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鲁氏接合酵母菌株DBVPG 6399对杀菌剂异菌脲的生物降解作用

Biodegradation of the fungicide iprodione by Zygosaccharomyces rouxii strain DBVPG 6399.

作者信息

Zadra Claudia, Cardinali Gianluigi, Corte Laura, Fatichenti Fabrizio, Marucchini Cesare

机构信息

Department of Plant Biology and Agro-environmental and Animal Biotechnology, Section of Applied Microbiology, and Department of Agricultural and Environmental Science, University of Perugia, 72, 06121 Perugia, Italy.

出版信息

J Agric Food Chem. 2006 Jun 28;54(13):4734-9. doi: 10.1021/jf060764j.

Abstract

Iprodione is a contact fungicide used to control several pathogens such as Botrytis cinerea, Monilia, and Sclerotinia. This paper reports the ability of an iprodione-resistant strain of Zygosaccharomyces rouxii to degrade iprodione at a concentration of 1 mg L(-1). The yeast Z. rouxii was chosen also for its ability to grow at high osmolarity. Also of note is that in bioremediation situations and in the food industry such resistance could be important. The kinetic and metabolic behaviors of the fungicide in the media are described. The results show a new transformation pathway of iprodione by the yeast leading to the formation of N-(3,5-dichlorophenyl)-2,4-dioxoimidazoline, 3-isopropylhydantoin, and 3,5-dichloroaniline. These compounds were identified by 1H NMR, 13C NMR, and GC-MS analyses. This study provides a basis to employ yeast strains in biodegradation studies in relation to their ability in the disappearance and degradation of xenobiotics into simpler molecules.

摘要

异菌脲是一种触杀型杀菌剂,用于防治多种病原菌,如灰葡萄孢、链核盘菌和核盘菌。本文报道了一株耐异菌脲的鲁氏接合酵母菌株在浓度为1 mg L⁻¹时降解异菌脲的能力。选择鲁氏接合酵母也是因为它能够在高渗透压下生长。同样值得注意的是,在生物修复和食品工业中,这种抗性可能很重要。描述了杀菌剂在培养基中的动力学和代谢行为。结果显示酵母对异菌脲有一条新的转化途径,导致形成N-(3,5-二氯苯基)-2,4-二氧代咪唑啉、3-异丙基海因和3,5-二氯苯胺。这些化合物通过¹H NMR、¹³C NMR和GC-MS分析进行了鉴定。本研究为利用酵母菌株进行生物降解研究提供了依据,该研究与其将异源生物降解为更简单分子的消失和降解能力有关。

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