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Sphingomonas stygia
Emendation of the Genus Sphingomonas Yabuuchi Et Al
Short-Term Rhizosphere Effect on Available Carbon Sources
Mapping the Diversity of Microbial Lignin Catabolism: Experiences from the Elignin Database
Chapter 4 Results
Sphingomonas Alaskensis Sp. Nov., a Dominant Bacterium from a Marine Oligotrophic Environment
Microbial Communities and Polycyclic Aromatic Hydrocarbons
Polycyclic Aromatic Hydrocarbon Degradation by Novel Bacteria Isolated from Burrow Sediments of Marine Benthic Macrofauna Wai Ki Chung
WQRJC This Page Is Intentionally Blank
Free University of Brussels
PHYSIOLOGICAL ADAPTATION to NUTRIENT LIMITATION in a MARINE OLIGOTROPHIC ULTRAMICROBACTERIUM Sphingopyxis Alaskensis
1.0 INTRODUCTION Compounds with Oxygen, Sulphur, Phosphorus And
Parablastomonas Arctica Gen. Nov., Sp. Nov., Isolated from High Arctic Glacial Till
Sequencing, Sub-Cloning, Expression and Purification of 2
Description of Sphingomonas Xenophaga Sp. Nov. for Strains BN6T and N,N Which Degrade Xenobiotic Aromatic Compounds
PAH Biodegradation by Sphingomonas and Mycobacterium Spp in Two Different Set Ups
Dominant Bacterial Phyla in Caves and Their Predicted Functional Roles in C and N Cycle Surajit De Mandal1, Raghunath Chatterjee2 and Nachimuthu Senthil Kumar1*
Biorremediación
Novosphingobium Gossypii Sp. Nov., Isolated from Gossypium Hirsutum
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