Functional and molecular approaches for studying and controlling microbial communities in anaerobic digestion of organic waste: a review

IF 8.6 1区 环境科学与生态学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Nora Dinova, Wei Peng, Mihaela Kirilova-Belouhova, Chao Li, Irina Schneider, Erqi Nie, Ivaylo Yotinov, Haowen Duan, Yovana Todorova, Fan Lü, Hua Zhang, Yana Topalova, Pinjing He
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Abstract

Anaerobic digestion (AD) has been studied for centuries, but its operation still mainly relies on physicochemical indicators. Recent advanced molecular biological tools can unveil the nature of the AD process since microbial activity is directly related to digester performance. The paper summarized up-to-date microbiological and molecular biological analysis techniques applied in AD, including PCR-based techniques, electrophoresis, next-generation sequencing, MS-based techniques, and visualization-based techniques. In addition, the paper also reviewed the techniques that link microbial identity and activity to ecological function. Molecular biological techniques can identify microbial activity and AD process disturbance, but research on on-site analysis of microbial communities for a full-scale system is lacking. One of the most suitable methods for studying microbial communities in anaerobic digesters is fluorescence in situ hybridization, which does not require preparative isolation and cultivation. Another very important method is the use of physiological fluorescent probes to reveal the functional characteristics of methanogenic communities by CTC (5-cyano-2,3-ditolyl tetrazolium chloride)/DAPI (4'-6 diamino-2 phenylindole), which is a very rapid, sensitive and informative assay. These methods, together with the application of confocal laser microscopy, and the study of polyphosphate granules and Co-factor 420 of the microbial communities allow us a very effective and targeted functional-molecular control of the processes in anaerobic digesters.

Graphical abstract

Abstract Image

有机废物厌氧消化中微生物群落研究与控制的功能与分子方法综述
厌氧消化(AD)的研究已有几个世纪的历史,但其操作仍主要依靠理化指标。最近先进的分子生物学工具可以揭示AD过程的本质,因为微生物活动直接关系到消化器的性能。本文综述了目前应用于AD的微生物和分子生物学分析技术,包括pcr技术、电泳技术、新一代测序技术、质谱技术和可视化技术。此外,本文还综述了将微生物特性和活性与生态功能联系起来的技术。分子生物学技术可以识别微生物活性和AD过程干扰,但缺乏对全系统微生物群落的现场分析研究。荧光原位杂交是研究厌氧消化池中微生物群落最合适的方法之一,它不需要制备分离和培养。另一个重要的方法是利用生理荧光探针通过CTC(5-氰-2,3-二醇四唑氯)/DAPI(4'-6二氨基-2苯基吲哚)来揭示产甲烷群落的功能特征,这是一种非常快速、敏感和信息丰富的检测方法。这些方法,连同共聚焦激光显微镜的应用,以及聚磷酸盐颗粒和微生物群落的辅因子420的研究,使我们能够非常有效和有针对性地控制厌氧消化器中的过程。图形抽象
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来源期刊
Reviews in Environmental Science and Bio/Technology
Reviews in Environmental Science and Bio/Technology Environmental Science-Waste Management and Disposal
CiteScore
25.00
自引率
1.40%
发文量
37
审稿时长
4.5 months
期刊介绍: Reviews in Environmental Science and Bio/Technology is a publication that offers easily comprehensible, reliable, and well-rounded perspectives and evaluations in the realm of environmental science and (bio)technology. It disseminates the most recent progressions and timely compilations of groundbreaking scientific discoveries, technological advancements, practical applications, policy developments, and societal concerns encompassing all facets of environmental science and (bio)technology. Furthermore, it tackles broader aspects beyond the natural sciences, incorporating subjects such as education, funding, policy-making, intellectual property, and societal influence.
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