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Thermococcus celer
Thermococcus Piezophilus Sp. Nov., a Novel Hyperthermophilic And
Hyperthermophilic Archae- and Eubacteria Occurring Within Indonesian Hydrothermal Areas
Thermococcus Celer Genome Would Encode a Product Closely
Ep 0949930 B1
Thermal Stability of the Ribosomal Protein L30e From
Genome Analysis and Genome-Wide Proteomics
Clues from Simulated Metabolic Network Expansion
Phylogeny Based on 16S Rrna/DNA
Downloaded (July 2018) and Aligned Using Msaprobs V0.9.7 (16)
(1928-2012), Who Revol
Comparative Genomics of Closely Related Thermococcus Isolates, a Genus of Hyperthermophilic Archaea Damien Courtine
Thermococcus Celer Genome Would Encode a Product Closely
Comparative Genomics of Closely Related Thermococcus Isolates, a Genus of Hyperthermophilic Archaea
Characterization and Application of a Family B DNA Polymerase from The
Differentiation of a Hyperthermophilic Archaeon Pyrococcus Sp. Strain Pikanate 5017, by Arbitrarily Primed PCR
Thermococcus Sulfurophilus Sp
The Crystal Structure of a Hyperthermophilic Archaeal TATA-Box Binding Protein Brian S
A Proposal to Rename the Hyperthermophile Pyrococcus Woesei As Pyrococcus Furiosus Subsp
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Membrane Homeoviscous Adaptation in the Piezo-Hyperthermophilic Archaeon Thermococcus Barophilus Anaïs Cario, Vincent Grossi, Philippe Schaeffer, Philippe M
Comparative Genomics of Closely Related Thermococcus Isolates, a Genus of Hyperthermophilic Archaea Damien Courtine
Thermococcus Gammatolerans to Cadmium
The Core Lipid Composition of the 17 Strains of Hyperthermophilic Archaea, Thermococcales
The Role of Hyperthermophilic Prokaryotes in Oil Fields
United States Patent (19) 11) Patent Number: 5,756,339 Mitta Et Al
Growth Kinetics and Constraints Related to Metabolic Diversity and Abundances of Hyperthermophiles in Deep-Sea Hydrothermal Vents
Phylogenetic Diversity of Archaea in Shallow Hydrothermal Vents of Eolian Islands, Italy
Hydrolytic Enzymes
Fficrotnlggy © Springer-Verlag 1986
Microbial Diversity in Extreme Marine Habitats and Their Biomolecules
Thermococcus Bergensis Sp. Nov., a Novel Hyperthermophilic Starch-Degrading Archaeon