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Microbial detoxification of eleven food and feed contaminating trichothecene mycotoxins

机译:十一种食物和饲料中的微生物排毒污染了天花粉真菌毒素

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BackgroundContamination of agricultural commodities with multiple trichothecene mycotoxins, produced by toxigenic Fusarium species, is a food safety issue, which greatly affects grain production and marketing worldwide. Importantly, exposure to multiple trichothecenes may increase toxicity in animals due to their synergistic and/or additive effects. To address the problem this study aimed to achieve a novel biological trait capable of detoxifying various food and feed contaminating trichothecenes under aerobic and anaerobic conditions and wide range of temperatures. ResultsA highly enriched microbial consortium (called DX100) capable of transforming eleven trichothecenes to significantly less toxic de-epoxy forms was achieved after prolonged incubation of soil microbial culture with 200?μg/mL deoxynivalenol (DON). DX100 demonstrated de-epoxidation activity under aerobic and anaerobic conditions, a greater range of temperatures and around neutral pH. The consortium contains 70% known and 30% unknown bacterial species, dominated by Stenotrophomonas species. Probably novel bacteria including strains of Stenotrophomonas and Alkaliphilus - Blautia species complex could be involved in aerobic and anaerobic de-epoxidation of trichothecenes, respectively. DX100 showed rapid and stable activity by de-epoxidizing 100% of 50?μg/mL deoxynivalenol at 48?h of incubation and retaining de-epoxidation ability after 100 subcultures in mineral salts broth (MSB). It was able to de-epoxidize high concentration of DON (500?μg/mL), and transformed ten more food contaminating trichothecenes into de-epoxy forms and/or other known/unknown compounds. Microbial de-epoxidation rate increased with increasing trichothecene concentrations in the broth media, suggesting that DX100 maintains a robust trichothecene detoxifying mechanism. Furthermore, the nature of microbial de-epoxidation reaction and inhibition of the reaction by sodium azide and the finding that bacterial cell culture lysate retained activity suggests that certain cytoplasmic reductases may be responsible for the de-epoxidation activity. ConclusionsThis study reports the enrichment procedure for obtaining an effective and stable microbial consortium DX100 capable of de-epoxidizing several food contaminating trichothecene mycotoxins. DX100, which has de-epoxidation ability under wide range of conditions, represents a unique enzymatic source which has great industrial potential for reducing contamination of foods/feeds with multiple trichothecenes, and minimizing their synergistic/additive cytotoxic effects on consumer health.
机译:背景产毒镰刀菌种产生的多种天花粉真菌毒素污染了农产品,是食品安全问题,极大地影响了全世界的谷物生产和销售。重要的是,由于具有多种协同作用和/或累加作用,因此暴露于多种三态毛虫可能会增加动物的毒性。为了解决该问题,本研究旨在获得一种新的生物学特性,该特性能够在需氧和厌氧条件下以及宽范围的温度下对各种食品和饲料进行污染,从而对毛癣菌进行解毒。结果在将土壤微生物培养物与200?μg/ mL脱氧雪腐烯醇(DON)长时间孵育后,获得了一个高度富集的微生物财团(称为DX100),能够将11个毛孢菌毒素转化为毒性较小的脱环氧形式。 DX100在有氧和厌氧条件下,较大的温度范围和中性pH值下均表现出脱环氧化活性。该财团包含70%的已知细菌和30%的未知细菌,其中嗜麦芽单胞菌占主导地位。可能包括梭链嗜单胞菌和嗜碱-Blautia物种复合体菌株在内的新型细菌可能分别参与了毛霉菌的需氧和厌氧脱环氧化反应。 DX100通过在48?h的孵育时间50?μg/ mL的100?μg/ mL的脱氧雪腐烯酚100%脱环氧化,并在矿物盐肉汤(MSB)中进行100次传代培养后保持脱环氧化能力,从而显示出快速稳定的活性。它能够使高浓度的DON(500?μg/ mL)脱环,并将十种以上的污染十足菌丝的食物转化为脱环氧形式和/或其他已知/未知的化合物。微生物脱环氧化率随肉汤培养基中三茂萜浓度的增加而增加,这表明DX100保持了稳健的三茂茂解毒机理。此外,微生物脱环氧化反应的性质和叠氮化钠对反应的抑制作用以及细菌细胞培养物裂解物保留活性的发现表明某些胞质还原酶可能是造成脱环氧化活性的原因。结论:本研究报告了富集程序,以获得能够使几种污染食物的单端孢霉菌真菌毒素脱环的有效稳定的微生物协会DX100。 DX100具有广泛的条件下的脱环氧化能力,代表了独特的酶源,它具有巨大的工业潜力,可减少食品/饲料中多种甲虫菌素的污染,并最大程度地降低其对消费者健康的协同/加性细胞毒性作用。

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