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Loredana Maria Scalschi
Loredana Maria Scalschi
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Title
Cited by
Cited by
Year
Silencing of OPR3 in tomato reveals the role of OPDA in callose deposition during the activation of defense responses against Botrytis cinerea
L Scalschi, M Sanmartín, G Camañes, P Troncho, JJ Sánchez‐Serrano, ...
The Plant Journal 81 (2), 304-315, 2015
1002015
Hexanoic acid is a resistance inducer that protects tomato plants against Pseudomonas syringae by priming the jasmonic acid and salicylic acid pathways
L Scalschi, B Vicedo, G Camañes, E Fernandez‐Crespo, L Lapeña, ...
Molecular Plant Pathology 14 (4), 342-355, 2013
862013
The apoplast: a key player in plant survival
A Farvardin, AI González-Hernández, E Llorens, P García-Agustín, ...
Antioxidants 9 (7), 604, 2020
832020
An untargeted global metabolomic analysis reveals the biochemical changes underlying basal resistance and priming in Solanum lycopersicum, and identifies 1‐methyltryptophan as a …
G Camañes, L Scalschi, B Vicedo, C González‐Bosch, P García‐Agustín
The Plant Journal 84 (1), 125-139, 2015
832015
NH4+ protects tomato plants against Pseudomonas syringae by activation of systemic acquired acclimation
E Fernández-Crespo, L Scalschi, E Llorens, P García-Agustín, ...
Journal of Experimental Botany 66 (21), 6777-6790, 2015
722015
The Botrytis cinerea Crh1 transglycosylase is a cytoplasmic effector triggering plant cell death and defense response
K Bi, L Scalschi, N Jaiswal, T Mengiste, R Fried, AB Sanz, J Arroyo, W Zhu, ...
Nature Communications 12 (1), 2166, 2021
482021
Putrescine: A key metabolite involved in plant development, tolerance and resistance responses to stress
AI González-Hernández, L Scalschi, B Vicedo, EL Marcos-Barbero, ...
International journal of molecular sciences 23 (6), 2971, 2022
472022
Priming mediated stress and cross-stress tolerance in plants: Concepts and opportunities
E Llorens, AI González-Hernández, L Scalschi, E Fernández-Crespo, ...
Priming-mediated stress and cross-stress tolerance in crop plants, 1-20, 2020
392020
Ammonium mediated changes in carbon and nitrogen metabolisms induce resistance against Pseudomonas syringae in tomato plants
AI González-Hernández, E Fernández-Crespo, L Scalschi, MR Hajirezaei, ...
Journal of plant physiology 239, 28-37, 2019
292019
Resistance Inducers Modulate Pseudomonas syringae pv. Tomato Strain DC3000 Response in Tomato Plants
L Scalschi, G Camanes, E Llorens, E Fernandez-Crespo, MM López, ...
PLoS One 9 (9), e106429, 2014
272014
NH4 + induces antioxidant cellular machinery and provides resistance to salt stress in citrus plants
E Fernández-Crespo, R Gómez-Pastor, L Scalschi, E Llorens, ...
Trees 28, 1693-1704, 2014
262014
Role of Jasmonic Acid Pathway in Tomato Plant-Pseudomonas syringae Interaction
L Scalschi, E Llorens, P García-Agustín, B Vicedo
Plants 9 (2), 136, 2020
192020
Hexanoic acid provides long-lasting protection in ‘Fortune’mandarin against Alternaria alternata
E Llorens, L Scalschi, E Fernández-Crespo, L Lapena, P García-Agustín
Physiological and Molecular Plant Pathology 91, 38-45, 2015
172015
ZnO/Ag nanocomposites with enhanced antimicrobial activity
JG Cuadra, L Scalschi, B Vicedo, M Guc, V Izquierdo-Roca, S Porcar, ...
Applied Sciences 12 (10), 5023, 2022
152022
Putrescine biosynthetic pathways modulate root growth differently in tomato seedlings grown under different N sources
AI González-Hernández, L Scalschi, P Troncho, P García-Agustín, ...
Journal of Plant Physiology 268, 153560, 2022
112022
The Histone Marks Signature in Exonic and Intronic Regions Is Relevant in Early Response of Tomato Genes to Botrytis cinerea and in miRNA Regulation
Ó Crespo-Salvador, L Sánchez-Giménez, MJ López-Galiano, ...
Plants 9 (3), 300, 2020
102020
1-Methyltryptophan Modifies Apoplast Content in Tomato Plants Improving Resistance Against Pseudomonas syringae
L Scalschi, E Llorens, AI González-Hernández, M Valcárcel, J Gamir, ...
Frontiers in Microbiology 9, 2056, 2018
102018
Quantification of callose deposition in plant leaves
L Scalschi, E Llorens, G Camañes, V Pastor, E Fernández-Crespo, ...
Bio-protocol 5 (19), e1610-e1610, 2015
102015
Tomato root development and N assimilation depend on C and ABA content under different N sources
AI González-Hernández, L Scalschi, P García-Agustín, G Camañes
Plant physiology and biochemistry 148, 368-378, 2020
82020
Jasmonic acid pathway is required in the resistance induced by Acremonium sclerotigenum in tomato against Pseudomonas syringae
E Llorens, L Scalschi, O Sharon, B Vicedo, A Sharon, P García-Agustín
Plant Science 318, 111210, 2022
72022
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