Keyphrases
Heavy Metals
100%
Engineering Studies
100%
Thermoacidophile
100%
Microorganisms
100%
Base Metals
100%
Metabolic Engineering
100%
Metallosphaera Sedula
50%
Toxin-antitoxin Loci
50%
Biochemical Characterization
50%
Archaebacteria
50%
Nitrogen Cycle
50%
Symbiosis
50%
Cellular Bioenergetics
50%
Eukaryotes
50%
Cell Membrane
50%
Higher Eukaryotes
50%
Conceptual Model
50%
Transcription Factor
50%
Growth Stimulation
50%
Metallomics
50%
Chromatin Modification
50%
Expanded Roles
50%
Bioenergetics
50%
Translational Mechanism
50%
Archaeal
50%
Proton Pumping
50%
Physiological Features
50%
Metal Species
50%
PH Gradient
50%
Global Carbon Cycling
50%
Toxic Level
50%
Medical Strategy
50%
Heavy Metal Resistance
50%
Regulatory System
50%
Sulfur Species
50%
Growth Physiology
50%
Near-neutral
50%
Crenarchaeota
50%
Cellular Survival
50%
Biological Strategies
50%
Path Analysis
50%
Cellular Metabolism
50%
Transcriptional Mechanism
50%
Euryarchaeota
50%
Biochemistry, Genetics and Molecular Biology
Thermoacidophile
100%
Eukaryote
100%
Metabolic Engineering
100%
Microorganism
100%
Cell Membrane
50%
Carbon Cycling
50%
Growth Stimulation
50%
Crenarchaeota
50%
Nitrogen Cycling
50%
Alpha Oxidation
50%
Euryarchaeota
50%
Metallosphaera sedula
50%
Proton Pump
50%
Antitoxin
50%
Cell Survival
50%
Bioenergetics
50%
Bioenergy
50%
Phylum
50%
Cell Metabolism
50%
Transcription
50%
Archaeon
50%
Transcription Factors
50%
Immunology and Microbiology
Thermoacidophile
100%
Eukaryote
100%
Metabolic Engineering
100%
Bioenergy
100%
Microorganism
100%
Cell Survival
50%
Cytosol
50%
Cell Metabolism
50%
Cell Membrane
50%
Carbon Cycling
50%
Phylum
50%
Archaeon
50%
Proton Pump
50%
Metallosphaera sedula
50%
Antitoxin
50%
Nitrogen Cycling
50%
Crenarchaeota
50%
Euryarchaeota
50%
Growth Stimulation
50%
Transcription Factors
50%