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The microbial nitrogen cycling potential is impacted by polyaromatic hydrocarbon pollution of marine sediments

Journal Article · · Frontiers in Microbiology
During hydrocarbon exposure, the composition and functional dynamics of marine microbial communities are altered, favoring bacteria that can utilize this rich carbon source. Initial exposure of high levels of hydrocarbons in aerobic surface sediments can enrich growth of heterotrophic microorganisms having hydrocarbon degradation capacity. As a result, there can be a localized reduction in oxygen potential within the surface layer of marine sediments causing anaerobic zones. We hypothesized that increasing exposure to elevated hydrocarbon concentrations would positively correlate with an increase in denitrification processes and the net accumulation of dinitrogen. This hypothesis was tested by comparing the relative abundance of genes associated with nitrogen metabolism and nitrogen cycling identified in 6 metagenomes from sediments contaminated by polyaromatic hydrocarbons from the Deepwater Horizon (DWH) oil spill in the Gulf of Mexico, and 3 metagenomes from sediments associated with natural oil seeps in the Santa Barbara Channel. An additional 8 metagenomes from uncontaminated sediments from the Gulf of Mexico were analyzed for comparison. We predicted relative changes in metabolite turnover as a function of the differential microbial gene abundances, which showed predicted accumulation of metabolites associated with denitrification processes, including anammox, in the contaminated samples compared to uncontaminated sediments, with the magnitude of this change being positively correlated to the hydrocarbon concentration and exposure duration. These data highlight the potential impact of hydrocarbon inputs on N cycling processes in marine sediments and provide information relevant for system scale models of nitrogen metabolism in affected ecosystems
Research Organization:
Argonne National Laboratory (ANL)
Sponsoring Organization:
USDOE U.S. Department of Energy; Argonne National Laboratory
DOE Contract Number:
AC02-06CH11357
OSTI ID:
1393979
Journal Information:
Frontiers in Microbiology, Journal Name: Frontiers in Microbiology Vol. 5; ISSN 1664-302X
Publisher:
Frontiers Research Foundation
Country of Publication:
United States
Language:
English

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Cited By (17)

Bacterial Community Response in Deep Faroe-Shetland Channel Sediments Following Hydrocarbon Entrainment With and Without Dispersant Addition journal May 2018
Predominance and high diversity of genes associated to denitrification in metagenomes of subantarctic coastal sediments exposed to urban pollution journal November 2018
Current State of Knowledge in Microbial Degradation of Polycyclic Aromatic Hydrocarbons (PAHs): A Review journal August 2016
Microbial transformation of the Deepwater Horizon oil spill—past, present, and future perspectives journal November 2014
Metabolic and spatio-taxonomic response of uncultivated seafloor bacteria following the Deepwater Horizon oil spill journal August 2017
The Earth Microbiome project: successes and aspirations journal August 2014
Ecological response of nitrification to oil spills and its impact on the nitrogen cycle: Ecological response of nitrification to oil spills journal October 2018
A pollution gradient contributes to the taxonomic, functional, and resistome diversity of microbial communities in marine sediments journal July 2019
Nitrogen Metabolism Genes from Temperate Marine Sediments journal March 2017
Distribution of Anaerobic Hydrocarbon-Degrading Bacteria in Soils from King George Island, Maritime Antarctica journal May 2017
Degradation Network Reconstruction in Uric Acid and Ammonium Amendments in Oil-Degrading Marine Microcosms Guided by Metagenomic Data journal November 2015
Predicting Ecological Roles in the Rhizosphere Using Metabolome and Transportome Modeling journal September 2015
Satellite remote sensing data can be used to model marine microbial metabolite turnover journal July 2014
Dimethyl phthalate altered the microbial metabolic pathways in a Mollisol: Environmental behaviour of dimethyl phthalate in soil journal March 2018
The metabolic pathways and environmental controls of hydrocarbon biodegradation in marine ecosystems journal September 2014
Dynamics and distribution of bacterial and archaeal communities in oil-contaminated temperate coastal mudflat mesocosms journal April 2015
Metagenomic views of microbial dynamics influenced by hydrocarbon seepage in sediments of the Gulf of Mexico journal April 2020

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