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Review on biological degradation of mycotoxins

机译:真菌毒素的生物降解研究进展

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摘要

The worldwide contamination of feeds and foods with mycotoxins is a significant problem. Mycotoxins pose huge health threat to animals and humans. As well, mycotoxins bring enormous economic losses in food industry and animal husbandry annually. Thus, strategies to eliminate or inactivate mycotoxins in food and feed are urgently needed. Traditional physical and chemical methods have some limitations such as limited efficacy, safety issues, losses in the nutritional value and the palatability of feeds, as well as the expensive equipment required to implement these techniques. Biological degradation of mycotoxins has shown promise because it works under mild, environmentally friendly conditions. Aflatoxin (AF), zearalenone (ZEA) and deoxynivalenol (DON) are considered the most economically important mycotoxins in terms of their high prevalence and significant negative effects on animal performance. Therefore, this review will comprehensively describe the biological degradation of AF, ZEA and DON by microorganisms (including fungi and bacteria) and specific enzymes isolated from microbial systems that can convert mycotoxins with varied efficiency to non- or less toxic products. Finally, some strategies and advices on existing difficulties of biodegradation research are also briefly proposed in this paper.
机译:真菌毒素在饲料和食品的全球污染是一个重大问题。霉菌毒素对动物和人类构成了巨大的健康威胁。同样,霉菌毒素每年给食品工业和畜牧业带来巨大的经济损失。因此,迫切需要消除或灭活食品和饲料中霉菌毒素的策略。传统的物理和化学方法具有一些局限性,例如功效有限,安全性问题,营养价值和饲料适口性的损失以及实施这些技术所需的昂贵设备。霉菌毒素的生物降解已显示出希望,因为它可在温和,环境友好的条件下起作用。黄曲霉毒素(AF),玉米赤霉烯酮(ZEA)和脱氧雪腐烯醇(DON)被认为是最经济重要的霉菌毒素,因为它们的高流行率和对动物性能的显着负面影响。因此,本综述将全面描述微生物(包括真菌和细菌)以及从微生物系统分离的特定酶对AF,ZEA和DON的生物降解作用,这些酶可将霉菌毒素以不同的效率转化为无毒或毒性较小的产品。最后,针对生物降解研究中存在的困难,提出了一些策略和建议。

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