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Nieves Medina

Showing results (1-10 of 25) with videos related to

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Sensors (Basel, Switzerland)|October 8, 2014
Force sensor characterization under sinusoidal excitationsNieves Medina, Jesús de Vicente
Physiologia Plantarum|September 26, 2025
Proteomic Analysis Infers Optimized ATP-Production in Guard Cell MitochondriaNoah Ditz, Markus Niehaus, Nieves Medina Escobar, et al.
The Plant Cell|July 3, 2003
High-throughput viral expression of cDNA-green fluorescent protein fusions reveals novel subcellular addresses and identifies unique proteins that interact with plasmodesmataNieves Medina Escobar, Sophie Haupt, Graham Thow, et al.
Nature Communications|September 10, 2022
Enzymes and cellular interplay required for flux of fixed nitrogen to ureides in bean nodulesLuisa Voß, Katharina J Heinemann, Marco Herde, et al.
Journal of Proteomics|April 3, 2013
Proteomic analysis of strawberry achenes reveals active synthesis and recycling of L-ascorbic acidIrene Aragüez, Eduardo Cruz-Rus, Miguel Ángel Botella, et al.
Journal of Experimental Botany|July 19, 2003
Identification of a strawberry gene encoding a non-specific lipid transfer protein that responds to ABA, wounding and cold stressElena-María Yubero-Serrano, Enriqueta Moyano, Nieves Medina-Escobar, et al.
The Plant Cell|July 24, 2014
Uric acid accumulation in an Arabidopsis urate oxidase mutant impairs seedling establishment by blocking peroxisome maintenanceOliver K Hauck, Jana Scharnberg, Nieves Medina Escobar, et al.
Molecular Plant|December 9, 2009
The strawberry fruit Fra a allergen functions in flavonoid biosynthesisCristina Muñoz, Thomas Hoffmann, Nieves Medina Escobar, et al.
Plant Physiology|January 17, 2025
The vacuolar phosphatases purple acid phosphatase 26 and haloacid dehalogenase IIA2.1 hydrolyze 5'-, 3'-, and 2'-nucleotides derived from RNA degradationNabila Firdoos, Lukas Krumwiede, Nieves Medina-Escobar, et al.
Plant Physiology|August 14, 2013
The ureide-degrading reactions of purine ring catabolism employ three amidohydrolases and one aminohydrolase in Arabidopsis, soybean, and riceAndrea K Werner, Nieves Medina-Escobar, Monika Zulawski, et al.
Pageof 3

Showing results (1-10 of 25) with videos related to

Sort By:
Pageof 3
Sensors (Basel, Switzerland)|October 8, 2014
Force sensor characterization under sinusoidal excitationsNieves Medina, Jesús de Vicente
Physiologia Plantarum|September 26, 2025
Proteomic Analysis Infers Optimized ATP-Production in Guard Cell MitochondriaNoah Ditz, Markus Niehaus, Nieves Medina Escobar, et al.
The Plant Cell|July 3, 2003
High-throughput viral expression of cDNA-green fluorescent protein fusions reveals novel subcellular addresses and identifies unique proteins that interact with plasmodesmataNieves Medina Escobar, Sophie Haupt, Graham Thow, et al.
Nature Communications|September 10, 2022
Enzymes and cellular interplay required for flux of fixed nitrogen to ureides in bean nodulesLuisa Voß, Katharina J Heinemann, Marco Herde, et al.
Journal of Proteomics|April 3, 2013
Proteomic analysis of strawberry achenes reveals active synthesis and recycling of L-ascorbic acidIrene Aragüez, Eduardo Cruz-Rus, Miguel Ángel Botella, et al.
Journal of Experimental Botany|July 19, 2003
Identification of a strawberry gene encoding a non-specific lipid transfer protein that responds to ABA, wounding and cold stressElena-María Yubero-Serrano, Enriqueta Moyano, Nieves Medina-Escobar, et al.
The Plant Cell|July 24, 2014
Uric acid accumulation in an Arabidopsis urate oxidase mutant impairs seedling establishment by blocking peroxisome maintenanceOliver K Hauck, Jana Scharnberg, Nieves Medina Escobar, et al.
Molecular Plant|December 9, 2009
The strawberry fruit Fra a allergen functions in flavonoid biosynthesisCristina Muñoz, Thomas Hoffmann, Nieves Medina Escobar, et al.
Plant Physiology|January 17, 2025
The vacuolar phosphatases purple acid phosphatase 26 and haloacid dehalogenase IIA2.1 hydrolyze 5'-, 3'-, and 2'-nucleotides derived from RNA degradationNabila Firdoos, Lukas Krumwiede, Nieves Medina-Escobar, et al.
Plant Physiology|August 14, 2013
The ureide-degrading reactions of purine ring catabolism employ three amidohydrolases and one aminohydrolase in Arabidopsis, soybean, and riceAndrea K Werner, Nieves Medina-Escobar, Monika Zulawski, et al.
Pageof 3