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手性三唑类杀菌剂烯唑醇:绝对立体化学、立体选择性生物活性、水生毒性以及在蔬菜和土壤中的环境行为。

Chiral triazole fungicide difenoconazole: absolute stereochemistry, stereoselective bioactivity, aquatic toxicity, and environmental behavior in vegetables and soil.

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, PR China.

出版信息

Environ Sci Technol. 2013 Apr 2;47(7):3386-94. doi: 10.1021/es304982m. Epub 2013 Mar 15.

DOI:10.1021/es304982m
PMID:23451708
Abstract

In this study, the systemic assessments of the stereoisomers of triazole fungicide difenoconazole are reported for the first time, including absolute stereochemistry, stereoselective bioactivity toward pathogens (Alternaria sonali, Fulvia fulva, Botrytis cinerea, and Rhizoctonia solani), and toxicity toward aquatic organisms (Scenedesmus obliquus, Daphnia magna, and Danio rerio). Moreover, the stereoselective degradation of difenoconazole in vegetables (cucumber, Cucumis sativus and tomato, Lycopersicon esculentum) under field conditions and in soil under laboratory-controlled conditions (aerobic and anaerobic) was investigated. There were 1.33-24.2-fold and 1.04-6.78-fold differences in bioactivity and toxicity, respectively. Investigations on the stereoselective degradation of difenoconazole in vegetables showed that the highest-toxic and lowest-bioactive (2S,4S)-stereoisomer displays a different enrichment behavior in different plant species. Under aerobic or anaerobic conditions, (2R,4R)- and (2R,4S)-difenoconazole were preferentially degraded in the soil. Moreover, difenoconazole was configurationally stable in the test soil matrices. On the basis of biological activity, ecotoxicity, and environmental behavior, it is likely that the use of pure (2R,4S)-difenoconazole instead of the commercial stereoisomer mix may help to increase the bioactivity and reduce environmental pollution.

摘要

本研究首次报道了三唑类杀菌剂苯醚甲环唑立体异构体的系统评价,包括绝对立体化学、对病原菌(索拉里青霉、腐皮镰刀菌、灰葡萄孢和立枯丝核菌)的立体选择性生物活性以及对水生生物(斜生栅藻、大型溞和斑马鱼)的毒性。此外,还研究了苯醚甲环唑在田间条件下蔬菜(黄瓜、黄瓜和番茄、番茄)和实验室控制条件下土壤(好氧和厌氧)中的立体选择性降解。生物活性和毒性分别存在 1.33-24.2 倍和 1.04-6.78 倍的差异。对苯醚甲环唑在蔬菜中的立体选择性降解的研究表明,最高毒性和最低生物活性的(2S,4S)-对映异构体在不同植物物种中表现出不同的富集行为。在好氧或厌氧条件下,(2R,4R)-和(2R,4S)-苯醚甲环唑优先在土壤中降解。此外,苯醚甲环唑在测试土壤基质中构型稳定。基于生物活性、生态毒性和环境行为,使用纯(2R,4S)-苯醚甲环唑代替商业立体异构体混合物可能有助于提高生物活性并减少环境污染。

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