Environmental Biotechnology Lab, Department of Civil Engineering, The University of Hong Kong , Hong Kong SRA, China.
Environ Sci Technol. 2015 Nov 3;49(21):12628-40. doi: 10.1021/acs.est.5b03719. Epub 2015 Oct 20.
Recent advances in DNA sequencing technologies have prompted the widespread application of metagenomics for the investigation of novel bioresources (e.g., industrial enzymes and bioactive molecules) and unknown biohazards (e.g., pathogens and antibiotic resistance genes) in natural and engineered microbial systems across multiple disciplines. This review discusses the rigorous experimental design and sample preparation in the context of applying metagenomics in environmental sciences and biotechnology. Moreover, this review summarizes the principles, methodologies, and state-of-the-art bioinformatics procedures, tools and database resources for metagenomics applications and discusses two popular strategies (analysis of unassembled reads versus assembled contigs/draft genomes) for quantitative or qualitative insights of microbial community structure and functions. Overall, this review aims to facilitate more extensive application of metagenomics in the investigation of uncultured microorganisms, novel enzymes, microbe-environment interactions, and biohazards in biotechnological applications where microbial communities are engineered for bioenergy production, wastewater treatment, and bioremediation.
近年来,DNA 测序技术的进步推动了宏基因组学在多个学科领域的广泛应用,以研究新型生物资源(如工业酶和生物活性分子)和未知的生物危害(如病原体和抗生素抗性基因)在自然和工程微生物系统中的情况。本文讨论了在环境科学和生物技术中应用宏基因组学的严格实验设计和样品制备。此外,本文总结了宏基因组学应用的原理、方法和最新生物信息学程序、工具和数据库资源,并讨论了两种常用的策略(未组装的读段分析与组装的连续体/草案基因组分析),用于微生物群落结构和功能的定量或定性研究。总的来说,本文旨在促进宏基因组学在未培养微生物、新型酶、微生物-环境相互作用以及生物技术应用中的生物危害等方面的更广泛应用,这些生物技术应用中微生物群落被用于生物能源生产、废水处理和生物修复等领域。