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一项关于杀菌剂嘧霉胺与不同水分条件组合的土壤微生物环境研究:对蚯蚓的影响。

A TME study with the fungicide pyrimethanil combined with different moisture regimes: effects on enchytraeids.

作者信息

Bandow Cornelia, Ng Ee Ling, Schmelz Rüdiger M, Sousa José Paulo, Römbke Jörg

机构信息

LOEWE Biodiversity and Climate Research Centre BiK-F, Senckenberganlage 25, 60325, Frankfurt, Germany.

ECT Oekotoxikologie GmbH, Böttgerstrasse 2-14, 65439, Flörsheim, Germany.

出版信息

Ecotoxicology. 2016 Jan;25(1):213-24. doi: 10.1007/s10646-015-1581-y. Epub 2015 Nov 7.

Abstract

Today's ecosystems are influenced by different factors that could evolve into stressors. Effects of pesticides, especially in agricultural areas, may interact with environmental factors, such as soil moisture fluctuation caused by global climate change. In this contribution, two semi-field studies conducted in Germany and Portugal with terrestrial model ecosystems are presented. Their aim was to assess the effects of the fungicide pyrimethanil under different soil moisture levels on Enchytraeidae. In Portugal a no observed effect concentration design was chosen, using two concentration levels: the maximum application rate (MAR) according to the safe use registration within the European Union and five times the MAR (1.82 and 9.09 mg/kg dry soil, respectively). Both concentrations did neither affect the total enchytraeid abundance nor single populations. In Germany an ECx design (effect concentration) was conducted, using 11 concentrations. In general, 14 EC50 values for different combinations of single species, moisture level and sampling date were determined. The strongest effects were found in dry soil, particularly for Fridericia connata (EC50: 3.48 mg/kg dry soil after 8 weeks of exposure). The advantages and challenges of these test designs are discussed with regard to the registration process of pesticides in the European Union. In any case, enchytraeids are suitable test organisms in such higher tier studies for the combined evaluation of chemical and climatic stressors due to their usually high diversity and abundances and their close contact with the soil solution.

摘要

如今的生态系统受到多种不同因素的影响,这些因素可能会演变成压力源。农药的影响,尤其是在农业地区,可能会与环境因素相互作用,比如全球气候变化导致的土壤湿度波动。在本论文中,介绍了在德国和葡萄牙针对陆地模型生态系统开展的两项半田间研究。其目的是评估在不同土壤湿度水平下,杀菌剂嘧霉胺对蚯蚓的影响。在葡萄牙,采用了无可见效应浓度设计,设置了两个浓度水平:根据欧盟安全使用登记规定的最大施用量(MAR)以及MAR的五倍(分别为1.82和9.09毫克/千克干土)。这两个浓度水平均未对蚯蚓的总丰度或单个种群产生影响。在德国,进行了效应浓度(ECx)设计,使用了11个浓度。总体而言,针对单个物种、湿度水平和采样日期的不同组合,测定了14个半数效应浓度(EC50)值。在干燥土壤中发现了最强的效应,特别是对于康氏正蚓(暴露8周后,EC50为3.48毫克/千克干土)。针对欧盟农药登记流程,讨论了这些测试设计的优点和挑战。无论如何,由于蚯蚓通常具有较高的多样性和丰度,且与土壤溶液密切接触,因此在这类高级别的研究中,蚯蚓是用于综合评估化学和气候压力源的合适测试生物。

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