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Conversion of Isoeugenol to Vanillin by Psychrobacter sp. Strain CSW4

机译:Psychrobacter sp。将异丁香酚转化为香草醛。菌株CSW4

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摘要

To screen strains of halotolerant or halophile bacteria which are able to convert isoeugenol to vanillin, 36 different strains of bacteria isolated from the salty environments in Iran were investigated. During growth on isoeugenol, a moderately halotolerant Gram-negative coccobacil showed capability of converting isoeugenol to vanillin. Based on morphological, physiological, and phylogenetic studies, strain CSW4 was classified as a bacterium belonging to the genus Psychrobacter. The bioconversion products were confirmed by thin-layer chromatography, high-performance liquid chromatography, and spectral data obtained from UV/Vis spectroscopy, FTIR, and mass-spectroscopy. Using growing cells, vanillin reached its maximum level of 88.18 mg L−1 after 24 h of reaction time in the presence of 1 g L−1 isoeugenol, resulting in a molar yield of 10.2%. The use of resting cells led to the optimal yield of vanillin (16.4%) which was obtained after 18-h reaction using 1 g L−1 isoeugenol and 3.1 g of dry weight of cells per liter harvested at the end of the exponential growth phase. To improve vanillin yield, the effect of substrate concentration on vanillin production under resting cells conditions was also investigated. Using 10 g L−1 isoeugenol, the maximal vanillin concentration (1.28 g L−1) was achieved after a 48-h reaction, without further optimization. The present study brings the first evidence for biotransformation of isoeugenol to vanillin in the genus Psychrobacter.
机译:为了筛选能够将异丁香酚转化为香兰素的耐盐或嗜盐细菌菌株,研究了从伊朗咸水环境中分离出的36种不同细菌菌株。在异丁香酚上生长期间,中等卤代水平的革兰氏阴性球菌显示出将异丁香酚转化为香草醛的能力。根据形态学,生理学和系统发育研究,菌株CSW4被归类为属于精神细菌属的细菌。通过薄层色谱法,高效液相色谱法以及从UV / Vis光谱,FTIR和质谱获得的光谱数据确认了生物转化产物。使用生长中的细胞,在1 g L -1 异丁香酚存在下反应24小时后,香兰素达到最高水平88.18 mg L -1 收率10.2%。静置细胞的使用导致香兰素的最佳收率(16.4%),这是使用1 g L -1 异丁香酚和3.1 g干重的每升细胞收获的18 g反应18小时后获得的。指数增长阶段的结束。为了提高香兰素的产量,还研究了底物浓度对静止细胞条件下香兰素生产的影响。使用10 g L -1 异丁香酚,在经过48小时的反应后,香兰素的最大浓度为1.28 g L -1 ,没有进一步优化。本研究为精神冰杆菌属中的异丁香酚生物转化为香草醛提供了第一个证据。

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