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Gemma Camañes

Showing results (1-10 of 39) with videos related to

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Journal of Plant Physiology|June 23, 2012
Ammonium enhances resistance to salinity stress in citrus plantsEmma Fernández-Crespo, Gemma Camañes, Pilar García-Agustín
Frontiers in Plant Science|May 6, 2016
Priming by Hexanoic Acid Induce Activation of Mevalonic and Linolenic Pathways and Promotes the Emission of Plant VolatilesEugenio Llorens, Gemma Camañes, Leonor Lapeña, et al.
Plants (Basel, Switzerland)|July 9, 2020
Exogenous Carbon Compounds Modulate Tomato Root DevelopmentAna Isabel González-Hernández, Loredana Scalschi, Pilar García-Agustín, et al.
Environmental Microbiology|January 15, 2019
Endophytes from wild cereals protect wheat plants from drought by alteration of physiological responses of the plants to water stressEugenio Llorens, Or Sharon, Gemma Camañes, et al.
Plant Physiology and Biochemistry : PPB|February 7, 2020
Tomato root development and N assimilation depend on C and ABA content under different N sourcesAna Isabel González-Hernández, Loredana Scalschi, Pilar García-Agustín, et al.
Plant Signaling & Behavior|June 12, 2009
Regulation of nitrate transport in citrus rootstocks depending on nitrogen availabilityMiguel Cerezo, Gemma Camañes, Víctor Flors, et al.
Journal of Experimental Botany|August 7, 2015
NH4+ protects tomato plants against Pseudomonas syringae by activation of systemic acquired acclimationEmma Fernández-Crespo, Loredana Scalschi, Eugenio Llorens, et al.
The Plant Journal : for Cell and Molecular Biology|August 14, 2015
An untargeted global metabolomic analysis reveals the biochemical changes underlying basal resistance and priming in Solanum lycopersicum, and identifies 1-methyltryptophan as a metabolite involved in plant responses to Botrytis cinerea and Pseudomonas syringaeGemma Camañes, Loredana Scalschi, Begonya Vicedo, et al.
Plant Signaling & Behavior|May 15, 2012
A deletion in the nitrate high affinity transporter NRT2.1 alters metabolomic and transcriptomic responses to Pseudomonas syringaeGemma Camañes, Victoria Pastor, Miguel Cerezo, et al.
Journal of Plant Physiology|December 6, 2011
Reciprocal regulation between AtNRT2.1 and AtAMT1.1 expression and the kinetics of NH(4)(+) and NO(3)(-) influxesGemma Camañes, Elena Bellmunt, Javier García-Andrade, et al.
Pageof 4

Showing results (1-10 of 39) with videos related to

Sort By:
Pageof 4
Journal of Plant Physiology|June 23, 2012
Ammonium enhances resistance to salinity stress in citrus plantsEmma Fernández-Crespo, Gemma Camañes, Pilar García-Agustín
Frontiers in Plant Science|May 6, 2016
Priming by Hexanoic Acid Induce Activation of Mevalonic and Linolenic Pathways and Promotes the Emission of Plant VolatilesEugenio Llorens, Gemma Camañes, Leonor Lapeña, et al.
Plants (Basel, Switzerland)|July 9, 2020
Exogenous Carbon Compounds Modulate Tomato Root DevelopmentAna Isabel González-Hernández, Loredana Scalschi, Pilar García-Agustín, et al.
Environmental Microbiology|January 15, 2019
Endophytes from wild cereals protect wheat plants from drought by alteration of physiological responses of the plants to water stressEugenio Llorens, Or Sharon, Gemma Camañes, et al.
Plant Physiology and Biochemistry : PPB|February 7, 2020
Tomato root development and N assimilation depend on C and ABA content under different N sourcesAna Isabel González-Hernández, Loredana Scalschi, Pilar García-Agustín, et al.
Plant Signaling & Behavior|June 12, 2009
Regulation of nitrate transport in citrus rootstocks depending on nitrogen availabilityMiguel Cerezo, Gemma Camañes, Víctor Flors, et al.
Journal of Experimental Botany|August 7, 2015
NH4+ protects tomato plants against Pseudomonas syringae by activation of systemic acquired acclimationEmma Fernández-Crespo, Loredana Scalschi, Eugenio Llorens, et al.
The Plant Journal : for Cell and Molecular Biology|August 14, 2015
An untargeted global metabolomic analysis reveals the biochemical changes underlying basal resistance and priming in Solanum lycopersicum, and identifies 1-methyltryptophan as a metabolite involved in plant responses to Botrytis cinerea and Pseudomonas syringaeGemma Camañes, Loredana Scalschi, Begonya Vicedo, et al.
Plant Signaling & Behavior|May 15, 2012
A deletion in the nitrate high affinity transporter NRT2.1 alters metabolomic and transcriptomic responses to Pseudomonas syringaeGemma Camañes, Victoria Pastor, Miguel Cerezo, et al.
Journal of Plant Physiology|December 6, 2011
Reciprocal regulation between AtNRT2.1 and AtAMT1.1 expression and the kinetics of NH(4)(+) and NO(3)(-) influxesGemma Camañes, Elena Bellmunt, Javier García-Andrade, et al.
Pageof 4