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Bioconversion of isoeugenol to vanillin and vanillic acid using the resting cells of Trichosporon asahii

机译:利用细孢曲霉的静止细胞将异丁香酚生物转化为香草醛和香草酸

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摘要

40 isoeugenol-tolerant yeasts were isolated from the rhizosphere soil samples which in turn were collected from aromatic plants in different regions of Iran, and further tested for their ability to grow on a minimal medium containing isoeugenol as the sole carbon and energy source. Nine isolates which were able to grow on isoeugenol were examined for their ability to convert isoeugenol into vanillin under growing cell experiments. Of the tested yeasts, the highest conversion efficiency was observed in isolate MP24. The isolate was identified as Trichosporon asahii based on morphological, biochemical and molecular (ITS region) characters and tested to effectively convert isoeugenol into vanillin under resting cell system. A comparative analysis of thin layer chromatography (TLC), UV–Vis spectrometry, and high-performance liquid chromatography (HPLC) verified that vanillin and vanillic acid are accumulated as two major metabolites using T. asahii strain MP24 resting cells. In the presence of 7.5 g/l of wet weight cells of the strain MP24 pre-grown on isoeugenol and harvested at the end of the exponential growth phase, the optimal concentration of vanillin reached 2.4 g/l with a molar conversion of 52.5% in the potassium phosphate buffer (100 mM, pH 5.8) supplemented with 5 g/l of isoeugenol and 2% (v/v) N,N-dimethylformamide (DMF). The total concentration of vanillin and vanillic acid obtained from the bioconversion process was 4.2 g/l (total molar yield of 88.3%). Until now, no data has been published on the conversion of isoeugenol into vanillin by the strains of the genus Trichosporon.
机译:从根际土壤样品中分离了40种耐异丁香酚的酵母,这些酵母又从伊朗不同地区的芳香植物中采集,并进一步测试了它们在含有异丁香酚作为唯一碳和能源的基本培养基上的生长能力。在生长细胞实验下,检查了能够在异丁香酚上生长的九种分离物将异丁香酚转化为香草醛的能力。在测试的酵母中,在分离株MP24中观察到最高的转化效率。根据形态,生化和分子(ITS区域)特征,该分离物被鉴定为天花粉孢菌,并经过测试可在静息细胞系统下有效将异丁香酚转化为香兰素。薄层色谱(TLC),UV-Vis光谱和高效液相色谱(HPLC)的比较分析证实,使用Asahii菌株MP24静止细胞,香草醛和香草酸是两种主要代谢产物的积累。在异丁香酚中预先生长并在指数生长期结束时收获的7.5 g / l的MP24菌株湿重细胞存在时,香兰素的最佳浓度达到2.4 g / l,摩尔转化率为52.5%。磷酸钾缓冲液(100mM,pH 5.8)补充有5 g / l的异丁香酚和2%(v / v)的N,N-二甲基甲酰胺(DMF)。通过生物转化过程获得的香兰素和香草酸的总浓度为4.2 g / l(总摩尔产率为88.3%)。迄今为止,尚未有关于曲霉菌属菌株将异丁香酚转化为香草醛的数据。

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