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地衣芽孢杆菌接种促进厨余垃圾堆肥的腐殖化过程:有机成分转化及细菌代谢机制

Bacillus licheniformis inoculation promoted humification process for kitchen waste composting: Organic components transformation and bacterial metabolic mechanism.

作者信息

Chang Yuan, Zhou Kaiyun, Yang Tianxue, Zhao Xinyu, Li Ruoqi, Li Jun, Xu Shaoqi, Feng Ziwei, Ding Xiaoyan, Zhang Longli, Shi Xiong, Su Jing, Li Ji, Wei Yuquan

机构信息

College of Resources and Environmental Science, Beijing Key Laboratory of Biodiversity and Organic Farming, China Agricultural University, 100193, Beijing, China; Organic Recycling Institute (Suzhou) of China Agricultural University, Wuzhong District, Suzhou, 215128, China.

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing, 100012, China.

出版信息

Environ Res. 2023 Nov 15;237(Pt 2):117016. doi: 10.1016/j.envres.2023.117016. Epub 2023 Aug 30.

Abstract

Kitchen waste (KW) composting always has trouble with slow humification process and low humification degree. The objective of this study was to develop potentially efficient solutions to improve the humification of KW composting, accelerate the humus synthesis and produce HS with a high polymerization degree. The impact of Bacillus licheniformis inoculation on the transformation of organic components, humus synthesis, and bacterial metabolic pathways in kitchen waste composting, was investigated. Results revealed that microbial inoculation promoted the degradation of organic constituents, especially readily degradable carbohydrates during the heating phase and lignocellulose fractions during the cooling phase. Inoculation facilitated the production and conversion of polyphenol, reducing sugar, and amino acids, leading to an increase of 20% in the content of humic acid compared to the control. High-throughput sequencing and network analysis indicated inoculation enriched the presence of Bacillus, Lactobacillus, and Streptomyces during the heating phase, while suppressing the abundance of Pseudomonas and Oceanobacillus, enhancing positive microbial interactions. PICRUSt2 analysis suggested inoculation enhanced the metabolism of carbohydrates and amino acids, promoting the polyphenol humification pathway and facilitating the formation of humus. These findings provide insights for optimizing the humification process of kitchen waste composting by microbial inoculation.

摘要

厨余垃圾(KW)堆肥过程中一直存在腐殖化进程缓慢和腐殖化程度低的问题。本研究的目的是开发潜在有效的解决方案,以改善KW堆肥的腐殖化,加速腐殖质合成,并生产具有高聚合度的腐殖酸(HS)。研究了地衣芽孢杆菌接种对厨余垃圾堆肥中有机成分转化、腐殖质合成和细菌代谢途径的影响。结果表明,微生物接种促进了有机成分的降解,尤其是在升温阶段易降解的碳水化合物和降温阶段的木质纤维素组分。接种促进了多酚、还原糖和氨基酸的产生和转化,与对照相比,腐殖酸含量增加了20%。高通量测序和网络分析表明,接种在升温阶段富集了芽孢杆菌、乳酸杆菌和链霉菌的存在,同时抑制了假单胞菌和嗜盐芽孢杆菌的丰度,增强了微生物之间的正向相互作用。PICRUSt2分析表明,接种增强了碳水化合物和氨基酸的代谢,促进了多酚腐殖化途径,有利于腐殖质的形成。这些发现为通过微生物接种优化厨余垃圾堆肥的腐殖化过程提供了见解。

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