Despite the high potential of strains belonging to the genus Lysobacter to be developed as novel biofungicides, little is known on how environmental factors may influence their ability to control plant pathogens. In order to address this issue, we studied the impact of temperature on the physiology of a specific strain, L. capsici AZ78, in particular on traits associated with the biocontrol efficacy of Phytophthora infestans and the colonization rate of tomato phyllosphere. L. capsici AZ78 effectively colonizes tomato leaves and controls P. infestans infections when treated plants are exposed to 15 and 25°C for 24 h. Conversely, the exposure to 35 drastically reduces the persistency of living bacterial cells on tomato leaves and the biocon...
As living organisms, growth and antagonistic activity of biological control agents depend on enviro...
Understanding how temperature and water stress affect protocooperation between plants and beneficial ...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Despite the high potential of strains belonging to the genus Lysobacter to be developed as novel bio...
Temperature can strongly influence the biocontrol efficacy of Lysobacter strains when used against p...
Biological control is an alternative to chemical control of diseases and a relevant tool for sustain...
1. Microbe-based biocontrol applications hold the potential to become an efficient way to control pl...
Microbe-based biocontrol applications hold the potential to become an efficient way to control plant...
An optimal microbiome is important for plant health and can prime subsequent plant immune responses ...
The antagonistic bacterial strain Lysobacter capsici AZ78 was recently selected for its relevant eff...
The main objective of this study was identifying the effect of temperature on the growth and effici...
Abnormal temperatures induce physiological and biochemical changes resulting in the loss of yield. T...
The development of antibiotic resistance has become a rapidly emerging threat to human health global...
As living organisms, growth and antagonistic activity of biological control agents depend on enviro...
Understanding how temperature and water stress affect protocooperation between plants and beneficial ...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...
Despite the high potential of strains belonging to the genus Lysobacter to be developed as novel bio...
Temperature can strongly influence the biocontrol efficacy of Lysobacter strains when used against p...
Biological control is an alternative to chemical control of diseases and a relevant tool for sustain...
1. Microbe-based biocontrol applications hold the potential to become an efficient way to control pl...
Microbe-based biocontrol applications hold the potential to become an efficient way to control plant...
An optimal microbiome is important for plant health and can prime subsequent plant immune responses ...
The antagonistic bacterial strain Lysobacter capsici AZ78 was recently selected for its relevant eff...
The main objective of this study was identifying the effect of temperature on the growth and effici...
Abnormal temperatures induce physiological and biochemical changes resulting in the loss of yield. T...
The development of antibiotic resistance has become a rapidly emerging threat to human health global...
As living organisms, growth and antagonistic activity of biological control agents depend on enviro...
Understanding how temperature and water stress affect protocooperation between plants and beneficial ...
Knowledge of pathogen adaptation to global warming is important for predicting future disease epidem...