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Profiling microbial communities in a watershed undergoing intensive anthropogenic activities
- Source :
- Science of The Total Environment. 647:1137-1147
- Publication Year :
- 2019
- Publisher :
- Elsevier BV, 2019.
-
Abstract
- In lotic ecosystems highly susceptible to anthropogenic activities, the influences of environmental variables on microbial communities and their functions remain poorly understood, despite our rapidly increasing sequencing ability. In this study, we profiled the microbial communities in the hyporheic sediments of a watershed undergoing intensive anthropogenic activities via next-generation sequencing of 16S rRNA V4–V5 hypervariable regions on Illumina MiSeq platform. Tidal impacts on microbial communities were investigated via co-occurrence networks. In addition, the influences of physicochemical variables including salinity, and the concentrations of nutrients, organic matter and heavy metals on the microbial communities were explored via canonical correspondence analyses. The sediment samples were collected from 19 sites covering the whole main river stem of the target watershed (n = 19; Maozhou river watershed, Shenzhen, China). The samples were sub-divided in the field for microbiological analyses and measurements of physicochemical variables. The results indicated that core microbiome was associated with archaea methanogens and bacteria members from Proteobacteria, Chloroflexi, Bacteroidetes, Acidobacteria, Synergistetes and Firmicutes, among which, gram-negative and anaerobic bacteria genera contributing to the cycling of carbon, nitrogen and sulfur were predominant. Site-specific microbiomes were revealed that may serve as indicators of local environmental conditions (e.g., members affiliated to Oceanospirillales were abundant at sites with salt intrusion). Distinct microbial co-occurrence networks were identified for non-tidal, inter-tidal and tidal sites. Major environmental factors influencing microbial community composition included the concentrations of nitrate and bicarbonate in river water, pore water concentrations of sulfate, dissolved organic carbon and electrical conductivity, as well as manganese concentrations associated with the solid sediment. Collectively, the results of this study provide fundamental insights into the influence of environmental perturbations on microbial community composition in a lotic system, which may aid in the design of effective remediation and/or restoration strategies in the target watershed and beyond.
- Subjects :
- China
Geologic Sediments
Environmental Engineering
Watershed
River ecosystem
010504 meteorology & atmospheric sciences
Firmicutes
010501 environmental sciences
01 natural sciences
RNA, Ribosomal, 16S
Dissolved organic carbon
Environmental Microbiology
Environmental Chemistry
Waste Management and Disposal
Phylogeny
0105 earth and related environmental sciences
biology
Ecology
biology.organism_classification
Archaea
Pollution
Microbial population biology
Environmental science
Anaerobic bacteria
Proteobacteria
Water Microbiology
Environmental Monitoring
Acidobacteria
Subjects
Details
- ISSN :
- 00489697
- Volume :
- 647
- Database :
- OpenAIRE
- Journal :
- Science of The Total Environment
- Accession number :
- edsair.doi.dedup.....946c26ea42d07b065b52741974a3e936
- Full Text :
- https://doi.org/10.1016/j.scitotenv.2018.08.103