State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, People's Republic of China.
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, People's Republic of China; International College, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
Biotechnol Adv. 2024 Jan-Feb;70:108302. doi: 10.1016/j.biotechadv.2023.108302. Epub 2023 Dec 13.
Halophiles are salt-loving microorganisms known to have their natural resistance against media contamination even when cultivated in nonsterile and continuous bioprocess system, thus acting as promising cell factories for Next Generation of Industrial Biotechnology (NGIB). NGIB - a successor to the traditional industrial biotechnology, is a more sustainable and efficient bioprocess technology while saving energy and water in a more convenient way as well as reducing the investment cost and skilled workforce requirement. Numerous studies have achieved intriguing outcomes during synthesis of different metabolite using halophiles such as polyhydroxyalkanoates (PHA), ectoine, biosurfactants, and carotenoids. Present-day development in genetic maneuverings have shown optimistic effects on the industrial applications of halophiles. However, viable and competent genetic manipulation system and gene editing tools are critical to accelerate the process of halophile engineering. With the aid of such powerful gene manipulation systems, exclusive microbial chassis are being crafted with desirable features to breed another innovative area of research such as synthetic biology. This review provides an aerial perspective on how the expansion of adaptable gene manipulation toolkits in halophiles are contributing towards biotechnological advancement, and also focusses on their subsequent application for production improvement. This current methodical and comprehensive review will definitely help the scientific fraternity to bridge the gap between challenges and opportunities in halophile engineering.
嗜盐微生物是指在天然环境中对盐有偏好的微生物,它们具有天然的抗污染能力,即使在非无菌和连续的生物过程系统中进行培养也是如此。因此,它们是下一代工业生物技术 (Next Generation of Industrial Biotechnology, NGIB) 的有前途的细胞工厂。NGIB 是传统工业生物技术的继承者,是一种更可持续和高效的生物技术,它以更方便的方式节约能源和水资源,降低投资成本和对熟练劳动力的需求。许多研究在使用嗜盐微生物(如聚羟基脂肪酸酯 (PHA)、海藻糖、生物表面活性剂和类胡萝卜素)合成不同代谢物方面取得了有趣的成果。目前,遗传操作的发展对嗜盐微生物的工业应用显示出了乐观的影响。然而,可行的和有能力的遗传操作系统和基因编辑工具对于加速嗜盐微生物工程的进程至关重要。借助这些强大的基因操作系统,可以构建具有理想特性的独特微生物底盘,从而培育出另一个创新的研究领域,如合成生物学。本综述从宏观角度探讨了嗜盐微生物中适应性强的基因操作工具包的扩展如何推动生物技术的进步,并重点介绍了它们随后在提高生产方面的应用。本综述方法全面,肯定会帮助科学界弥合嗜盐微生物工程中的挑战与机遇之间的差距。