Evaluating the efficacy of genetically engineered Escherichia coli W (ATCC 9637) to produce limonene from industrial sugar beets (Beta vulgaris L.)
메타 데이터
바이오화학분류
바이오플라스틱
플라스틱
바이오정밀화학
용매
화학제품
화장품용 기능성소재
향수
의료용 화학소재
건강보조식품
논문
Evaluating the efficacy of genetically engineered Escherichia coli W (ATCC 9637) to produce limonene from industrial sugar beets (Beta vulgaris L.)
학술지
Industrial crops and products
저자명
Isaac, Isabel C.; Wootton, Stephanie A.; Johnson, Tylor J.; Baldwin, Emily L.; Gu, Liping; Karki, Bishnu; Williams, Alec N.; Halfmann, Charles; Zhu, Huilan; Vargas-Ramirez, Juan M.; Zhou, Ruanbao; Wiesenborn, Dennis P.; Gibbons, William R.
초록
<P><B>Abstract</B></P> <P>There is an increasing need for renewable fuels and chemicals from sustainable feedstocks to decrease the negative global impacts caused by the rampant use of fossil fuels. Juice from industrial sugar beets is a sucrose-rich substrate with potential as a biofuel and chemical feedstock. In this study, juice from sugar beets was utilized as a novel feedstock to produce the cyclic hydrocarbon limonene by genetically engineered <I>E. coli</I> W (ATCC 9637). To optimize this process, limonene production, <I>E. coli</I> viability, pH, and residual sucrose in the media were evaluated in aerobic trials in bioreactors using various concentrations of beet juice diluted in lysogeny broth. Limonene production in these trials ranged from 0.95–3.13mg/L/d, however sucrose from beet juice was not catabolized. Cultivation media supplemented with beet juice can be utilized to produce limonene, however further optimization is needed for the <I>E. coli</I> strains to effectively metabolize sucrose from beet juice.</P> <P><B>Highlights</B></P> <P> <UL> <LI> Sucrose metabolizing <I>E. coli</I> strains were engineered to produce limonene. </LI> <LI> Media supplemented with beet juice evaluated as feedstock for limonene production. </LI> <LI> In this study, 0.95–3.13mg/L/d limonene production was achieved. </LI> </UL> </P>