生活污水管
溶解循环
硫化物
硫黄
环境科学
硫化物矿物
营养物
环境化学
环境工程
硫循环
基因组
自行车
噬菌体
非生物成分
硫酸盐
寄主(生物学)
生态学
城市河流
微生物代谢
硫代谢
尾矿
硫酸盐还原菌
代谢活性
作者
Bang Ni,Xuepeng Chen,Da Lin,Zhiyuan Yao,Jingjing Xia,Tian-Lun Zhang,Jinting Zheng,Tian-Gui Cai,Xuan Wang,Jes Vollertsen,Dong Zhu,Dong Zhu,David Z. Zhu,David Z. Zhu
标识
DOI:10.1021/acs.est.5c15040
摘要
Sewer sediments are microbial hotspots for sulfur cycling and sulfide generation, which is the leading cause of sewer corrosion and poses significant economic losses and public safety concerns. However, viruses in sewer sediments remain inadequately explored regarding their characteristics, interactions with their hosts, and ecological regulatory potential for sulfur cycling. In this study, we explored viral characteristics and virus-host interactions in sewer sediments from three distinct types of urban functional areas through metagenomics and viromics. Compared with single-function (commercial and residential) areas, sewer sediments in multifunctional areas contain higher nutrients and nutrient-induced acidification, which can promote host density and drive a shift from lytic to lysogenic infection. This shift may potentially enhance sulfide formation through the insertion of more auxiliary metabolic genes related to sulfate reduction into host genomes. Conversely, a higher viral lytic tendency in single-function area can lyse sulfate-reducing microorganisms, thereby mitigating sulfide formation. Phage transplantation experiments and the high prevalence of key viral hosts across global sewers (76 cities across six countries) demonstrated the high potential of viruses in alleviating sewer corrosion. Our findings reveal the dual role of viruses as metabolic "tuners" in sewer sulfur dynamics, suggesting that comprehensive urban sewer management requires consideration of exploiting viral lysis.
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