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首页> 外文期刊>Frontiers in Microbiology >Bacterial Epimerization as a Route for Deoxynivalenol Detoxification: the Influence of Growth and Environmental Conditions
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Bacterial Epimerization as a Route for Deoxynivalenol Detoxification: the Influence of Growth and Environmental Conditions

机译:作为脱氧酚苯酚排毒的细菌映入:生长和环境条件的影响

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摘要

Deoxynivalenol (DON) is a toxic secondary metabolite produced by several Fusarium species that infest wheat and corn. Food and feed contaminated with DON pose a health risk to both humans and livestock and form a major barrier for international trade. Microbial detoxification represents an alternative approach to the physical and chemical detoxification methods of DON-contaminated grains. The present study details the characterization of a novel bacterium, Devosia mutans 17-2-E-8, that is capable of transforming DON to a non-toxic stereoisomer, 3- epi -deoxynivalenol under aerobic conditions, mild temperature (25–30°C), and neutral pH. The biotransformation takes place in the presence of rich sources of organic nitrogen and carbon without the need of DON to be the sole carbon source. The process is enzymatic in nature and endures a high detoxification capacity (3 μg DON/h/10~(8)cells). The above conditions collectively suggest the possibility of utilizing the isolated bacterium as a feed treatment to address DON contamination under empirical field conditions.
机译:脱氧性苯酚(Don)是由几种感染的小麦和玉米产生的多种镰刀种类产生的有毒次生代谢物。唐污染的食物和饲料对人类和牲畜构成了健康风险,并形成了国际贸易的主要障碍。微生物排毒代表了唐污染颗粒的物理和化学解毒方法的替代方法。本研究详述了新型细菌的表征Devosia Mutans 17-2-E-8,其能够将DON转化为无氧条件下的无毒立体异构体,3- ePI-氧化苯酚,温度温度(25-30° c)和中性pH值。生物转化在存在富含有机氮和碳的存在下进行,而不需要Don是唯一的碳源。该方法的本质上是酶促的,耐高量的解毒能力(3μgDon / H / 10〜(8)细胞)。上述条件共同提出了利用分离的细菌作为饲料处理的可能性,以在经验现场条件下解决DON污染。

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