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Desulfococcus oleovorans
Hydrocarbon-Degrading Sulfate-Reducing Bacteria in Marine Hydrocarbon Seep Sediments
Microbial Diversity and Cellulosic Capacity in Municipal Waste Sites By
Variations in the Two Last Steps of the Purine Biosynthetic Pathway in Prokaryotes
Arsenic Metabolism in High Altitude Modern Stromatolites Revealed by Metagenomic Analysis Received: 25 November 2016 Daniel Kurth 1, Ariel Amadio2, Omar F
1715549114.Full.Pdf
Sulphate-Reducing Bacterial Diversity in a Calcareous Sandy Sediment Of
Anaerobic Oxidation of Ethane by Archaea from a Marine Hydrocarbon Seep Song-Can Chen1,2, Niculina Musat1, Oliver J
A Comparative Genomic Analysis of Energy Metabolism in Sulfate Reducing Bacteria and Archaea
Metagenomic Analysis and Metabolite Profiling of Deep-Sea Sediments
Assessing the Genetic Potential of Uncultivated Sulfate Reducing Bacteria
Life in Pitch – Bacteria in a Natural Oil Emitting Lake Help to Understand Anaerobic Biodegradation of Polycyclic Aromatic Hydrocarbons
Genome and Catabolic Subproteomes of the Marine, Nutritionally Versatile
Physiological and Genomic Characterization of Thermophilic Methanotrophic Archaea and Their Partner-Bacteria
Methanogenic Hydrocarbon Degradation and Methane Oxidation in Benthic Microbial Communities” Supervisors Were Dr
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