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Biodegradation and stress in the phyllosphere
T.R. Scheublin, J.H.J. Leveau
NIOO - Microbial Ecology (ME)
Research output
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Keyphrases
Phyllosphere
100%
Biodegradation
100%
Plant Leaves
40%
Colonizer
40%
Humidity
20%
Stress Resistance
20%
Leaf Surface
20%
Bacterial Degradation
20%
Toluene
20%
Cuticle Layer
20%
Stress-related
20%
Particulate Deposition
20%
Stress Improvements
20%
Rapid Change
20%
Collaborative Projects
20%
Phenanthrene
20%
7th Framework Programme
20%
Cellular Survival
20%
Survival Improvement
20%
Stress Level
20%
Cellular Stress
20%
Organic Pollutants
20%
Catabolic
20%
Stress Response
20%
Catabolic Activity
20%
Stress Conditions
20%
Airborne Particulate Matter
20%
Phylloremediation
20%
Improvement Networks
20%
Environmental Pollution
20%
High Stress
20%
Waxy Cuticle
20%
Immunology and Microbiology
Phyllosphere
100%
Biodegradation
100%
Plant Leaf
40%
Leaf Surface
20%
Cell Stress
20%
Phenol
20%
Cell Survival
20%
Cuticle
20%
Agricultural and Biological Sciences
Biodegradation
100%
Phyllosphere
100%
Cuticle
20%
Pharmacology, Toxicology and Pharmaceutical Science
Phenol
100%
Phenanthrene
100%