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Molecular mechanisms of adaptation to host and environment

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IDTitleSection/TopicAuthorsKeywords
77GATA-dependent glutaminolysis drives appressorium formation by the blast fungus Magnaporthe oryzae
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Molecular mechanisms of adaptation to host and environmentMarroquin-Guzman, Margarita R.; Wilson, Richard.Magnaporthe oryzae
GATA factor
Nitrogen metabolism
Appressoria
61Genetic Regulation of Oxalate Metabolism in Sclerotinia sclerotiorum
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Molecular mechanisms of adaptation to host and environmentLiang, Xiaofei; Liberti, Daniele; Li, Moyi; Kim, Young-Tae; Hutchens, Andrew; Wilson, Ron; Rollins, Jeffrey.Oxalic acid
Sclerotinia sclerotiorum
Pathogenicity
Metabolism
166Transcriptional regulation of NADP-GDH in Aspergillus nidulans: A key step in the nitrogen assimilation pathway
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Molecular mechanisms of adaptation to host and environmentDownes, Damien; Davis, Meryl; Wong, Koon Ho; Hynes, Michael; Todd, Richard.Nitrogen metabolism
Leucine biosynthesis
Zn(II)2Cys6
Zinc finger
Transcriptional regulation
68Two distinct mechanisms of Magnaporthe oryzae effector secretion for biotrophic invasion of rice
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Molecular mechanisms of adaptation to host and environmentGIRALDO, MARTHA C.; Dagdas, Yasin; Gupta, Yogesh; Mentlak, Thomas; Yi, Mihwa; Martinez-Rocha, Ana Lilia; Saitoh, Hiromasa; Terauchi, Ryohei; Talbot, Nicholas J.; Valent, Barbara.Effector
Secretion mechanisms
fungal plant pathogen
180UBL1 of Fusarium verticillioides links the N-end rule pathway to extracellular sensing and plant pathogenesis
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Molecular mechanisms of adaptation to host and environmentRidenour, John; Smith, Jonathon; Hirsch, Robert; Horevaj, Peter; Kim, Hun; Sharma, Sandeep; Bluhm, Burton.fumonisin
maize ear rot
amylolysis
E3 ubiquitin ligase
N-end rule pathway

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