Keyphrases
Nanospheres
100%
Plant Pathogen
100%
N-acyl Homoserine Lactone
100%
Antibacterial Treatment
100%
Directed Enzyme Evolution
100%
Lactonase
100%
Quorum Quenching
100%
Enzyme Encapsulation
100%
Resistant Strains
28%
Shelf Life
28%
Quorum Sensing
28%
Low Risk
14%
Regulatory Mechanism
14%
High Activity
14%
Pathogenicity
14%
Environment Health
14%
Public Health
14%
Antibiotics
14%
Antibiotic Use
14%
Population Density
14%
Gram-negative Bacteria
14%
Low Activity
14%
Increased Demand
14%
Bacterial Pathogens
14%
Density Dependence
14%
Peptide Nanostructures
14%
Agricultural Yield
14%
Antibacterial Properties
14%
Antivirulence
14%
Thermal Resistance
14%
Temperature Resistance
14%
Thermal Instability
14%
Thermal Durability
14%
Erwinia Amylovora
14%
Phosphotriesterase-like Lactonase
14%
Nanospherical
14%
Blossom Infection
14%
Pharmacology, Toxicology and Pharmaceutical Science
Antiinfective Agent
100%
N Acylhomoserine Lactone
100%
Nanosphere
100%
Plant Diseases
100%
Gluconolactonase
100%
Infection
42%
Antibiotics
28%
Infectious Agent
28%
Nanomaterial
14%
Pathogenicity
14%
Plant-Based Food
14%
Erwinia amylovora
14%
Phosphotriesterase
14%
Biochemistry, Genetics and Molecular Biology
Enzyme
100%
Infectious Agent
100%
Quorum Sensing
100%
Lactonase
100%
Secretion (Process)
16%
Enzymatic Hydrolysis
16%
Antibacterial Activity
16%
Population Density
16%
Heat Tolerance
16%
Plant-Based Food
16%
Erwinia amylovora
16%
Immunology and Microbiology
Infectious Agent
100%
Peptides
100%
Quorum Sensing
100%
Homoserine
100%
Secretion (Process)
14%
Population Density
14%
Pathogenicity
14%
Antibacterial Activity
14%
Heat Tolerance
14%
Plant-Based Food
14%
Erwinia amylovora
14%
Chemistry
N-Acyl Homoserine Lactone
100%
Nanosphere
100%
Enzymatic Hydrolysis
14%
Nanomaterial
14%
Phe-Phe
14%
Antivirulence
14%
Thermal Resistance
14%