Determining the mode of action of microbial biocontrol agents plays a key role in their development and registration as commercial biopesticides. The biocontrol rhizobacterium Lysobacter capsici AZ78 (AZ78) is able to inhibit a vast array of plant pathogenic oomycetes and Gram-positive bacteria due to the release of antimicrobial secondary metabolites. A combination of MALDI-qTOF-MSI and UHPLC-HRMS/M was applied to finely dissect the AZ78 metabolome and identify the main secondary metabolites involved in the inhibition of plant pathogenic microorganisms. Under nutritionally limited conditions, MALDI-qTOF-MSI revealed that AZ78 is able to release a relevant number of antimicrobial secondary metabolites belonging to the families of 2,5-diketo...
Antibiotics, toxins and volatile organic compounds (VOCs), are some of the plethora of secondary met...
Inhibitory activity of the biocontrol bacterial strain Lysobacter capsici AZ78 is related to the pro...
Lysobacter capsici AZ78 has considerable potential for biocontrol of phytopathogenic microorganisms....
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Aims: To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
The use of biological control microorganisms to protect plants against pathogenic oomycetes may cont...
The genus Lysobacter includes several bacterial species which show potential for being used in biolo...
The genus Lysobacter includes several bacterial species which show potential for being used in biolo...
Aims To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
Plant beneficial rhizobacteria are able to inhibit the growth of soilborne phytopathogenic microorga...
Microbial biological control agents applied on the phyllosphere are exposed to harsh environmental s...
Antibiotics, toxins and volatile organic compounds (VOCs), are some of the plethora of secondary met...
Inhibitory activity of the biocontrol bacterial strain Lysobacter capsici AZ78 is related to the pro...
Lysobacter capsici AZ78 has considerable potential for biocontrol of phytopathogenic microorganisms....
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Aims: To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
The use of biological control microorganisms to protect plants against pathogenic oomycetes may cont...
The genus Lysobacter includes several bacterial species which show potential for being used in biolo...
The genus Lysobacter includes several bacterial species which show potential for being used in biolo...
Aims To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
Plant beneficial rhizobacteria are able to inhibit the growth of soilborne phytopathogenic microorga...
Microbial biological control agents applied on the phyllosphere are exposed to harsh environmental s...
Antibiotics, toxins and volatile organic compounds (VOCs), are some of the plethora of secondary met...
Inhibitory activity of the biocontrol bacterial strain Lysobacter capsici AZ78 is related to the pro...
Lysobacter capsici AZ78 has considerable potential for biocontrol of phytopathogenic microorganisms....