Showing results (21-30 of 39) with videos related to
Sort By:
Pageof 4
Plant, Cell & Environment|March 5, 2010
Exploring the soluble proteome of Tobacco Bright Yellow-2 cells at the switch towards different cell fates in response to heat shocksMilena Marsoni, Carlo Cantara, Maria Concetta De Pinto, et al.The Plant Journal : for Cell and Molecular Biology|December 17, 2003
Overexpression of the rice Osmyb4 gene increases chilling and freezing tolerance of Arabidopsis thaliana plantsCandida Vannini, Franca Locatelli, Marcella Bracale, et al.Proteomics|June 2, 2023
Quantitative phosphoproteomics reveals novel roles of cAMP in plantsGuido Domingo, Milena Marsoni, Luca Chiodaroli, et al.Aquatic Toxicology (Amsterdam, Netherlands)|March 5, 2011
Physiological and molecular effects associated with palladium treatment in Pseudokirchneriella subcapitataCandida Vannini, Guido Domingo, Milena Marsoni, et al.Plant Cell Reports|May 7, 2024
The cAMP-dependent phosphorylation footprint in response to heat stressGuido Domingo, Milena Marsoni, Eleonora Davide, et al.Plant, Cell & Environment|March 6, 2021
Proteomic analysis reveals how pairing of a Mycorrhizal fungus with plant growth-promoting bacteria modulates growth and defense in wheatCandida Vannini, Guido Domingo, Valentina Fiorilli, et al.Journal of Plant Physiology|August 3, 2012
Asg1 is a stress-inducible gene which increases stomatal resistance in salt stressed potatoGiorgia Batelli, Immacolata Massarelli, Michael Van Oosten, et al.Plant, Cell & Environment|September 3, 2020
Cyclic AMP mediates heat stress response by the control of redox homeostasis and ubiquitin-proteasome systemAnnalisa Paradiso, Guido Domingo, Emanuela Blanco, et al.Plant Molecular Biology|January 21, 2016
Cyclic AMP deficiency negatively affects cell growth and enhances stress-related responses in tobacco Bright Yellow-2 cellsWilma Sabetta, Candida Vannini, Alessandra Sgobba, et al.Photosynthesis Research|October 18, 2005
Structural investigation of oxidized chlorosomes from green bacteria using multifrequency electron paramagnetic resonance up to 330 GHzMarilena Di Valentin, Domenico Malorni, Anna Lisa Maniero, et al.Pageof 4