Department of Biology, Texas State University, 601 University Drive, San Marcos, TX 78666, USA.
Int J Mol Sci. 2013 Nov 11;14(11):22246-57. doi: 10.3390/ijms141122246.
Investigations of microbial ecology and diversity have been greatly enhanced by the application of culture-independent techniques. One such approach, metagenomics, involves sample collections from soil, water, and other environments. Extracted nucleic acids from bulk environmental samples are sequenced and analyzed, which allows microbial interactions to be inferred on the basis of bioinformatics calculations. In most environments, microbial interactions occur predominately in surface-adherent, biofilm communities. In this review, we address metagenomics sampling and biofilm biology, and propose an experimental strategy whereby the resolving power of metagenomics can be enhanced by incorporating a biofilm-enrichment step during sample acquisition.
通过应用非培养技术,对微生物生态和多样性的研究得到了极大的增强。其中一种方法是宏基因组学,它涉及从土壤、水和其他环境中采集样本。从大量环境样本中提取的核酸进行测序和分析,这使得可以根据生物信息学计算来推断微生物的相互作用。在大多数环境中,微生物相互作用主要发生在表面附着的生物膜群落中。在这篇综述中,我们讨论了宏基因组学采样和生物膜生物学,并提出了一种实验策略,即在采集样本时通过富集生物膜来提高宏基因组学的分辨率。