Keyphrases
Evolutionary Programming
100%
Iron Stress
100%
Saccharomyces Cerevisiae
100%
Molecular Characterization
100%
Physiological Characterization
100%
Stress Resistance
66%
Oxidative Stress Response
66%
Iron Levels
66%
Cell Division
33%
Biomolecules
33%
Microbial Diversity
33%
Mitophagy
33%
Phosphate
33%
Production Level
33%
Hydroxyl Radical
33%
Resistant mutants
33%
Cross-resistance
33%
Carbohydrate Metabolism
33%
Whole-genome Resequencing
33%
Metabolic Processes
33%
Trehalose Production
33%
Cobalt-chromium Alloy
33%
Fenton Reaction
33%
Nickel-cobalt
33%
Cellular Processes
33%
Sequence Analysis
33%
Oxidative Damage
33%
Cell Wall Integrity
33%
Sequestration
33%
Stress-responsive Genes
33%
Genome Resequencing
33%
Induced Oxidative Stress
33%
Excess Iron
33%
High-affinity Phosphate Transporter
33%
Evolving Mechanism
33%
Oxidation Level
33%
PHO84
33%
Microbial nutrients
33%
Glycerol Conversion
33%
Ribosome Biogenesis
33%
Reserve Carbohydrates
33%
Intracellular Oxidation
33%
Iron Resistance
33%
Multidrug Transporter
33%
Metal Cobalt
33%
Downregulated Genes
33%
Biochemistry, Genetics and Molecular Biology
Oxidative Stress
100%
Saccharomyces cerevisiae
100%
Glycerol
50%
Cell Division
50%
Mitophagy
50%
Cross Resistance
50%
Carbohydrate Metabolism
50%
Fenton Reaction
50%
Ribosome Biogenesis
50%
P-Glycoprotein
50%
Trehalose
50%
Whole Genome Resequencing
50%
Immunology and Microbiology
Saccharomyces cerevisiae
100%
Oxidative Stress
100%
Cross-Resistance
50%
Cell Wall
50%
Fenton Reaction
50%
Biogenesis
50%
Cell Division
50%
Saccharomyces cerevisiae
50%
Carbohydrate Metabolism
50%
P-Glycoprotein
50%
Mitophagy
50%
Glycerol
50%
Pharmacology, Toxicology and Pharmaceutical Science
Iron
100%
Saccharomyces cerevisiae
100%
Transition Element
11%
Fenton Reaction
11%
Phosphate Transporter
11%
Trehalose
11%
P-Glycoprotein
11%
Cross-Resistance
11%
Hydroxyl Radical
11%