Yang Xingsheng, Wang Shang, He Qing, Wang Zhujun, Zhang Zhaojing, Jiang Chengying, Ma Liping, Liu Xianwei, Hu Baolan, Li Yongmei, Deng Ye
Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Sheng Wu Gong Cheng Xue Bao. 2021 Oct 25;37(10):3425-3438. doi: 10.13345/j.cjb.210408.
The facultative anaerobic and strict anaerobic microorganisms enriched and acclimated during the anaerobic digestion process are crucial for the efficiency of the anaerobic digestion system. Most of the problems encountered during running anaerobic digestion processes could be effectively improved via stimulation of microbial metabolic activity. Benefited from the rapid development of microbiome techniques, deeper insights into the microbial diversity in anaerobic digestion systems, e.g. the microbe-microbe interactions and microbe-environment interactions, have been gained. A complex and intricate metabolic network exists in the anaerobic digestion system of solid organic wastes. However, little is known about these interactions and the underlying mechanisms. This review briefly summarized the representative interactions between microbial communities during anaerobic digestion process discovered to date. In addition, typical issues encountered during the anaerobic digestion of solid organic wastes and how microbes can tackle and alleviate these issues were discussed. Finally, future priorities on microbiome research were proposed based on present contribution of microbiome analysis in anaerobic digestion system.
厌氧消化过程中富集和驯化的兼性厌氧和严格厌氧微生物对于厌氧消化系统的效率至关重要。在运行厌氧消化过程中遇到的大多数问题都可以通过刺激微生物代谢活性得到有效改善。受益于微生物组技术的快速发展,人们对厌氧消化系统中的微生物多样性有了更深入的了解,例如微生物与微生物之间的相互作用以及微生物与环境之间的相互作用。固体有机废物的厌氧消化系统中存在着复杂而 intricate 的代谢网络。然而,对于这些相互作用及其潜在机制知之甚少。本文简要总结了迄今为止发现的厌氧消化过程中微生物群落之间的代表性相互作用。此外,还讨论了固体有机废物厌氧消化过程中遇到的典型问题以及微生物如何应对和缓解这些问题。最后,基于微生物组分析在厌氧消化系统中的当前贡献,提出了微生物组研究的未来重点。