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The Arabidopsis AtNPR1 inversely modulates defense responses against fungal, bacterial, or viral pathogens while conferring hypersensitivity to abiotic stresses in transgenic rice
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The Arabidopsis AtNPR1 inversely modulates defense responses against fungal, bacterial, or viral pathogens while conferring hypersensitivity to abiotic stresses in transgenic rice

Jordi Quilis, Gisela Peñas, Joaquima Messeguer, Christophe Brugidou et Blanca San Segundo
Molecular plant-microbe interactions, Vol.21(9), pp.1215-1231
01/09/2008
PMID: 18700826

Résumé

Arabidopsis Proteins - genetics Arabidopsis Proteins - physiology Blotting, Northern Droughts Erwinia - growth & development Fusarium - growth & development Gene Expression Regulation, Plant - drug effects Immunity, Innate - genetics Magnaporthe - growth & development Oryza - genetics Oryza - microbiology Oryza - virology Phylogeny Plant Diseases - genetics Plant Diseases - microbiology Plant Diseases - virology Plant Proteins - classification Plant Proteins - genetics Plant Viruses - growth & development Plants, Genetically Modified - genetics Plants, Genetically Modified - microbiology Plants, Genetically Modified - virology Reverse Transcriptase Polymerase Chain Reaction RNA Replicase - classification RNA Replicase - genetics Salicylic Acid - pharmacology Sodium Chloride - pharmacology

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