[HTML][HTML] Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation

Y Chen, J Wang, N Yang, Z Wen, X Sun, Y Chai… - Nature …, 2018 - nature.com
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

[PDF][PDF] Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation

Y Chen, J Wang, N Yang, Z Wen, X Sun… - NATURE …, 2018 - researchgate.net
Results ZJU60 shows strong inhibitory activity against FHB. In the rhizosphere, increasing
evidence has shown that plants recruit protective bacteria, and enhance microbial activity to …

Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation

Y Chen, J Wang, N Yang, Z Wen, X Sun… - Nature …, 2018 - ideas.repec.org
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation.

CY Chen Yun, WJ Wang Jing, YN Yang Nan… - 2018 - cabidigitallibrary.org
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation.

Y Chen, J Wang, N Yang, Z Wen, X Sun… - Nature …, 2018 - europepmc.org
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation

Y Chen, J Wang, N Yang, Z Wen… - Nature …, 2018 - pubmed.ncbi.nlm.nih.gov
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

[HTML][HTML] Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation

Y Chen, J Wang, N Yang, Z Wen, X Sun… - Nature …, 2018 - ncbi.nlm.nih.gov
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation

Y Chen, J Wang, N Yang, Z Wen, X Sun… - Nature …, 2018 - econpapers.repec.org
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation

Y Chen, J Wang, N Yang, Z Wen, X Sun… - Nature …, 2018 - ui.adsabs.harvard.edu
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …

Wheat microbiome bacteria can reduce virulence of a plant pathogenic fungus by altering histone acetylation.

Y Chen, J Wang, N Yang, Z Wen, X Sun… - Nature …, 2018 - search.ebscohost.com
Interactions between bacteria and fungi have great environmental, medical, and agricultural
importance, but the molecular mechanisms are largely unknown. Here, we study the …