Fire blight is the most devastating disease affecting pome fruit production globally. The pathogen is native to North America and was imported to western Europe in the 1950s, progressively spreading over the continent in theensuing decades. Previous phylogenetic studies have revealed the extreme genetic homogeneity of the pathogenoutside its center of origin, which makes epidemiological studies difficult. These are generally only possible using hypervariable regions of the genome such as those represented by CRISPRs (Clustered Regularly Interspaced Short Palindromic Repeats), which are, however, not practical to sequence due to their size and variability. Here, we present a simple PCR assay targeting the duplication of a single CRISPR space...
Fireblight, a disease of many plant species in the Rosaceae family, is caused by Erwinia amylovora (...
Comparative genomics of several strains of Erwinia amylovora, a plant pathogenic bacterium causal ag...
Llop P, Cabrefiga J, Smits THM, et al. Erwinia amylovora novel plasmid pEI70: Complete sequence, bio...
Fire blight is the most devastating disease affecting pome fruit production globally. The pathogen i...
Fire blight is a destructive plant disease caused by Erwinia amylovora affecting pome fruit trees, a...
Fire blight is a destructive plant disease caused by Erwinia amylovora affecting pome fruit trees, ...
Erwinia amylovora causes a major disease of pome fruit trees worldwide, and is regulated as a quaran...
Clustered regularly interspaced short palindromic repeats (CRISPRs) comprise a family of short DNA r...
Erwinia amylovora is a Gram-negative bacterium that colonizes a wide variety of plant species causin...
Background Fire blight is a destructive disease of pome trees, caused by Erwinia amylovora, leading...
Smits THM, Jaenicke S, Rezzonico F, et al. Complete genome sequence of the fire blight pathogen Erwi...
Fire blight disease, caused by plant pathogenic bacteria Erwinia amylovora represents a global threa...
Comparative genomics of several strains of Erwinia amylovora, a plant pathogenic bacterium causal ag...
Fire blight, caused by Erwinia amylovora, was detected in Morocco in 2006 and has spread rapidly thr...
Since its initial appearance in the Mtskheta-Mtianeti region in 2016, fire blight has spread to seve...
Fireblight, a disease of many plant species in the Rosaceae family, is caused by Erwinia amylovora (...
Comparative genomics of several strains of Erwinia amylovora, a plant pathogenic bacterium causal ag...
Llop P, Cabrefiga J, Smits THM, et al. Erwinia amylovora novel plasmid pEI70: Complete sequence, bio...
Fire blight is the most devastating disease affecting pome fruit production globally. The pathogen i...
Fire blight is a destructive plant disease caused by Erwinia amylovora affecting pome fruit trees, a...
Fire blight is a destructive plant disease caused by Erwinia amylovora affecting pome fruit trees, ...
Erwinia amylovora causes a major disease of pome fruit trees worldwide, and is regulated as a quaran...
Clustered regularly interspaced short palindromic repeats (CRISPRs) comprise a family of short DNA r...
Erwinia amylovora is a Gram-negative bacterium that colonizes a wide variety of plant species causin...
Background Fire blight is a destructive disease of pome trees, caused by Erwinia amylovora, leading...
Smits THM, Jaenicke S, Rezzonico F, et al. Complete genome sequence of the fire blight pathogen Erwi...
Fire blight disease, caused by plant pathogenic bacteria Erwinia amylovora represents a global threa...
Comparative genomics of several strains of Erwinia amylovora, a plant pathogenic bacterium causal ag...
Fire blight, caused by Erwinia amylovora, was detected in Morocco in 2006 and has spread rapidly thr...
Since its initial appearance in the Mtskheta-Mtianeti region in 2016, fire blight has spread to seve...
Fireblight, a disease of many plant species in the Rosaceae family, is caused by Erwinia amylovora (...
Comparative genomics of several strains of Erwinia amylovora, a plant pathogenic bacterium causal ag...
Llop P, Cabrefiga J, Smits THM, et al. Erwinia amylovora novel plasmid pEI70: Complete sequence, bio...