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identifier PRJEB10588
type bioproject
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title Assimilation of C by microbial populations in glacial forefields
description Microbial communities and soil carbon (C) have been shown to vary in response to increasing vegetation cover during soil development after deglaciation. However, little is known about the ability of microorganisms to utilize various C sources in glacier forefield soils. We supplied ecologically relevant 13C-labelled C sources (Chlorella, Penicillium and Festuca) to three distinct environments (supraglacial sediments, barren soils and vegetated soils) of the Damma glacier area to monitor 13CO2 production. We identified prokaryotic and fungal populations able to utilize these sources by using DNA-stable isotope probing coupled with Illumina MiSeq sequencing of ribosomal markers. A high initial 13CO2 pulse indicated that 13C-labelled microbial and plant material were consumed. The 13C-enriched DNA results indicated that betaproteobacterial taxa affiliated to the families Oxalobacteraceae and Comamonadaceae were important players in C utilization from different sources and present in all environments. In contrast, different fungal taxa played different roles in C degradation depending on the soil environment. Overall, our findings reveal that C utilization is driven by similar prokaryotic populations along a glacier forefield, while the distribution of active fungal populations are more influenced by environmental factors.
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dbXrefs
sra-run  ERR995438ERR995439ERR995440ERR995441ERR995442ERR995443ERR995444ERR995445ERR995446ERR995447 More
sra-submission  ERA474054ERA474056
biosample  SAMEA3518490SAMEA3518491SAMEA3518492SAMEA3518493SAMEA3518494SAMEA3518495SAMEA3518496SAMEA3518497SAMEA3518498SAMEA3518499 More
sra-study  ERP011856
sra-sample  ERS825639ERS825640ERS825641ERS825642ERS825643ERS825644ERS825645ERS825646ERS825647ERS825648 More
sra-experiment  ERX1074474ERX1074475ERX1074476ERX1074477ERX1074478ERX1074479ERX1074480ERX1074481ERX1074482ERX1074483 More
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status public
visibility unrestricted-access
dateCreated 2016-01-01T00:00:00Z
dateModified 2016-01-01T00:00:00Z
datePublished 2015-12-31T00:00:00Z