Lysobacter capsici AZ78 has considerable potential for biocontrol of phytopathogenic microorganisms. However, lack of information about genetic cues regarding its biological characteristics may slow down its exploitation as a biofungicide. In order to obtain a comprehensive overview of genetic features, the L. capsici AZ78 genome was sequenced, annotated and compared with the phylogenetically related pathogens Stenotrophomonas malthophilia K729a and Xanthomonas campestris pv. campestris ATCC 33913. Whole genome comparison, supported by functional analysis, indicated that L. capsici AZ78 has a larger number of genes responsible for interaction with phytopathogens and environmental stress than S. malthophilia K729a and X. c. pv. campestris AT...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Phytophthora capsici is a devastating pathogen of vegetables including pepper, tomato, lima and snap...
Phytophthora capsici is an oomycete pathogen responsible for damping off, root rot, fruit rot, and f...
Lysobacter capsici AZ78 has considerable potential for biocontrol of phytopathogenic microorganisms....
Lysobacter capsici AZ78 isolated from tobacco rhizosphere effectively controls Phytophthora infestan...
The use of biological control microorganisms to protect plants against pathogenic oomycetes may cont...
Lysobacter species have attracted increasing attention in recent years due to their capacities to pr...
In the European Union (EU) the authorization of new active substances based on microbial agents is ...
Copyright © 2014 Puopolo et al. This is an open-access article distributed under the terms of the Cr...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Phytophthora capsici is an oomycete pathogen responsible for damping off, root rot, fruit rot, and f...
Background: Lysobacter species are Gram-negative bacteria widely distributed in soil, plant and fres...
Four Gram-negative bacterial strains, recovered from clay soils cultivated with different crops in t...
Background: Lysobacter species are Gram-negative bacteria widely distributed in soil, plant and fres...
Phytophthora capsici is an oomycete pathogen responsible for damping off, root rot, fruit rot, and f...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Phytophthora capsici is a devastating pathogen of vegetables including pepper, tomato, lima and snap...
Phytophthora capsici is an oomycete pathogen responsible for damping off, root rot, fruit rot, and f...
Lysobacter capsici AZ78 has considerable potential for biocontrol of phytopathogenic microorganisms....
Lysobacter capsici AZ78 isolated from tobacco rhizosphere effectively controls Phytophthora infestan...
The use of biological control microorganisms to protect plants against pathogenic oomycetes may cont...
Lysobacter species have attracted increasing attention in recent years due to their capacities to pr...
In the European Union (EU) the authorization of new active substances based on microbial agents is ...
Copyright © 2014 Puopolo et al. This is an open-access article distributed under the terms of the Cr...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Phytophthora capsici is an oomycete pathogen responsible for damping off, root rot, fruit rot, and f...
Background: Lysobacter species are Gram-negative bacteria widely distributed in soil, plant and fres...
Four Gram-negative bacterial strains, recovered from clay soils cultivated with different crops in t...
Background: Lysobacter species are Gram-negative bacteria widely distributed in soil, plant and fres...
Phytophthora capsici is an oomycete pathogen responsible for damping off, root rot, fruit rot, and f...
Determining the mode of action of microbial biocontrol agents plays a key role in their development ...
Phytophthora capsici is a devastating pathogen of vegetables including pepper, tomato, lima and snap...
Phytophthora capsici is an oomycete pathogen responsible for damping off, root rot, fruit rot, and f...