Aims: To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and their toxic activity against sporangia of plant pathogenic oomycetes. Methods and Results: Assays carried out in vitro showed that L. capsici AZ78 drastically inhibits the growth of plant pathogenic oomycetes. Accordingly, the preventive application of culture filtrates of L. capisici AZ78 on grapevine and tomato plants reduced the infections respectively caused by Plasmopara (Pl.) viticola and Phytophthora infestans. The subsequent chemical analysis of the culture filtrates of L. capsici AZ78 by spectroscopic (essentially 1D and 2D 1H and 13C NMR and ESI MS spectra) and optical methods led to the identification of the 2,5-diketopiperazine...
Survival in the phyllosphere is a critical feature for biofungicides based on non-spore forming bact...
Recently, it has been shown that volatile organic compounds (VOCs) produced by soil bacterium L. cap...
The bacterial genus Lysobacter represents a still underdeveloped source of biocontrol agents able to...
Aims: To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
Aims To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
Inhibitory activity of the biocontrol bacterial strain Lysobacter capsici AZ78 is related to the pro...
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 ...
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...
Microbial biological control agents applied on the phyllosphere are exposed to harsh environmental s...
Introduction: Lysobacter capsici AZ78 (AZ78) is a Gram-negative bacterium that effectively controls ...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Survival in the phyllosphere is a critical feature for biofungicides based on non-spore forming bact...
Recently, it has been shown that volatile organic compounds (VOCs) produced by soil bacterium L. cap...
The bacterial genus Lysobacter represents a still underdeveloped source of biocontrol agents able to...
Aims: To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
Aims To investigate low molecular weight compounds produced in vitro by Lysobacter capsici AZ78 and...
Inhibitory activity of the biocontrol bacterial strain Lysobacter capsici AZ78 is related to the pro...
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 ...
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...
Microbial biological control agents applied on the phyllosphere are exposed to harsh environmental s...
Introduction: Lysobacter capsici AZ78 (AZ78) is a Gram-negative bacterium that effectively controls ...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Survival in the phyllosphere is a critical feature for biofungicides based on non-spore forming bact...
Recently, it has been shown that volatile organic compounds (VOCs) produced by soil bacterium L. cap...
The bacterial genus Lysobacter represents a still underdeveloped source of biocontrol agents able to...