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  4. A minimalistic microbial food web in an excavated deep subsurface clay rock
 
research article

A minimalistic microbial food web in an excavated deep subsurface clay rock

Bagnoud, Alexandre  
•
De Bruijn, Ino
•
Andersson, Anders F.
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2016
FEMS Microbiology Ecology

Clay rocks are being considered for radioactive waste disposal, but relatively little is known about the impact of microbes on the long-term safety of geological repositories. Thus, a more complete understanding of microbial community structure and function in these environments would provide further detail for the evaluation of the safety of geological disposal of radioactive waste in clay rocks. It would also provide a unique glimpse into a poorly studied deep subsurface microbial ecosystem. Previous studies concluded that microorganisms were present in pristine Opalinus Clay, but inactive. In this work, we describe the microbial community and assess the metabolic activities taking place within borehole water. Metagenomic sequencing and genome-binning of a porewater sample containing suspended clay particles revealed a remarkably simple heterotrophic microbial community, fueled by sedimentary organic carbon, mainly composed of two organisms: a Pseudomonas sp. fermenting bacterium growing on organic macromolecules and releasing organic acids and H-2, and a sulfate-reducing Peptococcaceae able to oxidize organic molecules to CO2. In Opalinus Clay, this microbial system likely thrives where pore space allows it. In a repository, this may occur where the clay rock has been locally damaged by excavation or in engineered backfills.

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Type
research article
DOI
10.1093/femsec/fiv138
Web of Science ID

WOS:000371249300002

Author(s)
Bagnoud, Alexandre  
De Bruijn, Ino
Andersson, Anders F.
Diomidis, Nikitas
Leupin, Olivier X.
Schwyn, Bernhard
Bernier-Latmani, Rizlan  
Date Issued

2016

Publisher

Wiley-Blackwell

Published in
FEMS Microbiology Ecology
Volume

92

Issue

1

Article Number

fiv138

Subjects

deep subsurface

•

Opalinus Clay

•

microbial activity

•

sulfate reduction

•

metagenomics

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
EML  
Available on Infoscience
November 6, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/120466
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