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深入了解底物与接种物比例选择对食物垃圾厌氧消化过程中动力学参数、微生物群落和关键代谢途径之间关系的影响。

Deeper insights into the effects of substrate to inoculum ratio selection on the relationship of kinetic parameters, microbial communities, and key metabolic pathways during the anaerobic digestion of food waste.

作者信息

Li Yanzeng, Chen Zhou, Peng Yanyan, Huang Weizhao, Liu Junxiao, Mironov Vladimir, Zhang Shenghua

机构信息

Key Lab of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China; University of Chinese Academy of Science, Beijing 100049, China.

Key Lab of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China.

出版信息

Water Res. 2022 Jun 15;217:118440. doi: 10.1016/j.watres.2022.118440. Epub 2022 Apr 9.

Abstract

The substrate to inoculum ratio (S/I) is a crucial factor that affects not only the stability of the anaerobic digestion (AD) of food waste (FW) but also the methanogenic capacity of the substrate. This is of great significance for the start-up of small-scale batch reactors and the directional regulation of methanogenesi and organic acid production. Most studies have merely clarified the optimal S/I ratio for methane production and revealed the basic composition of microbial communities. However, the mechanism of microbial interactions and the metabolic pathways behind the optimal S/I ratio still remain unclear. Herein, the effects of different S/I ratios (VS basis) on the relationship of kinetic parameters, microbial communities, and metabolic pathways during the AD process of FW were holistically explored. The results revealed that high S/I ratios (4:1, 3:1, 2:1, and 1:1) were prone to irreversible acidification, while low S/I ratios (1:2, 1:3, and 1:4) were favorable for methanogenesis. Moreover, a kinetic analysis demonstrated that the methane yield of S/I = 1:3 were the highest. A bioinformatics analysis found that the diversity of bacteria and archaea of S/I = 1:3 were the most abundant, and the enrichment of Bacteroides and Synergistetes could help to establish a syntrophic relationship with hydrogenotrophic methanogens, which could aid in the fulfillment of a unique niche in the system. In contrast to the findings with the other S/I ratios, the cooperation among microbes in S/I = 1:3 was more apparent. Notably, the abundances of genes encoding key enzymes involved in the methanogenesis pathway under S/I = 1:3 were all the highest. This knowledge will be helpful for revealing the influence mechanism of the ratio relationship between microorganisms and substrates on the biochemical metabolic process of anaerobic digestion, thereby providing effective guidance for the directional regulation of FW batch anaerobic reactors.

摘要

底物与接种物比例(S/I)是一个关键因素,不仅影响食物垃圾(FW)厌氧消化(AD)的稳定性,还影响底物的产甲烷能力。这对于小型间歇式反应器的启动以及产甲烷和有机酸生成的定向调控具有重要意义。大多数研究仅阐明了甲烷生产的最佳S/I比例,并揭示了微生物群落的基本组成。然而,微生物相互作用的机制以及最佳S/I比例背后的代谢途径仍不清楚。在此,全面探讨了不同S/I比例(基于挥发性固体)对FW厌氧消化过程中动力学参数、微生物群落和代谢途径关系的影响。结果表明,高S/I比例(4:1、3:1、2:1和1:1)容易发生不可逆酸化,而低S/I比例(1:2、1:3和1:4)有利于产甲烷。此外,动力学分析表明,S/I = 1:3时的甲烷产量最高。生物信息学分析发现,S/I = 1:3时细菌和古菌的多样性最为丰富,拟杆菌属和互养菌门的富集有助于与氢营养型产甲烷菌建立互营关系,这有助于在系统中实现独特的生态位。与其他S/I比例的结果相比,S/I = 1:3时微生物之间的合作更为明显。值得注意的是,S/I = 1:3时参与产甲烷途径的关键酶编码基因的丰度均最高。这些知识将有助于揭示微生物与底物之间的比例关系对厌氧消化生化代谢过程的影响机制,从而为FW间歇式厌氧反应器的定向调控提供有效指导。

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