Department of Environmental Protection & Safety, Szent István University, 1 Páter K St, Gödöllő 2100, Hungary.
J Hazard Mater. 2013 Jan 15;244-245:429-35. doi: 10.1016/j.jhazmat.2012.11.063. Epub 2012 Dec 8.
The aim of this study was to screen microbes for their zearalenone degrading potential and to select microbes whose activities do not create toxic or endocrine disrupting metabolites. Bioluminescent bioreporters (Saccharomyces cerevisiae BLYES and BLYR) were successfully used to monitor toxin degradation; the results of zearalenone biodegradation experiments were confirmed by parallel chemical analysis (HPLC-FLD) and immunoanalytical (ELISA) tests. Using the BLYES/BLYR bioreporters, the most appropriate microbes (ones that produced minimal toxic products and products with lower estrogenic potential) could be selected. The most promising strains belong to Streptomyces and Rhodococcus genera. Our findings demonstrate the benefit of using biological tests beside the analytical method, since bioreporters were able to monitor the samples for toxicity and estrogenic potential even after substantial degradation. We conclude that the BLYES/BLYR bioreporter system is a cost effective, fast and reliable tool for screening zearalenone-degrading microbes.
本研究旨在筛选具有降解玉米赤霉烯酮潜力的微生物,并选择不会产生有毒或内分泌干扰代谢物的微生物。生物发光生物报告菌(酿酒酵母 BLYES 和 BLYR)被成功用于监测毒素降解;毒素生物降解实验的结果通过平行化学分析(HPLC-FLD)和免疫分析(ELISA)进行了验证。使用 BLYES/BLYR 生物报告菌,可以选择产生最少有毒产物和雌激素潜力较低产物的最合适微生物。最有前途的菌株属于链霉菌属和红球菌属。我们的研究结果表明,在分析方法之外使用生物测试具有益处,因为生物报告菌甚至在大量降解后仍能够监测样品的毒性和雌激素潜力。我们得出结论,BLYES/BLYR 生物报告菌系统是一种具有成本效益、快速且可靠的筛选玉米赤霉烯酮降解微生物的工具。