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      The contribution of Fe(III) and humic acid reduction to ecosystem respiration in drained thaw lake basins of the Arctic Coastal Plain : Fe(III) AND HA REDUCTION IN THE ARCTIC

      , , ,
      Global Biogeochemical Cycles
      Wiley-Blackwell

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          Humic substances as electron acceptors for microbial respiration

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            Development of a sequential extraction procedure for iron: implications for iron partitioning in continentally derived particulates

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              Uncultured archaea in deep marine subsurface sediments: have we caught them all?

              Deep marine subsurface sediments represent a novel archaeal biosphere with unknown physiology; the sedimentary subsurface harbors numerous novel phylogenetic lineages of archaea that are at present uncultured. Archaeal 16S rRNA analyses of deep subsurface sediments demonstrate their global occurrence and wide habitat range, including deep subsurface sediments, methane seeps and organic-rich coastal sediments. These subsurface archaeal lineages were discovered by PCR of extracted environmental DNA; their detection ultimately depends on the specificity of the archaeal PCR 16S rRNA primers. Surprisingly high mismatch frequencies for some archaeal PCR primers result in amplification bias against the corresponding archaeal lineages; this review presents some examples. Obviously, most archaeal 16S rRNA PCR primers were developed either before the discovery of these deep subsurface archaeal lineages, or without taking their sequence variants into account. PCR surveys with multiple primer combinations, revision and updates of primers whenever possible, and increasing use of PCR-independent methods in molecular microbial ecology will contribute to a more comprehensive view of subsurface archaeal communities.
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                Author and article information

                Journal
                Global Biogeochemical Cycles
                Global Biogeochem. Cycles
                Wiley-Blackwell
                08866236
                June 2013
                June 2013
                : 27
                : 2
                : 399-409
                Article
                10.1002/gbc.20038
                e832f55d-44d9-4021-ac90-d4fffe51d608
                © 2013

                http://doi.wiley.com/10.1002/tdm_license_1.1

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