State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, PR China.
Key Laboratory of Fermentation Engineering (Ministry of Education), Hubei University of Technology, Wuhan 430068, PR China.
FEMS Yeast Res. 2020 Sep 1;20(6). doi: 10.1093/femsyr/foaa046.
Limonene, a valuable cyclic monoterpene, has been broadly studied in recent decades due to its wide application in the food, cosmetics and pharmaceutical industries. Engineering of the yeast Yarrowia lipolytica for fermentation of renewable biomass lignocellulosic hydrolysate may reduce the cost and improve the economics of bioconversion for the production of limonene. The aim of this study was to engineer Y. lipolytica to produce limonene from xylose and low-cost lignocellulosic feedstock. The heterologous genes XR and XDH and native gene XK encoding xylose assimilation enzymes, along with the heterologous genes tNDPS1 and tLS encoding orthogonal limonene biosynthetic enzymes, were introduced into the Po1f strain to facilitate xylose fermentation to limonene. The initially developed strain produced 0.44 mg/L of limonene in 72 h with 20 g/L of xylose. Overexpression of genes from the mevalonate pathway, including HMG1 and ERG12, significantly increased limonene production from xylose to ∼9.00 mg/L in 72 h. Furthermore, limonene production peaked at 20.57 mg/L with 50% hydrolysate after 72 h when detoxified lignocellulosic hydrolysate was used. This study is the first to report limonene production by yeast from lignocellulosic feedstock, and these results indicate the initial steps toward economical and sustainable production of isoprenoids from renewable biomass by engineered Y. lipolytica.
柠檬烯是一种有价值的环状单萜,由于其在食品、化妆品和制药行业的广泛应用,近几十年来受到了广泛的研究。通过工程改造酵母解脂耶氏酵母,使其发酵可再生生物质木质纤维素水解物,可能会降低成本,并提高生物转化生产柠檬烯的经济性。本研究旨在通过工程改造解脂耶氏酵母,利用木糖和低成本木质纤维素原料生产柠檬烯。本研究将编码木糖同化酶的异源基因 XR 和 XDH 以及天然基因 XK,以及编码正交柠檬烯生物合成酶的异源基因 tNDPS1 和 tLS,引入到 Po1f 菌株中,以促进木糖发酵生产柠檬烯。最初开发的菌株在 72 小时内用 20g/L 的木糖生产了 0.44mg/L 的柠檬烯。甲羟戊酸途径基因(包括 HMG1 和 ERG12)的过表达显著提高了木糖到柠檬烯的生产,在 72 小时内达到了约 9.00mg/L。此外,当使用经解毒的木质纤维素水解物时,在 72 小时后,50%水解物的柠檬烯产量达到 20.57mg/L,达到峰值。本研究首次报道了酵母利用木质纤维素原料生产柠檬烯,这些结果表明,通过工程改造解脂耶氏酵母,从可再生生物质生产异戊二烯的经济和可持续生产已经迈出了最初的几步。