School of Environment and Energy, Peking University Shenzhen Graduate School, 2199 Lishui Rd., Shenzhen 518055, China.
Institute of Molecular and Industrial Biotechnology, Lodz University of Technology, 4/40 Stefanowskiego Str, 90-924 Lodz, Poland.
Int J Mol Sci. 2020 Sep 29;21(19):7204. doi: 10.3390/ijms21197204.
Cyanobacteria are photoautotrophic bacteria commonly found in the natural environment. Due to the ecological benefits associated with the assimilation of carbon dioxide from the atmosphere and utilization of light energy, they are attractive hosts in a growing number of biotechnological processes. Biopolymer production is arguably one of the most critical areas where the transition from fossil-derived chemistry to renewable chemistry is needed. Cyanobacteria can produce several polymeric compounds with high applicability such as glycogen, polyhydroxyalkanoates, or extracellular polymeric substances. These important biopolymers are synthesized using precursors derived from central carbon metabolism, including the tricarboxylic acid cycle. Due to their unique metabolic properties, i.e., light harvesting and carbon fixation, the molecular and genetic aspects of polymer biosynthesis and their relationship with central carbon metabolism are somehow different from those found in heterotrophic microorganisms. A greater understanding of the processes involved in cyanobacterial metabolism is still required to produce these molecules more efficiently. This review presents the current state of the art in the engineering of cyanobacterial metabolism for the efficient production of these biopolymers.
蓝细菌是一种常见于自然环境中的光合自养细菌。由于其从大气中同化二氧化碳和利用光能的生态效益,它们在越来越多的生物技术过程中成为有吸引力的宿主。生物聚合物的生产可以说是最关键的领域之一,需要从化石衍生化学向可再生化学转变。蓝细菌可以产生几种具有高适用性的聚合化合物,如糖原、聚羟基脂肪酸酯或细胞外聚合物物质。这些重要的生物聚合物是使用源自中心碳代谢的前体合成的,包括三羧酸循环。由于其独特的代谢特性,即光捕获和碳固定,聚合物生物合成的分子和遗传方面及其与中心碳代谢的关系与异养微生物中的有所不同。为了更有效地生产这些分子,仍需要进一步了解蓝细菌代谢过程。本文综述了蓝细菌代谢工程在高效生产这些生物聚合物方面的最新进展。