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首页> 外文期刊>Molecules >Optimization Technology of the LHS-1 Strain for Degrading Gallnut Water Extract and Appraisal of Benzene Ring Derivatives from Fermented Gallnut Water Extract Pyrolysis by Py-GC/MS
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Optimization Technology of the LHS-1 Strain for Degrading Gallnut Water Extract and Appraisal of Benzene Ring Derivatives from Fermented Gallnut Water Extract Pyrolysis by Py-GC/MS

机译:Py-GC / MS降解坚果水提取物的LHS-1菌株优化技术及发酵坚果水提取物热解苯环衍生物的评价

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Gallnut water extract (GWE) enriches 80~90% of gallnut tannic acid (TA). In order to study the biodegradation of GWE into gallic acid (GA), the LHS-1 strain, a variant of Aspergillus niger, was chosen to determine the optimal degradation parameters for maximum production of GA by the response surface method. Pyrolysis–gas chromatography–mass spectrometry (Py-GC/MS) was first applied to appraise benzene ring derivatives of fermented GWE (FGWE) pyrolysis by comparison with the pyrolytic products of a tannic acid standard sample (TAS) and GWE. The results showed that optimum conditions were at 31 °C and pH of 5, with a 50-h incubation period and 0.1 g·L?1 of TA as substrate. The maximum yields of GA and tannase were 63~65 mg·mL?1 and 1.17 U·mL?1, respectively. Over 20 kinds of compounds were identified as linear hydrocarbons and benzene ring derivatives based on GA and glucose. The key benzene ring derivatives were 3,4,5-trimethoxybenzoic acid methyl ester, 3-methoxy-1,2-benzenediol, and 4-hydroxy-3,5-dimethoxy-benzoic acid hydrazide. View Full-Text
机译:杏仁水提取物(GWE)富含80%至90%的杏仁单宁酸(TA)。为了研究GWE的生物降解为没食子酸(GA),选择了LHS-1菌株(黑曲霉)的变体,以确定通过响应面法最大程度地生产GA的最佳降解参数。通过与单宁酸标准样品(TAS)和GWE的热解产物比较,热解-气相色谱-质谱(Py-GC / MS)首次用于评估发酵的GWE(FGWE)热解的苯环衍生物。结果表明,最佳条件是在31°C和5的pH值下,孵育50小时,以0.1 g·L?1的TA为底物。 GA和鞣酸酶的最大产量分别为63〜65 mg·mL?1和1.17 U·mL?1。基于GA和葡萄糖,已鉴定出20多种化合物为直链烃和苯环衍生物。关键的苯环衍生物是3,4,5-三甲氧基苯甲酸甲酯,3-甲氧基-1,2-苯二醇和4-羟基-3,5-二甲氧基-苯甲酸酰肼。查看全文

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