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从土壤中分离并鉴定降解硝磺草酮的芽孢杆菌属菌株

Isolation and characterization of mesotrione-degrading Bacillus sp. from soil.

作者信息

Batisson Isabelle, Crouzet Olivier, Besse-Hoggan Pascale, Sancelme Martine, Mangot Jean-François, Mallet Clarisse, Bohatier Jacques

机构信息

Laboratoire Microorganismes, Génome et Environnement, UMR 6023 CNRS, Université Blaise-Pascal, Aubière Cedex, France.

出版信息

Environ Pollut. 2009 Apr;157(4):1195-201. doi: 10.1016/j.envpol.2008.12.009. Epub 2009 Jan 3.

Abstract

Dissipation kinetics of mesotrione, a new triketone herbicide, sprayed on soil from Limagne (Puy-de-Dôme, France) showed that the soil microflora were able to biotransform it. Bacteria from this soil were cultured in mineral salt solution supplemented with mesotrione as sole source of carbon for the isolation of mesotrione-degrading bacteria. The bacterial community structure of the enrichment cultures was analyzed by temporal temperature gradient gel electrophoresis (TTGE). The TTGE fingerprints revealed that mesotrione had an impact on bacterial community structure only at its highest concentrations and showed mesotrione-sensitive and mesotrione-adapted strains. Two adapted strains, identified as Bacillus sp. and Arthrobacter sp., were isolated by colony hybridization methods. Biodegradation assays showed that only the Bacillus sp. strain was able to completely and rapidly biotransform mesotrione. Among several metabolites formed, 2-amino-4-methylsulfonylbenzoic acid (AMBA) accumulated in the medium. Although sulcotrione has a chemical structure closely resembling that of mesotrione, the isolates were unable to degrade it.

摘要

噁唑酰草胺是一种新型三酮类除草剂,将其喷施于法国多姆山省利马涅地区的土壤上,其消解动力学表明土壤微生物能够对其进行生物转化。以噁唑酰草胺作为唯一碳源,在添加了噁唑酰草胺的矿物盐溶液中培养该土壤中的细菌,用于分离噁唑酰草胺降解菌。采用时间温度梯度凝胶电泳(TTGE)分析富集培养物的细菌群落结构。TTGE指纹图谱显示,噁唑酰草胺仅在其最高浓度时对细菌群落结构有影响,且显示出对噁唑酰草胺敏感和适应的菌株。通过菌落杂交法分离出两株适应菌株,分别鉴定为芽孢杆菌属(Bacillus sp.)和节杆菌属(Arthrobacter sp.)。生物降解试验表明,只有芽孢杆菌属菌株能够完全且快速地对噁唑酰草胺进行生物转化。在形成的几种代谢产物中,2-氨基-4-甲基磺酰基苯甲酸(AMBA)在培养基中积累。尽管磺草酮的化学结构与噁唑酰草胺非常相似,但这些分离菌株无法降解它。

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