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嗜热蓝藻——令人兴奋但极具挑战性的生物技术底盘。

Thermophilic cyanobacteria-exciting, yet challenging biotechnological chassis.

机构信息

School of Environment and Energy, Peking University Shenzhen Graduate School, Shenzhen, 518055, China.

出版信息

Appl Microbiol Biotechnol. 2024 Mar 21;108(1):270. doi: 10.1007/s00253-024-13082-w.

Abstract

Thermophilic cyanobacteria are prokaryotic photoautotrophic microorganisms capable of growth between 45 and 73 °C. They are typically found in hot springs where they serve as essential primary producers. Several key features make these robust photosynthetic microbes biotechnologically relevant. These are highly stable proteins and their complexes, the ability to actively transport and concentrate inorganic carbon and other nutrients, to serve as gene donors, microbial cell factories, and sources of bioactive metabolites. A thorough investigation of the recent progress in thermophilic cyanobacteria reveals a significant increase in the number of newly isolated and delineated organisms and wide application of thermophilic light-harvesting components in biohybrid devices. Yet despite these achievements, there are still deficiencies at the high-end of the biotechnological learning curve, notably in genetic engineering and gene editing. Thermostable proteins could be more widely employed, and an extensive pool of newly available genetic data could be better utilised. In this manuscript, we attempt to showcase the most important recent advances in thermophilic cyanobacterial biotechnology and provide an overview of the future direction of the field and challenges that need to be overcome before thermophilic cyanobacterial biotechnology can bridge the gap with highly advanced biotechnology of their mesophilic counterparts. KEY POINTS: • Increased interest in all aspects of thermophilic cyanobacteria in recent years • Light harvesting components remain the most biotechnologically relevant • Lack of reliable molecular biology tools hinders further development of the chassis.

摘要

嗜热蓝藻是能够在 45 到 73°C 之间生长的原核光合自养微生物。它们通常存在于温泉中,是重要的初级生产者。这些健壮的光合微生物在生物技术方面具有几个关键特征,使其具有相关性。它们具有高度稳定的蛋白质及其复合物,能够主动运输和浓缩无机碳和其他营养物质,作为基因供体、微生物细胞工厂和生物活性代谢物的来源。对嗜热蓝藻最新进展的深入研究表明,新分离和划定的生物体数量显著增加,并且广泛应用嗜热光捕获组件在生物杂种设备中。尽管取得了这些成就,但在生物技术学习曲线的高端仍然存在缺陷,特别是在遗传工程和基因编辑方面。热稳定蛋白可以得到更广泛的应用,大量新的可用遗传数据可以得到更好的利用。在本文中,我们试图展示嗜热蓝藻生物技术的最重要的最新进展,并概述该领域的未来方向和需要克服的挑战,以便嗜热蓝藻生物技术能够弥合其与中温对应物的高度先进生物技术之间的差距。关键点:• 近年来对嗜热蓝藻各方面的兴趣增加• 光捕获组件仍然是最具生物技术相关性的• 缺乏可靠的分子生物学工具阻碍了底盘的进一步发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5887/10957709/e1f70cc4189d/253_2024_13082_Fig1_HTML.jpg

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