Centro de Estudios de Energía y Procesos Industriales, Universidad de Sancti Spíritus "José Martí Pérez", Ave de los Mártires No. 360, CP 60100, Sancti Spíritus, Cuba.
Facultad de Biología, Universidad de La Habana, Calle 25 e/ I y J, Vedado, CP 10400, Havana, Cuba.
Appl Microbiol Biotechnol. 2019 Dec;103(23-24):9379-9390. doi: 10.1007/s00253-019-10052-5. Epub 2019 Nov 9.
Microbial metagenome analysis has proven its usefulness to investigate the microbiomes present in technical engineered ecosystems such as anaerobic digestion systems. The analysis of the total microbial genomic DNA allows the detailed determination of both the microbial community structure and its functionality. In addition, it enables to study the response of the microbiome to alterations in technical process parameters. Strategies of functional microbial networks to face abiotic stressors, e.g., resistance, resilience, and reorganization, can be evaluated with respect to overall process optimization. The objective of this paper is to review the main metagenomic tools used for effective studies on anaerobic digestion systems in monitoring the dynamic of the microbiomes, as well as the factors that have been identified so far as limiting the metagenomic studies in this ecosystems.
微生物宏基因组分析已被证明可用于研究厌氧消化系统等技术工程生态系统中的微生物组。分析总微生物基因组 DNA 可详细确定微生物群落结构及其功能。此外,它还可以研究微生物组对技术过程参数变化的响应。可以评估功能微生物网络应对非生物胁迫的策略,例如抗性、弹性和重组,以实现整体过程优化。本文的目的是回顾用于有效研究厌氧消化系统中微生物组动态的主要宏基因组工具,以及迄今为止已确定的限制该生态系统中宏基因组研究的因素。