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杀菌剂对陆生非靶标无脊椎动物的毒性-制剂产品与有效成分(唑菌胺酯、环丙唑醇、丙硫菌唑、戊唑醇)的比较-以食丝蚓(寡毛纲)为例

Toxicity of fungicides to terrestrial non-target fauna - Formulated products versus active ingredients (azoxystrobin, cyproconazole, prothioconazole, tebuconazole) - A case study with Enchytraeus crypticus (Oligochaeta).

机构信息

Department of Biology & CESAM, University of Aveiro, 3810-193 Aveiro, Portugal.

Department of Physical, Earth and Environmental Sciences, University of Siena, via Mattioli, 4, 53100 Siena, Italy.

出版信息

Sci Total Environ. 2021 Feb 1;754:142098. doi: 10.1016/j.scitotenv.2020.142098. Epub 2020 Aug 31.

DOI:10.1016/j.scitotenv.2020.142098
PMID:32911151
Abstract

Despite the high usage of pesticides in current agricultural practices, its effects to humans and to the environment (non-target species) are a continuous concern. Soil dwelling organisms are among the first in line of exposure to pesticides, however their risks are often based on the pure active ingredient (a.i.) and not on the commercial formulated products (FPs) actually applied in the fields. In the present study, we investigated the effects of two fungicide FPs versus its a.i. (s): Amistar® XTRA and the respective a.i. (s) azoxystrobin and cyproconazole, and Prosaro® 250 EC and the respective a.i. (s) prothioconazole and tebuconazole, to the non-target soil oligochaete Enchytraeus crypticus. The standard Enchytraeid Reproduction Test was used to assess effects on survival and reproduction. Results showed that Amistar was more toxic than Prosaro, particularly for reproduction (EC = 161 mg Amistar/kg soil, EC = 350 mg Prosaro/kg soil). For both FPs, reproductive effects were mainly related to one of its a.i. (s) (azoxystrobin [EC = 37 mg azosxystrobin/kg soil] for Amistar, and tebuconazole [EC = 41 mg tebuconazole/kg soil] for Prosaro), while lethal effects were not predicted by the toxicity of its a.i. (s) (particularly in the case of Prosaro, which was more toxic than its a.i. (s)). These findings highlight the need to further explore the toxicity data of the FPs compared to the a.i. (s), aiming to predict a more realistic environmental hazard of pesticides.

摘要

尽管当前农业实践中大量使用了农药,但它们对人类和环境(非靶标物种)的影响仍然是一个持续关注的问题。土壤栖息生物是最早接触农药的生物之一,但它们的风险通常基于纯有效成分(AI),而不是实际应用于田间的商业配方产品(FP)。在本研究中,我们调查了两种杀菌剂 FP 与其 AI(s):Amistar® XTRA 和相应的 AI(s):azoxystrobin 和 cyproconazole,以及 Prosaro® 250 EC 和相应的 AI(s):prothioconazole 和 tebuconazole 对非靶标土壤寡毛类环节动物 Enchytraeus crypticus 的影响。使用标准的 Enchytraeid 繁殖测试来评估对生存和繁殖的影响。结果表明,Amistar 比 Prosaro 更具毒性,特别是对繁殖(EC=161mg Amistar/kg 土壤,EC=350mg Prosaro/kg 土壤)。对于这两种 FP,生殖效应主要与其中一种 AI(s)有关(azoxystrobin[EC=37mg azoxystrobin/kg 土壤]对 Amistar,tebuconazole[EC=41mg tebuconazole/kg 土壤]对 Prosaro),而致死效应不能由其 AI(s)的毒性来预测(特别是在 Prosaro 的情况下,它比其 AI(s)更具毒性)。这些发现强调了需要进一步探索 FP 相对于 AI(s)的毒性数据,旨在预测农药更现实的环境危害。

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