Published in Mol Plant Microbe Interact on July 01, 2010
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Fusarium graminearum exploits ethylene signalling to colonize dicotyledonous and monocotyledonous plants. New Phytol (2009) 0.98
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Development of a lesion-mimic phenotype in a transgenic wheat line overexpressing genes for pathogenesis-related (PR) proteins is dependent on salicylic acid concentration. Mol Plant Microbe Interact (2003) 0.82
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An abietane diterpenoid is a potent activator of systemic acquired resistance. Plant J (2012) 1.21
Root-derived oxylipins promote green peach aphid performance on Arabidopsis foliage. Plant Cell (2012) 1.14
Arabidopsis sfd mutants affect plastidic lipid composition and suppress dwarfing, cell death, and the enhanced disease resistance phenotypes resulting from the deficiency of a fatty acid desaturase. Plant Cell (2003) 1.13
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Direct infusion mass spectrometry of oxylipin-containing Arabidopsis membrane lipids reveals varied patterns in different stress responses. Plant Physiol (2011) 1.00
TREHALOSE PHOSPHATE SYNTHASE11-dependent trehalose metabolism promotes Arabidopsis thaliana defense against the phloem-feeding insect Myzus persicae. Plant J (2011) 0.99
Discrimination of Arabidopsis PAD4 activities in defense against green peach aphid and pathogens. Plant Physiol (2012) 0.97
Hessian fly (Mayetiola destructor) attack causes a dramatic shift in carbon and nitrogen metabolism in wheat. Mol Plant Microbe Interact (2008) 0.96
Ethylene and jasmonic acid signaling affect the NPR1-independent expression of defense genes without impacting resistance to Pseudomonas syringae and Peronospora parasitica in the Arabidopsis ssi1 mutant. Mol Plant Microbe Interact (2003) 0.95
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Arabidopsis ssi2-conferred susceptibility to Botrytis cinerea is dependent on EDS5 and PAD4. Mol Plant Microbe Interact (2005) 0.94
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Salicylic acid regulates basal resistance to Fusarium head blight in wheat. Mol Plant Microbe Interact (2012) 0.93
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Arabidopsis thaliana FLOWERING LOCUS D is required for systemic acquired resistance. Mol Plant Microbe Interact (2013) 0.83
Enhanced resistance to Cucumber mosaic virus in the Arabidopsis thaliana ssi2 mutant is mediated via an SA-independent mechanism. Mol Plant Microbe Interact (2004) 0.83
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High level expression of a virus resistance gene, RCY1, confers extreme resistance to Cucumber mosaic virus in Arabidopsis thaliana. Mol Plant Microbe Interact (2008) 0.79
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