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不同金属(类)污染下土壤病毒的独特适应策略和微生物相互作用。

Distinct adaptive strategies and microbial interactions of soil viruses under different metal(loid) contaminations.

机构信息

College of Environmental Sciences and Engineering, Key Laboratory of Water and Sediment Sciences, Ministry of Education, Peking University, Beijing 100871, China; School of Environment and Energy, Peking University Shenzhen Graduate School, Shenzhen 518055, China.

School of Environment and Energy, Peking University Shenzhen Graduate School, Shenzhen 518055, China.

出版信息

J Hazard Mater. 2023 Oct 15;460:132347. doi: 10.1016/j.jhazmat.2023.132347. Epub 2023 Aug 19.

Abstract

Viruses, as the most abundant organisms, significantly influence ecological function and microbial survival in soils, yet little was known about how viruses and virus-microbe interactions respond to environmental stresses induced by metal(loid) contaminations. Here, we conducted the metagenomic analysis to investigate the adaptative mechanisms of soil viruses under different metal(loid) contamination levels. By capturing a catalogue of 23,066 viruses, we found that viral communities exhibited the increased richness, diversity, and the temperate to lytic ratio in facing the highest metal(loid) contaminations. Meanwhile, viruses displayed obvious lineage-specific infection modes to distinct dominant hosts under different pollution levels. Viral functions linking to the inhibition of transcription and the enhancement of DNA repairment as well as multiple resistance not only contributed to coping with elevated multiple metal(loid) stresses, but also facilitated the adaptation and functioning of viral hosts. Moreover, the harmonious coexistence of viruses and resistant/pathogenic bacteria under the heaviest contaminations potentially exacerbated disseminating resistance and pathogenicity, while viruses under the lightest contaminations might be natural predators of resistant/pathogenic bacteria through lysing host cells. Overall, this study highlights the ecological importance of viral adaptation and the interactions between viruses and resistant/pathogenic bacteria in contaminated environments, contributing to developing virus-based approaches to soil restoration.

摘要

病毒作为最丰富的生物,显著影响土壤中的生态功能和微生物存活,但人们对病毒和病毒-微生物相互作用如何响应金属(类)污染引起的环境压力知之甚少。在这里,我们进行了宏基因组分析,以研究土壤病毒在不同金属(类)污染水平下的适应机制。通过捕获 23066 种病毒目录,我们发现面对最高金属(类)污染,病毒群落表现出丰富度、多样性和温和噬菌体到裂解噬菌体比例的增加。同时,病毒在不同污染水平下对不同优势宿主表现出明显的谱系特异性感染模式。与转录抑制和 DNA 修复增强以及多重抗性相关的病毒功能不仅有助于应对升高的多重金属(类)胁迫,还促进了病毒宿主的适应和功能。此外,在最严重的污染下,病毒和抗性/致病性细菌的和谐共存可能会加剧抗性和致病性的传播,而在最轻的污染下,病毒可能通过裂解宿主细胞成为抗性/致病性细菌的天然捕食者。总的来说,本研究强调了病毒适应和污染环境中病毒与抗性/致病性细菌相互作用的生态重要性,有助于开发基于病毒的土壤修复方法。

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