Pescheck Michael, Mirata Marco Antonio, Brauer Bianca, Krings Ulrich, Berger Ralf Günter, Schrader Jens
Biochemical Engineering Group, DECHEMA eV, Karl-Winnacker-Institut, Frankfurt, Germany.
J Ind Microbiol Biotechnol. 2009 Jun;36(6):827-36. doi: 10.1007/s10295-009-0558-3. Epub 2009 Mar 26.
A closed gas loop bioprocess was developed to improve fungal biotransformation of monoterpenes. By circulating monoterpene-saturated process gas, the evaporative loss of the volatile precursor from the medium during the biotransformation was avoided. Penicillium solitum, isolated from kiwi, turned out to be highly tolerant towards monoterpenes and to convert alpha-pinene to a range of products including verbenone, a valuable aroma compound. The gas loop was mandatory to reproduce the production of 35 mg L(-1) verbenone obtained in shake flasks and also in the bioreactor. Penicillium digitatum DSM 62840 regioselectively converted (+)-limonene to the aroma compound alpha-terpineol, but shake flask cultures revealed a pronounced growth inhibition when initial concentrations exceeded 1.9 mM. In the bioreactor, toxic effects on P. digitatum during biotransformation were alleviated by starting a sequential feeding of non-toxic limonene portions after a preceding growth phase. Closing the precursor-saturated gas loop during the biotransformation allowed for an additional replenishment of limonene via the gas phase. The gas loop system led to a maximum alpha-terpineol concentration of 1,009 mg L(-1) and an average productivity of 8-9 mg L(-1) h(-1) which represents a doubling of the respective values previously reported. Furthermore, a molar conversion yield of up to 63% was achieved.
开发了一种封闭气体循环生物工艺以改善真菌对单萜的生物转化。通过循环单萜饱和的工艺气体,避免了生物转化过程中挥发性前体从培养基中的蒸发损失。从猕猴桃中分离出的孤生青霉对单萜具有高度耐受性,并能将α-蒎烯转化为一系列产物,包括一种有价值的香气化合物马鞭草烯酮。气体循环对于重现摇瓶和生物反应器中获得的35 mg L(-1)马鞭草烯酮的产量是必不可少的。指状青霉DSM 62840将(+)-柠檬烯区域选择性地转化为香气化合物α-松油醇,但摇瓶培养显示当初始浓度超过1.9 mM时会有明显的生长抑制。在生物反应器中,通过在前一个生长阶段后开始依次加入无毒的柠檬烯部分,减轻了生物转化过程中对指状青霉的毒性影响。在生物转化过程中封闭前体饱和的气体循环允许通过气相额外补充柠檬烯。气体循环系统使α-松油醇的最大浓度达到1009 mg L(-1),平均生产率为8-9 mg L(-1) h(-1),这分别是先前报道值的两倍。此外,实现了高达63%的摩尔转化率。