Lipopeptides (LPs) are a prominent class of molecules among the steadily growing spectrum of specialized metabolites retrieved from Pseudomonas, in particular soil-dwelling and plant-associated isolates. Among the multiple LP families, pioneering research focussed on phytotoxic and antimicrobial cyclic lipopeptides (CLPs) of the ubiquitous plant pathogen Pseudomonas syringae (syringomycin and syringopeptin). Their non-ribosomal peptide synthetases (NRPSs) are embedded in biosynthetic gene clusters (BGCs) that are tightly co-clustered on a pathogenicity island. Other members of the P. syringaegroup (Pseudomonas cichorii) and some species of the Pseudomonas aspleniigroup and Pseudomonas fluorescens complex have adopted these biosynthetic stra...
<strong>Summary </strong> Lipopeptides (LPs) are surface-active, antimicrobial compounds composed of...
Pseudomonas lipopeptides (Ps-LPs) play crucial roles in bacterial physiology, host–microbe interacti...
Abstract: The plant microbiome represents an enormous untapped resource for discovering novel genes ...
Lipopeptides (LPs) are a prominent class of molecules among the steadily growing spectrum of special...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
Pseudomonas lipopeptides (Ps-LPs) play crucial roles in bacterial physiology, host-microbe interacti...
Analysis of microbial genome sequences have revealed numerous genes involved in antibiotic biosynthe...
Analysis of microbial genome sequences have revealed numerous genes involved in antibiotic biosynthe...
Pseudomonas sp. 11K1, originally isolated from rhizosphere, possesses inhibitory activity against pl...
<p><strong>Summary </strong></p> <p>Lipopeptides (LPs) are surface-active, antimicrobial compounds c...
<strong>Summary </strong> Lipopeptides (LPs) are surface-active, antimicrobial compounds composed of...
Pseudomonas lipopeptides (Ps-LPs) play crucial roles in bacterial physiology, host–microbe interacti...
Abstract: The plant microbiome represents an enormous untapped resource for discovering novel genes ...
Lipopeptides (LPs) are a prominent class of molecules among the steadily growing spectrum of special...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
The plant microbiome is a vastly underutilized resource for identifying new genes and bioactive comp...
Pseudomonas lipopeptides (Ps-LPs) play crucial roles in bacterial physiology, host-microbe interacti...
Analysis of microbial genome sequences have revealed numerous genes involved in antibiotic biosynthe...
Analysis of microbial genome sequences have revealed numerous genes involved in antibiotic biosynthe...
Pseudomonas sp. 11K1, originally isolated from rhizosphere, possesses inhibitory activity against pl...
<p><strong>Summary </strong></p> <p>Lipopeptides (LPs) are surface-active, antimicrobial compounds c...
<strong>Summary </strong> Lipopeptides (LPs) are surface-active, antimicrobial compounds composed of...
Pseudomonas lipopeptides (Ps-LPs) play crucial roles in bacterial physiology, host–microbe interacti...
Abstract: The plant microbiome represents an enormous untapped resource for discovering novel genes ...