Department of Biology, Washington University, St. Louis, MO, United States.
Department of Biology, Washington University, St. Louis, MO, United States.
Methods Enzymol. 2022;676:403-432. doi: 10.1016/bs.mie.2022.07.023. Epub 2022 Aug 22.
Over the past decade, several cyanobacterial strains have emerged as exciting model systems for unraveling important biological process like photosynthesis and nitrogen fixation. In parallel, novel strains are being developed as platforms for production of various value-added products. To meet either of these goals, synthetic biology tool development has been prioritized, and among many such tools, CRISPR-mediated genome editing tools distinctly hold the potential to revolutionize cyanobacterial research. This chapter reviews our current understanding of the existing and emerging CRISPR-based technologies and their potential application for advanced genome editing in cyanobacterial strains of interest. CRISPR-based tools have gained traction in cyanobacterial research for their ability to target the polyploid genomes in these organisms and generate fully segregated mutants in a remarkably short time. We discuss the native cyanobacterial CRISPR system and the promise they hold for use as precision tools for cyanobacterial genome editing. We elaborate the methodologies for the development of CRISPR-based markerless mutants in cyanobacteria as well as discuss strategies for large scale, regulated genome silencing with CRISPRi. We also highlight some of the emerging CRISPR tools that have shown promise in other prokaryotic and eukaryotic systems but are yet to be adapted for cyanobacterial research.
在过去的十年中,几种蓝藻菌株已成为令人兴奋的模型系统,可用于揭示光合作用和固氮等重要生物学过程。与此同时,新型菌株也被开发为生产各种增值产品的平台。为了实现这两个目标中的任何一个,都优先开发了合成生物学工具,而在众多此类工具中,CRISPR 介导的基因组编辑工具具有彻底改变蓝藻研究的潜力。本章回顾了我们对现有和新兴的基于 CRISPR 的技术的理解,以及它们在有兴趣的蓝藻菌株中进行高级基因组编辑的潜在应用。基于 CRISPR 的工具在蓝藻研究中得到了广泛应用,因为它们能够靶向这些生物体的多倍体基因组,并在短时间内产生完全分离的突变体。我们讨论了天然蓝藻 CRISPR 系统及其作为蓝藻基因组编辑精确工具的应用前景。我们详细介绍了在蓝藻中开发基于 CRISPR 的无标记突变体的方法,并讨论了使用 CRISPRi 进行大规模、有调节的基因组沉默的策略。我们还强调了一些在其他原核和真核系统中表现出前景的新兴 CRISPR 工具,但尚未适应于蓝藻研究。