Bier Mário Cesar Jucoski, Medeiros Adriane Bianchi Pedroni, Soccol Carlos Ricardo
Department of Bioprocess Engineering and Biotechnology, Federal University of Paraná, CEP. 81531-970, Curitiba, PR, Brazil.
Department of Bioprocess Engineering and Biotechnology, Federal University of Paraná, CEP. 81531-970, Curitiba, PR, Brazil.
Fungal Biol. 2017 Feb;121(2):137-144. doi: 10.1016/j.funbio.2016.11.003. Epub 2016 Nov 30.
Aroma and fragrances have high commercial value for use in food, cosmetics and perfumes. The biotransformation of terpenes by microorganisms represents an attractive alternative method for production of flavourings. Endophytic fungi offer a great potential for the production of several groups of compounds; however, few studies have evaluated the biotransformation of limonene. Following preliminary studies on the biotransformation of limonene, submerged fermentation was carried out using an endophytic fungus isolated from Pinus taeda and identified as Phomopsis sp. The presence of several biotransformation products was detected and identified by mass spectrometry (GC-MS). The studied strain showed a divergent metabolic behaviour, as compounds of interest such as α-terpineol, carvone, and limoneno-1,2-diol were produced under different conditions. In addition to the minor metabolites terpinen-4-ol, menthol and carveol, this strain also produced major metabolites, including 0.536 g L carvone and 2.08 g L limonene-1,2-diol in synthetic medium and 2.10 g L limonene-1,2-diol in a natural orange extract medium with single fed-batch, while the cyclic fed-batch resulted in concentrations less than 1 g L. Therefore, our study produced a wide variety of limonene derivatives at a high concentration using a natural medium and a newly isolated endophytic fungal strain.
香气和香料在食品、化妆品和香水领域具有很高的商业价值。微生物对萜类化合物的生物转化是一种颇具吸引力的香料生产替代方法。内生真菌在生产几类化合物方面具有巨大潜力;然而,很少有研究评估柠檬烯的生物转化。在对柠檬烯生物转化进行初步研究之后,使用从火炬松中分离出并鉴定为拟茎点霉属的内生真菌进行了深层发酵。通过质谱(气相色谱 - 质谱联用)检测并鉴定了几种生物转化产物的存在。所研究的菌株表现出不同的代谢行为,因为在不同条件下产生了诸如α - 松油醇、香芹酮和柠檬烯 - 1,2 - 二醇等目标化合物。除了次要代谢产物萜品 - 4 - 醇、薄荷醇和香芹醇外,该菌株还产生了主要代谢产物,包括在合成培养基中产生0.536 g/L的香芹酮和2.08 g/L的柠檬烯 - 1,2 - 二醇,在天然橙汁提取物培养基中采用单次补料分批培养时产生2.10 g/L的柠檬烯 - 1,2 - 二醇,而循环补料分批培养时浓度低于1 g/L。因此,我们的研究使用天然培养基和新分离的内生真菌菌株以高浓度产生了多种柠檬烯衍生物。