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Current understanding of the cyanobacterial CRISPR-Cas systems and development of the synthetic CRISPR-Cas systems for cyanobacteria

机译:目前对蓝藻CRISPR-CAS系统的理解和开发用于蓝藻的合成CRAP-Systems

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摘要

Cyanobacteria are photosynthetic microorganisms that are capable of converting CO2 to value-added chemicals. Engineering of cyanobacteria with synthetic biology tools, including the CRISPR-Cas system, has allowed an opportunity for biological CO2 utilization. Here, we described natural CRISPR-Cas systems for understanding cyanobacterial genomics and synthetic CRISPR-Cas systems for metabolic engineering applications. The natural CRISPR-Cas systems in cyanobacteria have been identified as Class 1, with type I and III, and some Class 2, with type V, as an adaptive immune system against viral invasion. As synthetic tools, CRISPR-Cas9 and -Cas12a have been successfully established in cyanobacteria to delete a target gene without a selection marker. Deactivated Cas9 and Cas12a have also been used to repress genes for metabolic engineering. In addition, a perspective on how advanced CRISPR-Cas systems and a pool of the guide RNAs can be advantageous for precise genome engineering and understanding of unknown functions was discussed for advanced engineering of cyanobacteria.
机译:蓝藻是光合微生物,其能够将CO2转化为增值化学品。用CRISPR-CAS系统在内的Cyanobacteria的工程,包括生物二氧化碳系统的机会。在这里,我们描述了用于了解性肌肉基因组学和合成CRISPR-CAS系统的自然CRISPR-CAS系统,用于代谢工程应用。用肌肉细胞的天然Cr CAS-Systems已被鉴定为1型和III型,其中一些2类与V型,作为针对病毒侵袭的适应性免疫系统。作为合成工具,CRISPR-CAS9和-CAS12A已经成功地在Cyanobacteria中建立,以删除没有选择标记的靶基因。已停用的CAS9和CAS12A也被用于抑制代谢工程的基因。此外,对先进的CRAP-CAS系统和指导RNA的池是如何有利的,对于精确的基因组工程和对未知功能的理解,用于对Cyanobacteria的高级工程进行了探讨。

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