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Maggie Levy

Showing results (11-20 of 25) with videos related to

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Plants (Basel, Switzerland)|January 27, 2021
Secretion-Based Modes of Action of Biocontrol Agents with a Focus on <i>Pseudozyma aphidis</i>Dhruv Aditya Srivastava, Raviv Harris, Gilli Breuer, et al.
The Plant Journal : for Cell and Molecular Biology|June 18, 2005
Arabidopsis IQD1, a novel calmodulin-binding nuclear protein, stimulates glucosinolate accumulation and plant defenseMaggie Levy, Qiaomei Wang, Roy Kaspi, et al.
Plant Disease|February 1, 2019
Pseudozyma aphidis Induces Salicylic-Acid-Independent Resistance to Clavibacter michiganensis in Tomato PlantsOmer Barda, Or Shalev, Shanee Alster, et al.
Molecular Plant Pathology|December 12, 2018
Pseudozyma aphidis activates reactive oxygen species production, programmed cell death and morphological alterations in the necrotrophic fungus Botrytis cinereaClaudia E Calderón, Neta Rotem, Raviv Harris, et al.
Plant Molecular Biology|August 15, 2013
The transcription factor SlSHINE3 modulates defense responses in tomato plantsKobi Buxdorf, Gilad Rubinsky, Omer Barda, et al.
Ecology and Evolution|January 27, 2016
Intraspecific variation in defense against a generalist lepidopteran herbivore in populations of Eruca sativa (Mill.)Ariel Ogran, Netanel Landau, Nir Hanin, et al.
Nature Communications|June 30, 2019
MFS transporter from Botrytis cinerea provides tolerance to glucosinolate-breakdown products and is required for pathogenicityDavid Vela-Corcía, Dhruv Aditya Srivastava, Avis Dafa-Berger, et al.
Plos One|August 8, 2013
Overexpression of AtSHN1/WIN1 provokes unique defense responsesDikla Sela, Kobi Buxdorf, Jian Xin Shi, et al.
Frontiers in Plant Science|March 28, 2015
Biological control of the cucurbit powdery mildew pathogen Podosphaera xanthii by means of the epiphytic fungus Pseudozyma aphidis and parasitism as a mode of actionAviva Gafni, Claudia E Calderon, Raviv Harris, et al.
BMC Research Notes|January 21, 2012
LogSpin: a simple, economical and fast method for RNA isolation from infected or healthy plants and other eukaryotic tissuesHila Yaffe, Kobi Buxdorf, Illil Shapira, et al.
Pageof 3

Showing results (11-20 of 25) with videos related to

Sort By:
Pageof 3
Plants (Basel, Switzerland)|January 27, 2021
Secretion-Based Modes of Action of Biocontrol Agents with a Focus on <i>Pseudozyma aphidis</i>Dhruv Aditya Srivastava, Raviv Harris, Gilli Breuer, et al.
The Plant Journal : for Cell and Molecular Biology|June 18, 2005
Arabidopsis IQD1, a novel calmodulin-binding nuclear protein, stimulates glucosinolate accumulation and plant defenseMaggie Levy, Qiaomei Wang, Roy Kaspi, et al.
Plant Disease|February 1, 2019
Pseudozyma aphidis Induces Salicylic-Acid-Independent Resistance to Clavibacter michiganensis in Tomato PlantsOmer Barda, Or Shalev, Shanee Alster, et al.
Molecular Plant Pathology|December 12, 2018
Pseudozyma aphidis activates reactive oxygen species production, programmed cell death and morphological alterations in the necrotrophic fungus Botrytis cinereaClaudia E Calderón, Neta Rotem, Raviv Harris, et al.
Plant Molecular Biology|August 15, 2013
The transcription factor SlSHINE3 modulates defense responses in tomato plantsKobi Buxdorf, Gilad Rubinsky, Omer Barda, et al.
Ecology and Evolution|January 27, 2016
Intraspecific variation in defense against a generalist lepidopteran herbivore in populations of Eruca sativa (Mill.)Ariel Ogran, Netanel Landau, Nir Hanin, et al.
Nature Communications|June 30, 2019
MFS transporter from Botrytis cinerea provides tolerance to glucosinolate-breakdown products and is required for pathogenicityDavid Vela-Corcía, Dhruv Aditya Srivastava, Avis Dafa-Berger, et al.
Plos One|August 8, 2013
Overexpression of AtSHN1/WIN1 provokes unique defense responsesDikla Sela, Kobi Buxdorf, Jian Xin Shi, et al.
Frontiers in Plant Science|March 28, 2015
Biological control of the cucurbit powdery mildew pathogen Podosphaera xanthii by means of the epiphytic fungus Pseudozyma aphidis and parasitism as a mode of actionAviva Gafni, Claudia E Calderon, Raviv Harris, et al.
BMC Research Notes|January 21, 2012
LogSpin: a simple, economical and fast method for RNA isolation from infected or healthy plants and other eukaryotic tissuesHila Yaffe, Kobi Buxdorf, Illil Shapira, et al.
Pageof 3