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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Microbial Degradation of Zearalenone by a Novel Microbial Consortium, NZDC-6, and Its Application on Contaminated Corncob by Semisolid Fermentation
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Microbial Degradation of Zearalenone by a Novel Microbial Consortium, NZDC-6, and Its Application on Contaminated Corncob by Semisolid Fermentation

机译:新型微生物联盟,NZDC-6和半固体发酵污染玉米饼涂层的微生物降解

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摘要

A novel microbial consortium (NZDC-6) was screened and characterized to detoxify the estrogenic mycotoxin zearalenone (ZEA), which commonly contaminates maize and is a major threat to food and health security. We found NZDC-6 to be thermophilic and highly effective, with a 90.3% ZEA degradation ratio at an optimum temperature of 60 degrees C. NZDC-6 was also effective at degrading the more estrogenic ZEA cognates, alpha-zearalenol (alpha-ZAL) and beta-zearalenol (beta-ZAL), with >90% degradation ratios. To evaluate a practical application, ZEA-contaminated corncobs were treated with NZDC-6 via semisolid fermentation. Measurements of physicochemical parameters and 16S microbial diversity and redundancy analysis (RDA) indicated that ZEA removal was most efficient at a low corncob solid content (< 5%), as a high solid content overwhelmed the microbial metabolic load, leading to increased dissolved oxygen and lowered pH. Our results demonstrate that the control of environmental variables is crucial for effective ZEA microbial removal in practical applications.
机译:筛选新的微生物联盟(NZDC-6),并表征解毒雌激素的霉菌毒素Zearalenone(Zea),通常污染玉米,是对食品和健康保障的主要威胁。我们发现NZDC-6是嗜热且高效的,ZEA降解比率为60.3%,在60℃下的最佳温度下。NZDC-6也有效地降解了更雌激素的Zea同源,α-Zearalenol(α-Zal)和β-Zearalenol(β-Zal),具有> 90%的降解比率。为了评估实际应用,通过半固体发酵用NZDC-6处理Zea污染的玉米粒。物理化学参数和16S微生物分集和冗余分析(RDA)的测量表明,ZEA去除在低玉米菌固体含量(<5%)上最有效,因为高固体含量不知所措,导致溶解的氧气增加增加降低了pH值。我们的结果表明,对环境变量的控制对于实际应用中的有效Zea微生物去除是至关重要的。

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