Alam Khorshed, Abbasi Muhammad Nazeer, Hao Jinfang, Zhang Youming, Li Aiying
Helmholtz International Lab for Anti-Infectives, Shandong University-Helmholtz Institute of Biotechnology, State Key Laboratory of Microbial Technology, Shandong University, Qingdao 266237, China.
Molecules. 2021 May 17;26(10):2977. doi: 10.3390/molecules26102977.
Microorganisms are highly regarded as a prominent source of natural products that have significant importance in many fields such as medicine, farming, environmental safety, and material production. Due to this, only tiny amounts of microorganisms can be cultivated under standard laboratory conditions, and the bulk of microorganisms in the ecosystems are still unidentified, which restricts our knowledge of uncultured microbial metabolism. However, they could hypothetically provide a large collection of innovative natural products. Culture-independent metagenomics study has the ability to address core questions in the potential of NP production by cloning and analysis of microbial DNA derived directly from environmental samples. Latest advancements in next generation sequencing and genetic engineering tools for genome assembly have broadened the scope of metagenomics to offer perspectives into the life of uncultured microorganisms. In this review, we cover the methods of metagenomic library construction, and heterologous expression for the exploration and development of the environmental metabolome and focus on the function-based metagenomics, sequencing-based metagenomics, and single-cell metagenomics of uncultured microorganisms.
微生物被高度视为天然产物的重要来源,这些天然产物在医学、农业、环境安全和材料生产等许多领域都具有重大意义。因此,在标准实验室条件下只能培养出少量微生物,生态系统中的大部分微生物仍未被鉴定,这限制了我们对未培养微生物代谢的了解。然而,它们理论上可以提供大量创新的天然产物。不依赖培养的宏基因组学研究能够通过克隆和分析直接从环境样本中获得的微生物DNA,解决天然产物生产潜力方面的核心问题。下一代测序和基因组组装的基因工程工具的最新进展拓宽了宏基因组学的范围,为了解未培养微生物的生命提供了视角。在这篇综述中,我们涵盖了宏基因组文库构建的方法以及用于环境代谢组探索和开发的异源表达,并重点介绍了未培养微生物基于功能的宏基因组学、基于测序的宏基因组学和单细胞宏基因组学。