Dai Ziyu, Pomraning Kyle R, Panisko Ellen A, Hofstad Beth A, Campbell Kristen B, Kim Joonhoon, Robles Ana L, Deng Shuang, Magnuson Jon K
Chemical and Biological Processes Development Group, Pacific Northwest National Laboratory, Richland, Washington 99352, United States.
ACS Synth Biol. 2021 May 21;10(5):1000-1008. doi: 10.1021/acssynbio.0c00503. Epub 2021 Apr 29.
Oleaginous yeast, such as , are logical organisms for production of higher energy density molecules like lipids and terpenes. We demonstrate that transgenic strains expressing an α-zingiberene synthase gene from lemon basil or Hall's panicgrass can produce up to 17 mg/L α-zingiberene in yeast extract peptone dextrose (YPD) medium containing 4% glucose. The transgenic strain was further examined in 8% glucose media with C/N ratios of 20 or 100, and YPD. YPD medium resulted in 59 mg/L α-zingiberene accumulation. Overexpression of selected genes from the mevalonate pathway achieved 145% improvement in α-zingiberene synthesis. Optimization of the growth medium for α-zingiberene production led to 15% higher titer than YPD medium. The final transgenic strain produced 700 mg/L α-zingiberene in fed-batch bioreactor culture. This study opens a new synthetic route to produce α-zingiberene or other terpenoids in and establishes this yeast as a platform for jet fuel biosynthesis.
产油酵母,如 ,是生产脂质和萜类等高能量密度分子的理想生物体。我们证明,在含有4%葡萄糖的酵母提取物蛋白胨葡萄糖(YPD)培养基中,表达来自柠檬罗勒或霍尔稷的α-姜烯合酶基因的转基因 菌株可产生高达17 mg/L的α-姜烯。该转基因菌株在碳氮比为20或100的8%葡萄糖培养基以及YPD培养基中进一步进行了检测。YPD培养基导致α-姜烯积累量达到59 mg/L。甲羟戊酸途径中选定基因的过表达使α-姜烯合成提高了145%。优化用于生产α-姜烯的生长培养基,使其滴度比YPD培养基高15%。最终的转基因菌株在分批补料生物反应器培养中产生了700 mg/L的α-姜烯。本研究开辟了一条在 中生产α-姜烯或其他萜类化合物的新合成途径,并将这种酵母确立为喷气燃料生物合成的平台。