Literature DB >> 16391094

Influence of nutrient inputs, hexadecane, and temporal variations on denitrification and community composition of river biofilms.

M R Chénier1, D Beaumier, N Fortin, R Roy, B T Driscoll, J R Lawrence, C W Greer.   

Abstract

Biofilms were cultivated on polycarbonate strips in rotating annular reactors using South Saskatchewan River water during the fall of 1999 and the fall of 2001, supplemented with carbon (glucose), nitrogen (NH4Cl), phosphorus (KH2PO4), or combined nutrients (CNP), with or without hexadecane, a model compound representing aliphatic hydrocarbons used to simulate a pollutant. In fall 1999 and fall 2001, comparable denitrification activities and catabolic potentials were observed in the biofilms, implying that denitrifying populations showed similar activity patterns and catabolic potentials during the fall from year to year in this river ecosystem, when environmental conditions were similar. Both nirS and nirK denitrification genes were detected by PCR amplification, suggesting that both denitrifying bacterial subpopulations can potentially contribute to total denitrification. Between 91.7 and 99.8% of the consumed N was emitted in the form of N2, suggesting that emission of N2O, a major potent greenhouse gas, by South Saskatchewan River biofilms is low. Denitrification was markedly stimulated by the addition of CNP, and nirS and nirK genes were predominant only in the presence of CNP. In contrast, individual nutrients had no impact on denitrification and on the occurrence of nirS and nirK genes detected by PCR amplification. Similarly, only CNP resulted in significant increases in algal and bacterial biomass relative to control biofilms. Biomass measurements indicated a linkage between autotrophic and heterotrophic populations in the fall 1999 biofilms. Correlation analyses demonstrated a significant relationship (P < or = 0.05) between the denitrification rate and the biomass of algae and heterotrophic bacteria but not cyanobacteria. At the concentration assessed (1 ppb), hexadecane partially inhibited denitrification in both years, slightly more in the fall of 2001. This study suggested that the response of the anaerobic heterotrophic biofilm community may be cyclic and predictable from year to year and that there are interactive effects between nutrients and the contaminant hexadecane.

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Year:  2006        PMID: 16391094      PMCID: PMC1352192          DOI: 10.1128/AEM.72.1.575-584.2006

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  37 in total

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4.  Hexadecane mineralization and denitrification in two diesel fuel-contaminated soils.

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Authors:  J R Lawrence; M R Chenier; R Roy; D Beaumier; N Fortin; G D W Swerhone; T R Neu; C W Greer
Journal:  Appl Environ Microbiol       Date:  2004-07       Impact factor: 4.792

9.  Microbial community-level toxicity testing of linear alkylbenzene sulfonates in aquatic microcosms.

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Journal:  Appl Environ Microbiol       Date:  2010-10-01       Impact factor: 4.792

3.  Community-level assessment of the effects of the broad-spectrum antimicrobial chlorhexidine on the outcome of river microbial biofilm development.

Authors:  J R Lawrence; B Zhu; G D W Swerhone; E Topp; J Roy; L I Wassenaar; T Rema; D R Korber
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4.  N,N-Diethyl-m-Toluamide Exposure at an Environmentally Relevant Concentration Influences River Microbial Community Development.

Authors:  John R Lawrence; Marley J Waiser; George D W Swerhone; Julie L Roy; Armelle Paule; Darren R Korber
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5.  Effects of sodium citrate on the structure and microbial community composition of an early-stage multispecies biofilm model.

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  5 in total

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