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Plant, Cell & Environment|August 26, 2009
Small heat-shock proteins and leaf cooling capacity account for the unusual heat tolerance of the central spike leaves in Agave tequilana var. WeberRosario Luján, Fernando Lledías, Luz María Martínez, et al.
The Protein Journal|October 21, 2017
Erratum to: A Rapid and Reliable Method for Total Protein Extraction from Succulent Plants for Proteomic AnalysisFernando Lledías, Felipe Hernández, Viridiana Rivas, et al.
The Protein Journal|May 13, 2017
A Rapid and Reliable Method for Total Protein Extraction from Succulent Plants for Proteomic AnalysisFernando Lledías, Felipe Hernández, Viridiana Rivas, et al.
Plant Science : an International Journal of Experimental Plant Biology|December 11, 2017
Synergy between root hydrotropic response and root biomass in maize (Zea mays L.) enhances drought avoidanceDelfeena Eapen, Jesús Martínez-Guadarrama, Oralia Hernández-Bruno, et al.
Journal of Experimental Botany|March 24, 2012
An altered hydrotropic response (ahr1) mutant of Arabidopsis recovers root hydrotropism with cytokininManuel Saucedo, Georgina Ponce, María Eugenia Campos, et al.
Plant Physiology|February 15, 2003
A no hydrotropic response root mutant that responds positively to gravitropism in ArabidopsisDelfeena Eapen, María Luisa Barroso, María Eugenia Campos, et al.
The Plant Cell|July 18, 2002
Maize HSP101 plays important roles in both induced and basal thermotolerance and primary root growthJorge Nieto-Sotelo, Luz María Martínez, Georgina Ponce, et al.
Frontiers in Plant Science|June 13, 2020
Mayahuelin, a Type I Ribosome Inactivating Protein: Characterization, Evolution, and Utilization in Phylogenetic Analyses of <i>Agave</i>Fernando Lledías, Jesús Gutiérrez, Aída Martínez-Hernández, et al.
Journal of Plant Physiology|December 3, 2016
Robust root growth in altered hydrotropic response1 (ahr1) mutant of Arabidopsis is maintained by high rate of cell production at low water potential gradientAmed Salazar-Blas, Laura Noriega-Calixto, María E Campos, et al.
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