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  4. The response of Desulfotomaculum reducens MI-1 to U(VI) exposure: a transcriptomic study
 
research article

The response of Desulfotomaculum reducens MI-1 to U(VI) exposure: a transcriptomic study

Junier, Pilar  
•
Dalla-Vecchia, Elena C.  
•
Bernier-Latmani, Rizlan  
2011
Geomicrobiology Journal

Desulfotomaculum reducens is the first Gram-positive sulfate- and metal-reducing bacterium for which the transcriptomic response to uranium exposure has been evaluated. The genes upregulated during fermentative growth in the presence of U(VI) as compared to its absence included those encoding for proteins involved in respiration such as NADH quinone oxidoreductase and heterodisulfide reductase. This finding suggested that electrons were shuttled to the electron transport chain during fermentation and points to the reduction of U(VI) as a metabolic process. Although U(IV) is typically insoluble and readily removable by filtration, U(IV) produced during active growth was not retained by a 0.2 mu m pore size filter and filtration was not sufficient to differentiate between U(VI) and U(IV). In addition, genes involved in iron homeostasis were upregulated in the presence of uranium, which was consistent with the upregulation of genes involved in c-type cytochrome biogenesis. Despite the upregulation of cytochrome biosynthesis genes, the sole c-type cytochrome encoded in the genome was not differentially expressed. Finally, genes encoding metal efflux pumps were also upregulated indicating the toxic nature of uranium. Analysis of the time-dependent gene expression showed that sporulation was the dominant process at the early stationary phase and that the presence of U at that stage did not impact expression.

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Type
research article
DOI
10.1080/01490451.2010.512031
Web of Science ID

WOS:000296189400010

Author(s)
Junier, Pilar  
Dalla-Vecchia, Elena C.  
Bernier-Latmani, Rizlan  
Date Issued

2011

Publisher

Taylor & Francis

Published in
Geomicrobiology Journal
Volume

28

Issue

5/6

Start page

483

End page

496

Subjects

uranium

•

Desulfotomaculum reducens

•

transcriptomics

•

metal reduction

•

spore-former

•

Spore Coat Morphogenesis

•

Bacillus-Subtilis

•

Shewanella-Oneidensis

•

Geobacter-Sulfurreducens

•

Metal Reduction

•

Genome Sequence

•

Electron-Acceptors

•

Sporulation Genes

•

Uranium Reduction

•

Groundwater

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
EML  
Available on Infoscience
August 11, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/52117
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