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Zearalenone Removal from Corn Oil by an Enzymatic Strategy

机译:通过酶促策略从玉米油中移除zearalenone

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The estrogen-like mycotoxin zearalenone (ZEN) is one of the most widely distributed contaminants especially in maize and its commodities, such as corn oil. ZEN degrading enzymes possess the potential for counteracting the negative effect of ZEN and its associated high safety risk in corn oil. Herein, we targeted enhancing the secretion of ZEN degrading enzyme by Pichia pastoris through constructing an expression plasmid containing three optimized expression cassettes of zlhy-6 codon and signal peptides. Further, we explored various parameters of enzymatic detoxification in neutralized oil and analyzed tocopherols and sterols losses in the corn oil. In addition, the distribution of degraded products was demonstrated as well by Agilent 6510 Quadrupole Time-of-Flight mass spectrometry. P. pastoris GSZ with the glucoamylase signal was observed with the highest ZLHY-6 secretion yield of 0.39 mg/mL. During the refining of corn oil, ZEN in the crude oil was reduced from 1257.3 to 13 μg/kg (3.69% residual) after neutralization and enzymatic detoxification. Compared with the neutralized oil, no significant difference in the total tocopherols and sterols contents was detected after enzymatic detoxification. Finally, the degraded products were found to be entirely eliminated by washing. This study presents an enzymatic strategy for efficient and safe ZEN removal with relatively low nutrient loss, which provides an important basis for further application of enzymatic ZEN elimination in the industrial process of corn oil production.
机译:雌激素样霉菌毒素Zearalenone(ZEN)是尤其是玉米及其商品等最广泛分布的污染物之一,如玉米油。禅宗降解酶具有抵消玉米油中禅宗的负面影响及其相关的高安全性风险的可能性。在此,我们通过构建含有Z1HY-6密码子和信号肽的三种优化的表达盒的表达质粒来靶向Pichia Pastoris的Zen降解酶的分泌。此外,我们探讨了中和油中酶解毒的各种参数,并分析了玉米油中的生育酚和甾醇损失。此外,还通过Agilent 6510四极其飞行时间质谱法证明了降解产物的分布。观察到具有葡糖淀粉酶信号的Pastoris GSZ,其最高ZLHY-6分泌率为0.39mg / ml。在玉米油精炼期间,在中和后,原油中的ZEN在1257.3至13μg/ kg(3.69%残余)中降低和酶促排毒。与中和油相比,酶促排毒后,检测到总生育酚和甾醇内容物的显着差异。最后,发现降解产物通过洗涤完全消除。该研究提出了一种酶促策略,用于高效和安全的ZEN去除,营养损失相对较低,为进一步应用酶ZEN消除在玉米油生产的工业过程中提供了重要的基础。

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