Pathways of carbon assimilation and ammonia oxidation suggested by environmental genomic analyses of marine Crenarchaeota.
Marine Crenarchaeota represent an abundant component of oceanic microbiota with potential to significantly influence biogeochemical cycling in marine ecosystems. Prior studies using specific archaeal lipid biomarkers and isotopic analyses indicated that planktonic Crenarchaeota have the capacity for...
Κύριοι συγγραφείς: | Steven J Hallam, Tracy J Mincer, Christa Schleper, Christina M Preston, Katie Roberts, Paul M Richardson, Edward F DeLong |
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Μορφή: | Άρθρο |
Γλώσσα: | English |
Έκδοση: |
Public Library of Science (PLoS)
2006-04-01
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Σειρά: | PLoS Biology |
Διαθέσιμο Online: | http://europepmc.org/articles/PMC1403158?pdf=render |
Παρόμοια τεκμήρια
Παρόμοια τεκμήρια
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Correction: Pathways of Carbon Assimilation and Ammonia Oxidation Suggested by Environmental Genomic Analyses of Marine Crenarchaeota.
ανά: Edward DeLong, κ.ά.
Έκδοση: (2006-12-01) -
The complete genome sequence of Thermoproteus tenax: a physiologically versatile member of the Crenarchaeota.
ανά: Bettina Siebers, κ.ά.
Έκδοση: (2011-01-01) -
Correction: New Insights on the Mechanism of the K+-Independent Activity of Crenarchaeota Pyruvate Kinases.
ανά: Gustavo De la Vega-Ruíz, κ.ά.
Έκδοση: (2015-01-01) -
The complete genome sequence of Thermoproteus tenax: a physiologically versatile member of the Crenarchaeota.
ανά: Siebers, B, κ.ά.
Έκδοση: (2011) -
Metagenomic analysis of ammonia oxidizing archaea affiliated with the soil group
ανά: Christa eSchleper, κ.ά.
Έκδοση: (2012-06-01)