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真菌对(R)-(+)-和(S)-(-)-柠檬烯的生物转化及采用固相微萃取进行筛选

Biotransformation of (R)-(+)- and (S)-(-)-limonene by fungi and the use of solid phase microextraction for screening.

作者信息

Demyttenaere J C, Van Belleghem K, De Kimpe N

机构信息

Department of Organic Chemistry, Faculty of Agricultural and Applied Biological Sciences, Ghent University, Belgium.

出版信息

Phytochemistry. 2001 May;57(2):199-208. doi: 10.1016/s0031-9422(00)00499-4.

Abstract

The biotransformation of (R)-(-)- and (S)-(-)-limonene by fungi was investigated. More than 60 fungal cultures were screened for their ability to bioconvert the substrate, using solid phase microextraction as the monitoring technique. After screening, the best fungal strains were selected for further study and were grown as sporulated surface cultures in conical flasks and as submerged liquid cultures. It was found that (+)- and (-)-limonene were converted by Penicillium digitatum to alpha-terpineol (main metabolite), cis- and trans-p-menth-2-en-1-ol, neodihydrocarveol and limonene oxide (minor metabolites) using liquid cultures. The bioconversion of (R)-(-)- and (S)-(-)-limonene by Corwespora cassiicola yielded (1S,2S,4R)- and (1R,2R,4S)-limonene-1,2-diol respectively. The bioconversions by liquid cultures were also monitored by solid phase microextraction as a function of time. The optimum conversion of limonene to alpha-terpineol by Penicillium digitatum was obtained after 8 hours (yield up to 100%). Since an important pH-decrease was noticed in some liquid broths, the stability of limonene under acidic conditions was investigated. No acid catalysed conversion products were recovered after 8 days from control flasks at pH 3.5 containing limonene.

摘要

研究了真菌对(R)-(-)-和(S)-(-)-柠檬烯的生物转化。使用固相微萃取作为监测技术,对60多种真菌培养物进行了底物生物转化能力的筛选。筛选后,选择最佳真菌菌株进行进一步研究,并在锥形瓶中作为产孢表面培养物以及作为深层液体培养物进行培养。结果发现,指状青霉利用液体培养物将(+)-和(-)-柠檬烯转化为α-松油醇(主要代谢产物)、顺式和反式对薄荷-2-烯-1-醇、新二氢香芹醇和氧化柠檬烯(次要代谢产物)。卡西icola Corwespora对(R)-(-)-和(S)-(-)-柠檬烯的生物转化分别产生了(1S,2S,4R)-和(1R,2R,4S)-柠檬烯-1,2-二醇。液体培养物的生物转化也通过固相微萃取作为时间的函数进行监测。指状青霉将柠檬烯转化为α-松油醇的最佳转化率在8小时后获得(产率高达100%)。由于在一些液体培养基中发现pH值显著下降,因此研究了柠檬烯在酸性条件下的稳定性。在pH值为3.5的含有柠檬烯的对照烧瓶中,8天后未回收酸催化的转化产物。

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