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Environ Sci Technol ; 48(13): 7511-8, 2014 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-24917125

RESUMO

We studied the microbial community structure of pilot two-stage membrane biofilm reactors (MBfRs) designed to reduce nitrate (NO3(-)) and perchlorate (ClO4(-)) in contaminated groundwater. The groundwater also contained oxygen (O2) and sulfate (SO4(2-)), which became important electron sinks that affected the NO3(-) and ClO4(-) removal rates. Using pyrosequencing, we elucidated how important phylotypes of each "primary" microbial group, i.e., denitrifying bacteria (DB), perchlorate-reducing bacteria (PRB), and sulfate-reducing bacteria (SRB), responded to changes in electron-acceptor loading. UniFrac, principal coordinate analysis (PCoA), and diversity analyses documented that the microbial community of biofilms sampled when the MBfRs had a high acceptor loading were phylogenetically distant from and less diverse than the microbial community of biofilm samples with lower acceptor loadings. Diminished acceptor loading led to SO4(2-) reduction in the lag MBfR, which allowed Desulfovibrionales (an SRB) and Thiothrichales (sulfur-oxidizers) to thrive through S cycling. As a result of this cooperative relationship, they competed effectively with DB/PRB phylotypes such as Xanthomonadales and Rhodobacterales. Thus, pyrosequencing illustrated that while DB, PRB, and SRB responded predictably to changes in acceptor loading, a decrease in total acceptor loading led to important shifts within the "primary" groups, the onset of other members (e.g., Thiothrichales), and overall greater diversity.


Assuntos
Bactérias/genética , Biofilmes , Reatores Biológicos/microbiologia , Membranas Artificiais , Análise de Sequência de DNA/métodos , Bactérias/classificação , Desnitrificação , Elétrons , Hidrogênio/química , Nitratos/metabolismo , Oxirredução , Percloratos/metabolismo , Filogenia , Projetos Piloto , Análise de Componente Principal , Sulfatos/metabolismo , Fatores de Tempo
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