<div><p>The ability to adapt to adverse conditions permits many bacterial species to be virtually ubiquitous and survive in a variety of ecological niches. This ability is of particular importance for many plant pathogenic bacteria that should be able to exist, except for their host plants, in different environments e.g. soil, water, insect-vectors etc. Under some of these conditions, bacteria encounter absence of nutrients and persist, acquiring new properties related to resistance to a variety of stress factors (cross-protection). Although many studies describe the phenomenon of cross-protection and several regulatory components that induce the formation of resistant cells were elucidated, the global comparison of the physiology of cross-...
Pectobacterium versatile (formerly P. carotovorum) is a recently defined species of soft rot enterob...
A variety of traits are necessary for bacterial colonization of the interior of plant hosts, includi...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
The ability to adapt to adverse conditions permits many bacterial species to be virtually ubiquitous...
© 2017 Gorshkov et al. This is an open access article distributed under the terms of the Creative Co...
The adaptive reactions of plant pathogenic bacterium Pectobacterium atrosepticum SCRI1043 under star...
© 2016 Institut Pasteur.Bacteria have high adaptive potential that ensures their survival during var...
© 2016 Kwenda et al. Background: Small RNAs (sRNAs) have emerged as important regulatory molecules a...
Background: Small RNAs (sRNAs) have emerged as important regulatory molecules and have been studied ...
© 2018, Koninklijke Nederlandse Planteziektenkundige Vereniging. In the present study, we have monit...
Understanding the molecular mechanisms underpinning the ecological success of plant pathogens is cri...
Objectives: Identification of novel microbial factors contributing to plant protection against abiot...
Understanding the molecular mechanisms underpinning the ecological success of plant pathogens is cri...
Pectobacterium versatile (formerly P. carotovorum) is a recently defined species of soft rot enterob...
A variety of traits are necessary for bacterial colonization of the interior of plant hosts, includi...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...
The ability to adapt to adverse conditions permits many bacterial species to be virtually ubiquitous...
© 2017 Gorshkov et al. This is an open access article distributed under the terms of the Creative Co...
The adaptive reactions of plant pathogenic bacterium Pectobacterium atrosepticum SCRI1043 under star...
© 2016 Institut Pasteur.Bacteria have high adaptive potential that ensures their survival during var...
© 2016 Kwenda et al. Background: Small RNAs (sRNAs) have emerged as important regulatory molecules a...
Background: Small RNAs (sRNAs) have emerged as important regulatory molecules and have been studied ...
© 2018, Koninklijke Nederlandse Planteziektenkundige Vereniging. In the present study, we have monit...
Understanding the molecular mechanisms underpinning the ecological success of plant pathogens is cri...
Objectives: Identification of novel microbial factors contributing to plant protection against abiot...
Understanding the molecular mechanisms underpinning the ecological success of plant pathogens is cri...
Pectobacterium versatile (formerly P. carotovorum) is a recently defined species of soft rot enterob...
A variety of traits are necessary for bacterial colonization of the interior of plant hosts, includi...
Bacterial populations have a remarkable capacity to cope with extreme environmental fluctuations in ...