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Network succession reveals the importance of competition in response to emulsified vegetable oil amendment for uranium bioremediation

Environmental Microbiology · 2015 · Vol. 18(1) · pp. 205–218
Ye DengPing ZhangYujia QinQichao TuYunfeng YangZhili HeChristopher W. SchadtJizhong Zhou

Abstract

Discerning network interactions among different species/populations in microbial communities has evoked substantial interests in recent years, but little information is available about temporal dynamics of microbial network interactions in response to environmental perturbations. Here, we modified the random matrix theory-based network approach to discern network succession in groundwater microbial communities in response to emulsified vegetable oil (EVO) amendment for uranium bioremediation. Groundwater microbial communities from one control and seven monitor wells were analysed with a functional gene array (GeoChip 3.0), and functional molecular ecological networks (fMENs) at different time points were reconstructed. Our results showed that the network interactions were dramatically altered by EVO amendment. Dynamic and resilient succession was evident: fairly simple at the initial stage (Day 0), increasingly complex at the middle period (Days 4, 17, 31), most complex at Day 80, and then decreasingly complex at a later stage (140-269 days). Unlike previous studies in other habitats, negative interactions predominated in a time-series fMEN, suggesting strong competition among different microbial species in the groundwater systems after EVO injection. Particularly, several keystone sulfate-reducing bacteria showed strong negative interactions with their network neighbours. These results provide mechanistic understanding of the decreased phylogenetic diversity during environmental perturbations.

Radioactive element chemistry and processingRadioactive contamination and transferAtmospheric and Environmental Gas DynamicsBiologyBioremediationEcological successionCompetition (biology)AmendmentUraniumVegetable oilBiotechnologyEcologyFood science

MeSH terms

BacteriaBiodegradation, EnvironmentalPhylogenyPlant OilsUraniumEcosystemGroundwaterMicrobiota

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • National Natural Science Foundation of China
  • Chinese Academy of Sciences
Citations
460
FWCI
5.72
field-weighted impact
References
62
Percentile
97%
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References
Sparse and Compositionally Robust Inference of Microbial Ecological Networks
PLoS Computational Biology · 2015 · 1,814 citations
Microbial Co-occurrence Relationships in the Human Microbiome
PLoS Computational Biology · 2012 · 1,565 citations
Geometric Interpretation of Gene Coexpression Network Analysis
PLoS Computational Biology · 2008 · 898 citations
Microbial interactions: from networks to models
Nature Reviews Microbiology · 2012 · 3,912 citations
Collective dynamics of ‘small-world’ networks
Nature · 1998 · 42,581 citations
Inferring Correlation Networks from Genomic Survey Data
PLoS Computational Biology · 2012 · 2,815 citations
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