Viral and Bacterial Community Dynamics in Food Waste and Digestate from Full-Scale Biogas Plants.

IF 10.8 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL 环境科学与技术 Pub Date : 2024-07-23 Epub Date: 2024-07-11 DOI:10.1021/acs.est.4c04109
Zhijian Shi, Xinyi Long, Chao Zhang, Zheng Chen, Muhammad Usman, Yalei Zhang, Shicheng Zhang, Gang Luo
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Abstract

Anaerobic digestion (AD) is commonly used in food waste treatment. Prokaryotic microbial communities in AD of food waste have been comprehensively studied. The role of viruses, known to affect microbial dynamics and metabolism, remains largely unexplored. This study employed metagenomic analysis and recovered 967 high-quality viral bins within food waste and digestate derived from 8 full-scale biogas plants. The diversity of viral communities was higher in digestate. In silico predictions linked 20.8% of viruses to microbial host populations, highlighting possible virus predators of key functional microbes. Lineage-specific virus-host ratio varied, indicating that viral infection dynamics might differentially affect microbial responses to the varying process parameters. Evidence for virus-mediated gene transfer was identified, emphasizing the potential role of viruses in controlling the microbiome. AD altered the specific process parameters, potentially promoting a shift in viral lifestyle from lysogenic to lytic. Viruses encoding auxiliary metabolic genes (AMGs) were involved in microbial carbon and nutrient cycling, and most AMGs were transcriptionally expressed in digestate, meaning that viruses with active functional states were likely actively involved in AD. These findings provided a comprehensive profile of viral and bacterial communities and expanded knowledge of the interactions between viruses and hosts in food waste and digestate.

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全规模沼气厂食物垃圾和沼渣中的病毒和细菌群落动态。
厌氧消化(AD)通常用于厨余垃圾处理。对食物垃圾厌氧消化过程中的原核微生物群落进行了全面研究。众所周知,病毒会影响微生物的动力学和新陈代谢,但病毒的作用在很大程度上仍未得到研究。本研究采用了元基因组分析方法,从 8 个大型沼气厂的厨余垃圾和沼渣中回收了 967 个高质量的病毒仓。沼渣中病毒群落的多样性更高。根据硅学预测,20.8% 的病毒与微生物宿主种群相关联,这表明病毒可能是关键功能微生物的天敌。特定品系的病毒-宿主比率各不相同,这表明病毒感染动态可能会对微生物对不同工艺参数的反应产生不同影响。发现了病毒介导的基因转移证据,强调了病毒在控制微生物组方面的潜在作用。AD改变了特定的过程参数,可能会促进病毒的生活方式从溶解型转变为溶解型。编码辅助代谢基因(AMGs)的病毒参与了微生物的碳和养分循环,大多数AMGs在消化液中转录表达,这意味着具有活跃功能状态的病毒可能积极参与了AD。这些发现提供了病毒和细菌群落的综合概况,并扩展了人们对厨余垃圾和沼渣中病毒与宿主之间相互作用的了解。
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来源期刊
环境科学与技术
环境科学与技术 环境科学-工程:环境
CiteScore
17.50
自引率
9.60%
发文量
12359
审稿时长
2.8 months
期刊介绍: Environmental Science & Technology (ES&T) is a co-sponsored academic and technical magazine by the Hubei Provincial Environmental Protection Bureau and the Hubei Provincial Academy of Environmental Sciences. Environmental Science & Technology (ES&T) holds the status of Chinese core journals, scientific papers source journals of China, Chinese Science Citation Database source journals, and Chinese Academic Journal Comprehensive Evaluation Database source journals. This publication focuses on the academic field of environmental protection, featuring articles related to environmental protection and technical advancements.
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