The hemibiotrophic fungus Zymoseptoria tritici causes Septoria tritici blotch disease of wheat (Triticum aestivum). Pathogen reproduction on wheat occurs without cell penetration, suggesting that dynamic and intimate intercellular communication occurs between fungus and plant throughout the disease cycle. We used deep RNA sequencing and metabolomics to investigate the physiology of plant and pathogen throughout an asexual reproductive cycle of Z. tritici on wheat leaves. Over 3,000 pathogen genes, more than 7,000 wheat genes, and more than 300 metabolites were differentially regulated. Intriguingly, individual fungal chromosomes contributed unequally to the overall gene expression changes. Early transcriptional down-regulation of putative h...
We examine the contribution of next generation sequencing (NGS) to our understanding of the interact...
Abstract Background Fungal pathogens of plants produce diverse repertoires of secondary metabolites,...
Emerging pathogens need to adapt swiftly to exploit new hosts for growth and reproduction. Host shif...
The hemibiotrophic fungus Zymoseptoria tritici causes Septoria tritici blotch disease of wheat (Trit...
<div><p>The disease septoria leaf blotch of wheat, caused by fungal pathogen <i>Septoria tritici</i>...
The disease septoria leaf blotch of wheat, caused by fungal pathogen Septoria tritici, is of worldwi...
The fungus Zymoseptoria tritici causes septoria tritici blotch (STB) on wheat, an important disease ...
The fungal pathogen Zymoseptoria tritici causes the most economically important disease of wheat in ...
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...
Yield losses caused by fungal pathogens represent a major threat to global food production. One of t...
We examine the contribution of next generation sequencing (NGS) to our understanding of the interact...
Zymoseptoria tritici causes Septoria tritici blotch (STB) on wheat. The disease interaction is chara...
Many filamentous plant pathogens exhibit high levels of genomic variability, yet the impact of this ...
The fungal wheat pathogen Zymoseptoria tritici is the causal agent of Septoria tritici Blotch (STB),...
We examine the contribution of next generation sequencing (NGS) to our understanding of the interact...
Abstract Background Fungal pathogens of plants produce diverse repertoires of secondary metabolites,...
Emerging pathogens need to adapt swiftly to exploit new hosts for growth and reproduction. Host shif...
The hemibiotrophic fungus Zymoseptoria tritici causes Septoria tritici blotch disease of wheat (Trit...
<div><p>The disease septoria leaf blotch of wheat, caused by fungal pathogen <i>Septoria tritici</i>...
The disease septoria leaf blotch of wheat, caused by fungal pathogen Septoria tritici, is of worldwi...
The fungus Zymoseptoria tritici causes septoria tritici blotch (STB) on wheat, an important disease ...
The fungal pathogen Zymoseptoria tritici causes the most economically important disease of wheat in ...
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...
Yield losses caused by fungal pathogens represent a major threat to global food production. One of t...
We examine the contribution of next generation sequencing (NGS) to our understanding of the interact...
Zymoseptoria tritici causes Septoria tritici blotch (STB) on wheat. The disease interaction is chara...
Many filamentous plant pathogens exhibit high levels of genomic variability, yet the impact of this ...
The fungal wheat pathogen Zymoseptoria tritici is the causal agent of Septoria tritici Blotch (STB),...
We examine the contribution of next generation sequencing (NGS) to our understanding of the interact...
Abstract Background Fungal pathogens of plants produce diverse repertoires of secondary metabolites,...
Emerging pathogens need to adapt swiftly to exploit new hosts for growth and reproduction. Host shif...