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Phosphoproteome dynamics upon changes in plant water status reveal early events associated with rapid growth adjustment in maize leaves.


ABSTRACT: PRIDE ID: 25003. Data published as part of Mol Cell Proteomics. 2012 Jul 10 . From the Abstract: {{i}}Aiming at a better understanding of early responses to contrasting plant water statuses, we carried out a survey of the protein phosphorylation events in the growing zone of maize leaves upon a range of water regimes. In this study, the impact of mild and severe water deficits were evaluated in comparison with constant optimal watering and with recovery periods lasting 5, 10, 20, 30, 45 and 60 min. Using four biological replicates per treatment and a robust quantitative phosphoproteomic methodology based on stable-isotope labeling, we identified 3664 unique phosphorylation sites on 2496 proteins.{{/i}}

INSTRUMENT(S): Instrument

ORGANISM(S): Corn_ensembl, Maize_chlorotic_dwarf_virus, Maize_chlorotic_mottle_virus, Maize_dwarf_mosaic_virus, Maize_fine_streak_virus, Maize_mosaic_virus, Maize_necrotic_streak_virus, Maize_rayado_fino_virus, Maize_streak_virus, Maize_white_line_mosaic_satellite_virus, Maize_white_line_mosaic_virus

DISEASE(S): Not Available

SUBMITTER: Bonhomme L, et al.  

PROVIDER: GPM11210000734 | GPMDB |

REPOSITORIES: GPMDB

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