Vertical and seasonal dynamics of bacterial pathogenic communities at an aged organic contaminated site: Insights into microbial diversity, composition, interactions, and assembly processes

Under the background of the Coronavirus Disease 2019 (COVID-19) pandemic, research on pathogens deserves greater attention in the natural environment, especially in the widely distributed contaminated sites with complicated and severe organic pollution. In this study, the community composition and a...

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Veröffentlicht in:Journal of hazardous materials 2023-10, Vol.460, p.132255-132255, Article 132255
Hauptverfasser: Qin, Zhirui, Zhao, Zhenhua, Xia, Liling, Yu, Guangwen, Miao, Aihua, Yang, Zijun
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Sprache:eng
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Zusammenfassung:Under the background of the Coronavirus Disease 2019 (COVID-19) pandemic, research on pathogens deserves greater attention in the natural environment, especially in the widely distributed contaminated sites with complicated and severe organic pollution. In this study, the community composition and assembly of soil pathogens identified by the newly-developed 16S-based pipeline of multiple bacterial pathogen detection (MBPD) have been investigated on spatiotemporal scales in the selected organic polluted site. We demonstrated that the richness and diversity of the pathogenic communities were primarily controlled by soil depth, while the structure and composition of pathogenic communities varied pronouncedly with seasonal changes, which were driven by the alterations in both physiochemical parameters and organic contaminants over time. Network analysis revealed that the overwhelmingly positive interactions, identified multiple keystone species, and a well-organized modular structure maintained the stability and functionality of the pathogenic communities under environmental pressures. Additionally, the null-model analysis showed that deterministic processes dominated the pathogenic community assembly across soil profiles. In three seasons, stochasticity-dominated processes in spring and summer changed into determinism-dominated processes in winter. These findings extend our knowledge of the response of the bacterial pathogenic community to environmental disruptions brought on by organic contaminated sites. [Display omitted] •Bacterial pathogenic communities were investigated in the organic polluted site.•α- and β-diversities were mainly impacted by soil depths and seasons, respectively.•Taxa partnerships and a high modularity kept structural and functional stability.•Deterministic processes dominated the community assembly across soil profiles.•Stochasticity-driven shifted to determinism-driven processes with seasonal changes.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2023.132255