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Magnaporthe oryzae threatens global rice production, but master regulators coordinating immunity, metabolism, and growth remain elusive. Here, we identify OsWRKY39 as a central hub integrating blast resistance, phenylpropanoid metabolism, hormone homeostasis, and growth-defense trade-offs, distin...

2025-12-05 | MTBLS13460 | MetaboLights
Mycelium from the rice blast fungus Magnaporthe oryzae was grown in both rich medium and under nutrient limiting conditions. Genes were identified that were more highly expressed in one condition as compared to the other. Samples were taken from mycelium grown in both complete medium and in glucose ...
ORGANISM(S): Magnaporthe oryzae 
This SuperSeries is composed of the following subset Series: GSE8517: Magnaporthe oryzae gene expression during biotrophic invasion of rice using version 2 of the Agilent Magnaporthe grisea Array (G4137B). GSE8518: Rice gene expression during biotrophic invasion by the rice blast fungus Magnaporthe...
ORGANISM(S): Magnaporthe oryzae 
Mycelium from the rice blast fungus Magnaporthe oryzae was grown in both rich medium and under nutrient limiting conditions. Genes were identified that were more highly expressed in one condition as compared to the other. Samples were taken from mycelium grown in both complete medium and in glucose...
ORGANISM(S): Magnaporthe oryzae 
Investigation of rapid evolutionary adaptation events of Magnaporthe oryzae of HOG1 deficient mutants. Osmosensitive mutants adapt and re-gain osmoregulatory capabilities. Proteomics and phosphoproteomics were analyzed to shed light on the underlying processes.
ORGANISM(S): Cellular Organisms 
The rice-blast fungus Magnaporthe oryzae is disseminated using a three-celled spore or conidium. Upon landing on the surface of a rice leaf, the conidium germinates and forms a specialised structure for entry into the host plant - the appressorium. In this study we have followed gene expression thou...
ORGANISM(S): Magnaporthe oryzae 
The rice pathogen, Magnaporthe oryzae, undergoes a complex developmental process leading to formation of an appressorium prior to plant infection. In an effort to better understand phosphoregulation during appressorium development, a mass spectrometry-based study was undertaken. Phosphosites were id...
ORGANISM(S): Magnaporthe oryzae (Rice blast fungus) (Pyricularia oryzae) 
2015-05-13 | PXD001389 | Pride
Ergosterols are essential components of fungal plasma membranes. Inhibitors targeting ergosterol biosynthesis (ERG) genes are critical for controlling fungal pathogens, including Magnaporthe oryzae, the fungus that causes rice blast. In this study we show that the Trm6/Trm61 complex catalyzes dynami...
ORGANISM(S): Pyricularia Oryzae 70-15 
The hemibiotrophic fungus Magnaporthe oryzae produces specialized biotrophic invasive hyphae (IH) that alter membrane structure and defense responses in invaded rice cells. IH successively invade live neighbor cells, apparently through plasmodesmata. Understanding fungal and rice genes that contri...
ORGANISM(S): Oryza sativa 
Concomitant sRNA and mRNAseq was carried out to elucidate the reprogramming occurring during Magnaporthe oryzae - Brachypodium distachyon interaction in three different setups: biotrophic stage of leaf infection (Leaf 2 DPI), necrotrophic stage of leaf infection (Leaf 4 DPI) and finally root infect...
ORGANISM(S): Pyricularia oryzae 70-15 
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