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高密度培养提高集胞藻 PCC 6803 中倍半萜生物合成效率。

High density cultivation for efficient sesquiterpenoid biosynthesis in Synechocystis sp. PCC 6803.

机构信息

Department of Chemistry - Ångström, Uppsala University, Box 523, Uppsala, 75120, Sweden.

Faculty of Biology - Center for Biotechnology, Bielefeld University, Bielefeld, Germany.

出版信息

Sci Rep. 2020 Apr 3;10(1):5932. doi: 10.1038/s41598-020-62681-w.

Abstract

Cyanobacteria and microalgae are attractive photoautotrophic host systems for climate-friendly production of fuels and other value-added biochemicals. However, for economic applications further development and implementation of efficient and sustainable cultivation strategies are essential. Here, we present a comparative study on cyanobacterial sesquiterpenoid biosynthesis in Synechocystis sp. PCC 6803 using a commercial lab-scale High Density Cultivation (HDC) platform in the presence of dodecane as in-situ extractant. Operating in a two-step semi-batch mode over a period of eight days, volumetric yields of (E)-α-bisabolene were more than two orders of magnitude higher than previously reported for cyanobacteria, with final titers of 179.4 ± 20.7 mg * L. Likewise, yields of the sesquiterpene alcohols (-)-patchoulol and (-)-α-bisabolol were many times higher than under reference conditions, with final titers of 17.3 ± 1.85 mg * L and 96.3 ± 2.2 mg * L, respectively. While specific productivity was compromised particularly for (E)-α-bisabolene in the HDC system during phases of high biomass accumulation rates, volumetric productivity enhancements during linear growth at high densities were more pronounced for (E)-α-bisabolene than for the hydroxylated terpenoids. Together, this study provides additional insights into cell density-related process characteristics, introducing HDC as highly efficient strategy for phototrophic terpenoid production in cyanobacteria.

摘要

蓝藻和微藻是有吸引力的光合自养宿主系统,可用于气候友好型生产燃料和其他增值生化物质。然而,为了经济应用,进一步开发和实施高效和可持续的培养策略是必不可少的。在这里,我们在存在十二烷的情况下,使用商业实验室规模高密度培养(HDC)平台,对集胞藻 PCC 6803 中的蓝藻倍半萜生物合成进行了比较研究。在八天的时间内,采用两步半分批模式操作,(E)-α-毕澄茄烯的体积产率比以前报道的蓝藻高两个数量级以上,最终浓度为 179.4±20.7mgL-1。同样,倍半萜醇(-)-姜黄烯和(-)-α-毕澄茄醇的产量也高出数倍,最终浓度分别为 17.3±1.85mgL-1和 96.3±2.2mg*L-1。虽然在 HDC 系统中,特别是在高生物质积累率阶段,(E)-α-毕澄茄烯的比生产力受到影响,但在高密度下线性生长时,(E)-α-毕澄茄烯的比生产力增强比羟基化萜烯更为显著。总的来说,这项研究提供了更多关于细胞密度相关过程特性的见解,将 HDC 引入蓝藻中光养萜烯生产的高效策略。

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