The fungal wheat pathogen Zymoseptoria tritici possesses a large complement of accessory chromosomes showing presence/absence polymorphism among isolates. These chromosomes encode hundreds of genes; however, their functional role and why the chromosomes have been maintained over long evolutionary times are so far not known. In this study, we addressed the functional relevance of eight accessory chromosomes in reference isolate IPO323. We induced chromosome losses by inhibiting the β-tubulin assembly during mitosis using carbendazim and generated several independent isogenic strains, each lacking one of the accessory chromosomes. We confirmed chromosome losses by electrophoretic karyotyping and whole-genome sequencing. To assess the importan...
The wheat pathogen Zymoseptoria tritici possesses a large number of accessory chromosomes that may b...
Fungal plant pathogens rapidly evolve virulence on resistant hosts through mutations in genes encodi...
<div><p>Chromosomal rearrangements are a major driver of eukaryotic genome evolution, affecting spec...
The fungal wheat pathogen Zymoseptoria tritici possesses a large complement of accessory chromosomes...
ABSTRACT The fungal wheat pathogen Zymoseptoria tritici possesses a large complement of accessory ch...
Background:Antagonistic co-evolution can drive rapid adaptation in pathogens and shape genome archit...
Background:Antagonistic co-evolution can drive rapid adaptation in pathogens and shape genome archit...
Meiosis is one of the most conserved molecular processes in eukaryotes. The fidelity of pairing and ...
Meiosis is one of the most conserved molecular processes in eukaryotes. The fidelity of pairing and ...
The genome of the fungal wheat pathogen Zymoseptoria tritici consists of thirteen essential chromoso...
The genome of the fungal wheat pathogen Zymoseptoria tritici consists of thirteen essential chromoso...
AbstractThe wheat pathogen Zymoseptoria tritici possesses a large number of accessory chromosomes th...
Chromosomal rearrangements are a major driver of eukaryotic genome evolution, affecting speciation, ...
Host specialization by pathogens requires a repertoire of virulence factors as well as fine-tuned re...
Host specialization by pathogens requires a repertoire of virulence factors as well as fine-tuned re...
The wheat pathogen Zymoseptoria tritici possesses a large number of accessory chromosomes that may b...
Fungal plant pathogens rapidly evolve virulence on resistant hosts through mutations in genes encodi...
<div><p>Chromosomal rearrangements are a major driver of eukaryotic genome evolution, affecting spec...
The fungal wheat pathogen Zymoseptoria tritici possesses a large complement of accessory chromosomes...
ABSTRACT The fungal wheat pathogen Zymoseptoria tritici possesses a large complement of accessory ch...
Background:Antagonistic co-evolution can drive rapid adaptation in pathogens and shape genome archit...
Background:Antagonistic co-evolution can drive rapid adaptation in pathogens and shape genome archit...
Meiosis is one of the most conserved molecular processes in eukaryotes. The fidelity of pairing and ...
Meiosis is one of the most conserved molecular processes in eukaryotes. The fidelity of pairing and ...
The genome of the fungal wheat pathogen Zymoseptoria tritici consists of thirteen essential chromoso...
The genome of the fungal wheat pathogen Zymoseptoria tritici consists of thirteen essential chromoso...
AbstractThe wheat pathogen Zymoseptoria tritici possesses a large number of accessory chromosomes th...
Chromosomal rearrangements are a major driver of eukaryotic genome evolution, affecting speciation, ...
Host specialization by pathogens requires a repertoire of virulence factors as well as fine-tuned re...
Host specialization by pathogens requires a repertoire of virulence factors as well as fine-tuned re...
The wheat pathogen Zymoseptoria tritici possesses a large number of accessory chromosomes that may b...
Fungal plant pathogens rapidly evolve virulence on resistant hosts through mutations in genes encodi...
<div><p>Chromosomal rearrangements are a major driver of eukaryotic genome evolution, affecting spec...