degrees C and 28 degrees C) and with two strains (temperate and tropical) of the compost worm Eisenia fetida. The fungicide was spiked in two natural and two artificial soils. In addition to the organization for economic cooperation and development (OECD) artificial soil, a tropical artificial soil (TAS), containing a tropical fern product (xaxim) instead of peat, was developed in this study. The results from the laboratory tests and a literature review showed that the effects of benomyl were, on average, lower under tropical conditions (LC(50): 450-630 mg active ingredient (a.i.)/kg; EC(50): 0.8-12.9 mg a.i./kg) than under temperate conditions (LC(5)0: 61-67 mg a.i./kg; EC(50): 1.0-1.6 mg a.i./kg) by a maximum factor of 10.3 (acute tests) and 12.9 (chronic tests). This result might be caused by an increased degradation of benomyl, and/or its first metabolite carbendazim, at higher temperatures, but a different sensitivity of the two worm strains cannot be ruled out. Despite the lower toxicity under tropical conditions and assuming comparable application rates, a preliminary assessment confirms the risk of benomyl to soil invertebrates under both conditions.
机译:土壤生物在陆地生态系统中起着至关重要的作用。众所周知,植物保护产品(PPP)会影响土壤生物,并且可能会对受这些生物影响的土壤功能产生负面影响。迄今为止,关于PPP对热带土壤生态系统影响的研究很少。因此,在这项研究中,研究了热带和温带地区杀菌剂苯菌灵(被选作模型物质)的效果是否不同,以及在温带条件下生成的数据是否可用于热带地区的环境风险评估(ERA)。在针对热带条件修改的急性和慢性实验室测试中评估了苯菌灵对earth的影响。这些测试是在两种温度(20摄氏度和28摄氏度)下,对堆肥蠕虫Eisenia fetida的两种菌株(温带和热带)进行的。将杀真菌剂掺入两种天然土壤和两种人造土壤中。除了经济合作与发展组织(OECD)的人工土壤外,本研究还开发了一种热带人工土壤(TAS),其中包含一种热带蕨类产品(xaxim)而不是泥炭。实验室测试和文献综述的结果表明,在热带条件下,苯菌灵的影响平均较低(LC(50):450-630 mg活性成分(ai)/ kg; EC(50):0.8- 12.9 mg ai / kg)比在温带条件下(LC(5)0:61-67 mg ai / kg; EC(50):1.0-1.6 mg ai / kg)最大系数为10.3(急性试验)和12.9 (长期测试)。该结果可能是由于在较高温度下苯菌灵和/或其第一代谢产物多菌灵的降解增加所致,但不能排除两种蠕虫菌株的敏感性不同。尽管在热带条件下毒性较低,并且假定施用量相当,但初步评估证实在两种条件下苯菌灵对土壤无脊椎动物的危害。

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