The strict relationships between bacteria and plants represents one of the major facets of terrestrial ecology. Depending on the type of interaction and amount of metabolic advantage one organism can obtain from such relationships, these are classified as mutualistic, commensal or parasitic interactions. Within this context, Pseudomonas and Xanthomonas are bacterial genera with a worldwide spread, capable of establishing all of the above mentioned interactions with plants. Therefore, they represent good models for studying different lifestyles and, accordingly, deciphering distinct evolutionary trajectories followed by different lineages of a single genus to infect and/or to establish a mutualistic relationships with the plant. Some members...
Understanding the molecular mechanisms underpinning the ecological success of plant pathogens is cri...
Xanthomonas is a well-studied genus of bacterial plant pathogens whose members cause a variety of di...
<div><p>Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the...
International audienceThe strict relationships between bacteria and plants represent one of the majo...
Global climate warming and involvement of new regions with endemic populations of microorganisms in ...
Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the emergen...
In the last decades, the population structure of some plant pathogenic bacteria has been assessed by...
Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the emergen...
Phytopathogenic bacteria of the Xanthomonas genus cause severe diseases on hundreds of host plants, ...
International audienceTaxonomy Bacteria; Phylum Proteobacteria; Class Gammaproteobacteria; Order Lys...
Plant-associated Pseudomonas live as saprophytes and parasites on plant surfaces and inside plant ti...
International audienceDeciphering mechanisms shaping bacterial diversity should help to build tools ...
Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the emergen...
Most Pseudomonas biocontrol strains are associated with the rhizosphere of plants, where they contro...
Comprendre l’émergence des maladies dans les agroécosystèmes nécessite d’étudier l’histoire évolutiv...
Understanding the molecular mechanisms underpinning the ecological success of plant pathogens is cri...
Xanthomonas is a well-studied genus of bacterial plant pathogens whose members cause a variety of di...
<div><p>Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the...
International audienceThe strict relationships between bacteria and plants represent one of the majo...
Global climate warming and involvement of new regions with endemic populations of microorganisms in ...
Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the emergen...
In the last decades, the population structure of some plant pathogenic bacteria has been assessed by...
Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the emergen...
Phytopathogenic bacteria of the Xanthomonas genus cause severe diseases on hundreds of host plants, ...
International audienceTaxonomy Bacteria; Phylum Proteobacteria; Class Gammaproteobacteria; Order Lys...
Plant-associated Pseudomonas live as saprophytes and parasites on plant surfaces and inside plant ti...
International audienceDeciphering mechanisms shaping bacterial diversity should help to build tools ...
Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the emergen...
Most Pseudomonas biocontrol strains are associated with the rhizosphere of plants, where they contro...
Comprendre l’émergence des maladies dans les agroécosystèmes nécessite d’étudier l’histoire évolutiv...
Understanding the molecular mechanisms underpinning the ecological success of plant pathogens is cri...
Xanthomonas is a well-studied genus of bacterial plant pathogens whose members cause a variety of di...
<div><p>Deciphering mechanisms shaping bacterial diversity should help to build tools to predict the...