Bacterial Community Structure and Metabolic Function Succession During the Composting of Distilled Grain Waste

被引:0
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作者
Shi-Peng Wang
Zhao-Yong Sun
Song-Tao Wang
Hua-Wei Yuan
Ming-Zhe An
Zi-Yuan Xia
Yue-Qin Tang
Cai-Hong Shen
Kenji Kida
机构
[1] Sichuan University,College of Architecture and Environment
[2] Luzhou Laojiao Co.,Solid
[3] Ltd.,State Fermentation Resource Utilization Key Laboratory of Sichuan Province
[4] Yibin University,Key Laboratory of Wuliangye
[5] China National Light Industry,Flavor Liquor Solid
来源
关键词
Composting; Distilled grain waste; Bacterial community; Metabolism function; Co-occurrence network analysis;
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学科分类号
摘要
Distilled grain waste (DGW) can be converted to organic fertilizer via aerobic composting process without inoculating exogenous microorganisms. To illustrate the material conversion mechanism, this study investigated the dynamic changes of bacterial community structure and metabolic function involved in DGW composting. Results showed that a significant increase in microbial community alpha diversity was observed during DGW composting. Moreover, unique community structures occurred at each composting stage. The dominant phyla were Firmicutes, Proteobacteria, Actinobacteriota, Bacteroidota, Myxococcota, and Chloroflexi, whose abundance varied according to different composting stages. Keystone microbes can be selected as biomarkers for each stage, and Microbispora, Chryseolinea, Steroidobacter, Truepera, and Luteimonas indicating compost maturity. Co-occurrence network analysis revealed a significant relationship between keystone microbes and environmental factors. The carbohydrate and amino acid metabolism were confirmed as the primary metabolic pathways by metabolic function profiles. Furthermore, nitrogen metabolism pathway analysis indicated that denitrification and NH3 volatilization induced higher nitrogen loss during DGW composting. This study can provide new understanding of the microbiota for organic matter and nitrogen conversion in the composting process of DGW.
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页码:1479 / 1495
页数:16
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