Pseudomonas sp. CMR12a produces two different classes of cyclic lipopeptides (CLPs) (orfamides and sessilins), which all play a role in direct antagonism against soilborne pathogens. Here we show that Pseudomonas sp. CMR12a is also able to induce systemic resistance to Magnaporthe oryzae on rice and to the web blight pathogen Rhizoctonia solani AG2-2 on bean. Plant assays with biosynthesis mutants of Pseudomonas sp. CMR12a impaired in the production of phenazines and/or CLPs and purified metabolites revealed that distinct bacterial determinants are responsible for inducing systemic resistance in these two pathosystems. In rice, mutants impaired in phenazine production completely lost their ability to induce systemic resistance, while a soil...
Root rot disease caused by Pythium myriotylum is the most devastating disease of the tropical tuber ...
Biological control of plant diseases is a promising alternative to classical pesticides. Fluorescent...
Beneficial Pseudomonas spp. produce an array of antimicrobial secondary metabolites such as cyclic l...
Pseudomonas sp. CMR12a produces two different classes of cyclic lipopeptides (CLPs) (orfamides and s...
Pseudomonas sp. CMR12a produces two different classes of cyclic lipopeptides (CLPs) (orfamides and s...
Pseudomonas sp. CMR12a produces two different classes of cyclic lipopeptides (CLPs) (orfamides and s...
We investigated the role of phenazines and cyclic lipopeptides (CLPs) (orfamides and sessilins), ant...
We investigated the role of phenazines and cyclic lipopeptides (CLPs) (orfamides and sessilins), ant...
Key message: ThePseudomonas-derived cyclic lipopeptide orfamide can induce resistance toCochliobolus...
The Pseudomonas- derived cyclic lipopeptide orfamide can induce resistance to Cochliobolus miyabeanu...
Pseudomonas CMR12a was previously selected as an efficient biocontrol strain producing phenazines an...
Root rot disease caused by Pythium myriotylum is the most devastating disease of the tropical tuber ...
Root rot disease caused by Pythium myriotylum is the most devastating disease of the tropical tuber ...
Pseudomonas sp. CMR12a is an effective biocontrol agent that produces various antifungal metabolites...
Biological control of plant diseases is a promising alternative to classical pesticides. Fluorescent...
Root rot disease caused by Pythium myriotylum is the most devastating disease of the tropical tuber ...
Biological control of plant diseases is a promising alternative to classical pesticides. Fluorescent...
Beneficial Pseudomonas spp. produce an array of antimicrobial secondary metabolites such as cyclic l...
Pseudomonas sp. CMR12a produces two different classes of cyclic lipopeptides (CLPs) (orfamides and s...
Pseudomonas sp. CMR12a produces two different classes of cyclic lipopeptides (CLPs) (orfamides and s...
Pseudomonas sp. CMR12a produces two different classes of cyclic lipopeptides (CLPs) (orfamides and s...
We investigated the role of phenazines and cyclic lipopeptides (CLPs) (orfamides and sessilins), ant...
We investigated the role of phenazines and cyclic lipopeptides (CLPs) (orfamides and sessilins), ant...
Key message: ThePseudomonas-derived cyclic lipopeptide orfamide can induce resistance toCochliobolus...
The Pseudomonas- derived cyclic lipopeptide orfamide can induce resistance to Cochliobolus miyabeanu...
Pseudomonas CMR12a was previously selected as an efficient biocontrol strain producing phenazines an...
Root rot disease caused by Pythium myriotylum is the most devastating disease of the tropical tuber ...
Root rot disease caused by Pythium myriotylum is the most devastating disease of the tropical tuber ...
Pseudomonas sp. CMR12a is an effective biocontrol agent that produces various antifungal metabolites...
Biological control of plant diseases is a promising alternative to classical pesticides. Fluorescent...
Root rot disease caused by Pythium myriotylum is the most devastating disease of the tropical tuber ...
Biological control of plant diseases is a promising alternative to classical pesticides. Fluorescent...
Beneficial Pseudomonas spp. produce an array of antimicrobial secondary metabolites such as cyclic l...