Department of Surgery, College of Medicine, University of Florida , Gainesville, FL, USA.
Jining Academy of Agricultural Science , Jining, Shandong, China.
Bioengineered. 2020 Dec;11(1):1208-1220. doi: 10.1080/21655979.2020.1837458.
Cyanobacteria are Gram-negative photoautotrophic prokaryotes and have shown great importance to the Earth's ecology. Based on their capability in oxygenic photosynthesis and genetic merits, they can be engineered as microbial chassis for direct conversion of carbon dioxide to value-added biofuels and chemicals. In the last decades, attempts have given to the application of synthetic biology tools and approaches in the development of cyanobacterial cell factories. Despite the successful proof-of-principle studies, large-scale application is still a technical challenge due to low yields of bioproducts. Therefore, recent efforts are underway to characterize and develop genetic regulatory parts and strategies for the synthetic biology applications in cyanobacteria. In this review, we present the recent advancements and application in cyanobacterial synthetic biology toolboxes. We also discuss the limitations and future perspectives for using such novel tools in cyanobacterial biotechnology.
蓝细菌是革兰氏阴性的光合自养原核生物,对地球生态具有重要意义。基于其产氧光合作用的能力和遗传优势,它们可以被工程化为微生物底盘,用于将二氧化碳直接转化为增值的生物燃料和化学品。在过去的几十年中,人们尝试将合成生物学工具和方法应用于蓝细菌细胞工厂的开发。尽管已经有了成功的原理验证研究,但由于生物产物的产量低,大规模应用仍然是一个技术挑战。因此,目前正在努力对蓝细菌的遗传调控元件和策略进行特征描述和开发,以应用于合成生物学。在这篇综述中,我们介绍了蓝细菌合成生物学工具包的最新进展和应用。我们还讨论了在蓝细菌生物技术中使用这些新型工具的局限性和未来展望。