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首页> 外文期刊>Revista de microbiologia >Bioconversion of R-(+)-limonene to perillic acid by the yeast Yarrowia lipolytica
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Bioconversion of R-(+)-limonene to perillic acid by the yeast Yarrowia lipolytica

机译:酵母解脂耶氏酵母将R-(+)-柠檬烯生物转化为紫苏酸

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Perillyl derivatives are increasingly important due to their flavouring and antimicrobial properties as well as their potential as anticancer agents. These terpenoid species, which are present in limited amounts in plants, may be obtained via bioconversion of selected monoterpene hydrocarbons. In this study, seventeen yeast strains were screened for their ability to oxidize the exocyclic methyl group in the p-menthene moiety of limonene into perillic acid. Of the yeast tested, the highest efficiency was observed for Yarrowia lipolytica ATCC 18942. The conversion of R (+)-limonene by Y. lipolytica was evaluated by varying the pH (3 to 8) and the temperature (25 to 30 ?oC) in a reaction medium containing 0.5% v/v limonene and 10 g?μL of stationary phase cells (dry weight). The best results, corresponding to 564 mg?μL of perillic acid, were obtained in buffered medium at pH 7.1 that was incubated at 25 ?oC for 48 h. The stepwise addition of limonene increased the perillic acid concentration by over 50%, reaching 855 mg?μL, whereas the addition of glucose or surfactant to the reaction medium did not improve the bioconversion process. The use of Y. lipolytica showed promise for ease of further downstream processing, as perillic acid was the sole oxidised product of the bioconversion reaction. Moreover, bioprocesses using safe and easy to cultivate yeast cells have been favoured in industry.
机译:由于其风味和抗微生物特性以及其作为抗癌剂的潜力,紫苏兰衍生物变得越来越重要。这些萜类化合物存在于植物中的数量有限,可以通过生物转化所选的单萜烃获得。在这项研究中,筛选了十七种酵母菌株将柠檬烯的对薄荷烯部分中的环外甲基氧化为紫苏酸的能力。在测试的酵母中,解脂耶氏酵母ATCC 18942观察到最高效率。通过改变pH(3至8)和温度(25至30°C)来评价解脂耶氏酵母对R(+)-柠檬烯的转化。在含有0.5%v / v柠檬烯和10 g?L固定相细胞(干重)的反应介质中。在pH 7.1的缓冲液中于25°C孵育48小时可获得最佳结果,相当于564 mg?L紫苏酸。柠檬烯的逐步添加使紫苏酸的浓度增加了50%以上,达到855 mg?L,而向反应介质中添加葡萄糖或表面活性剂并没有改善生物转化过程。解脂耶氏酵母的使用显示了易于进一步下游加工的前景,因为紫苏酸是生物转化反应的唯一氧化产物。此外,使用安全且易于培养的酵母细胞的生物过程在工业中受到青睐。

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