Xie Xiulan, Jaleel Abdul, Zhan Jiasui, Ren Maozhi
Laboratory of Space Biology, Institute of Urban Agriculture, Chinese Academy of Agricultural Sciences, Chengdu, China.
Zhengzhou Research Base, State Key Laboratory of Cotton Biology, School of Agricultural Sciences, Zhengzhou University, Zhengzhou, China.
Front Plant Sci. 2024 Aug 16;15:1419157. doi: 10.3389/fpls.2024.1419157. eCollection 2024.
Space exploration and interstellar migration are important strategies for long-term human survival. However, extreme environmental conditions, such as space radiation and microgravity, can cause adverse effects, including DNA damage, cerebrovascular disease, osteoporosis, and muscle atrophy, which would require prophylactic and remedial treatment . Production of oral drugs is therefore critical for interstellar travel and can be achieved through industrial production utilizing microalgae, which offers high production efficiency, edibility, resource minimization, adaptability, stress tolerance, and genetic manipulation ease. Synthetic biological techniques using microalgae as a chassis offer several advantages in producing natural products, including availability of biosynthetic precursors, potential for synthesizing natural metabolites, superior quality and efficiency, environmental protection, and sustainable development. This article explores the advantages of bioproduction from microalgal chassis using synthetic biological techniques, suitability of microalgal bioreactor-based cell factories for producing value-added natural metabolites, and prospects and applications of microalgae in interstellar travel.
太空探索和星际移民是人类长期生存的重要策略。然而,极端环境条件,如太空辐射和微重力,会造成不良影响,包括DNA损伤、脑血管疾病、骨质疏松和肌肉萎缩,这需要进行预防性和补救性治疗。因此,口服药物的生产对于星际旅行至关重要,并且可以通过利用微藻的工业生产来实现,微藻具有生产效率高、可食用、资源最小化、适应性强、耐胁迫以及易于基因操作等优点。以微藻为底盘的合成生物学技术在天然产物生产方面具有诸多优势,包括生物合成前体的可用性、合成天然代谢物的潜力、卓越的质量和效率、环境保护以及可持续发展。本文探讨了利用合成生物学技术从微藻底盘进行生物生产的优势、基于微藻生物反应器的细胞工厂生产增值天然代谢物的适用性,以及微藻在星际旅行中的前景和应用。