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The New Phytologist|June 29, 2011
BcSpl1, a cerato-platanin family protein, contributes to Botrytis cinerea virulence and elicits the hypersensitive response in the hostMarcos Frías, Celedonio González, Nélida BritoBMC Microbiology|September 22, 2012
High abundance of Serine/Threonine-rich regions predicted to be hyper-O-glycosylated in the secretory proteins coded by eight fungal genomesMario González, Nélida Brito, Celedonio GonzálezBMC Microbiology|October 13, 2014
Identification of glycoproteins secreted by wild-type Botrytis cinerea and by protein O-mannosyltransferase mutantsMario González, Nélida Brito, Celedonio GonzálezBMC Plant Biology|February 27, 2010
The Botrytis cinerea xylanase Xyn11A contributes to virulence with its necrotizing activity, not with its catalytic activityJudith Noda, Nélida Brito, Celedonio GonzálezThe New Phytologist|May 9, 2017
The Botrytis cinerea elicitor protein BcIEB1 interacts with the tobacco PR5-family protein osmotin and protects the fungus against its antifungal activityMario González, Nélida Brito, Celedonio GonzálezMolecular Plant Pathology|October 18, 2012
The Botrytis cinerea cerato-platanin BcSpl1 is a potent inducer of systemic acquired resistance (SAR) in tobacco and generates a wave of salicylic acid expanding from the site of applicationMarcos Frías, Nélida Brito, Celedonio GonzálezMolecular Plant-Microbe Interactions : MPMI|January 13, 2006
The endo-beta-1,4-xylanase xyn11A is required for virulence in Botrytis cinereaNélida Brito, José Juan Espino, Celedonio GonzálezPlant Science : an International Journal of Experimental Plant Biology|July 27, 2016
BcIEB1, a Botrytis cinerea secreted protein, elicits a defense response in plantsMarcos Frías, Mario González, Celedonio González, et al.Frontiers in Plant Science|May 7, 2019
A 25-Residue Peptide From Botrytis cinerea Xylanase BcXyn11A Elicits Plant DefensesMarcos Frías, Mario González, Celedonio González, et al.Molecular Plant Pathology|November 2, 2013
The phytotoxic activity of the cerato-platanin BcSpl1 resides in a two-peptide motif on the protein surfaceMarcos Frías, Nélida Brito, Mario González, et al.Pageof 3