Reboot the system thanks to protein post-translational modifications and proteome diversity: How quiescent seeds restart their metabolism to prepare seedling establishment.
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Cellular Recycling of Proteins in Seed Dormancy Alleviation and GerminationNitrogen control of developmental phase transitions in Arabidopsis thalianaNitric oxide implication in the control of seed dormancy and germinationThe importance of safeguarding genome integrity in germination and seed longevity.Convergent signaling pathways--interaction between methionine oxidation and serine/threonine/tyrosine O-phosphorylationRegulation of mRNA translation controls seed germination and is critical for seedling vigor.Staying Alive: Molecular Aspects of Seed Longevity.The seed proteome web portal.A role for seed storage proteins in Arabidopsis seed longevityABA crosstalk with ethylene and nitric oxide in seed dormancy and germinationRole of protein and mRNA oxidation in seed dormancy and germinationDynamic proteomics emphasizes the importance of selective mRNA translation and protein turnover during Arabidopsis seed germination.Mitochondrial Proteome Studies in Seeds during Germination.Molecular mechanisms of seed dormancy.Interplay between protein carbonylation and nitrosylation in plants.Proteomics of rice seed germination.Advances in plant proteomics toward improvement of crop productivity and stress resistancex.Towards a better monitoring of seed ageing under ex situ seed conservation.Pathogen and circadian controlled 1 (PCC1) protein is anchored to the plasma membrane and interacts with subunit 5 of COP9 signalosome in Arabidopsis.An Integrated "Multi-Omics" Comparison of Embryo and Endosperm Tissue-Specific Features and Their Impact on Rice Seed Quality.Oxidative and nitrosative-based signaling and associated post-translational modifications orchestrate the acclimation of citrus plants to salinity stress.Global analysis of the role of autophagy in cellular metabolism and energy homeostasis in Arabidopsis seedlings under carbon starvation.Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response.Bud Dormancy in Perennial Fruit Tree Species: A Pivotal Role for Oxidative Cues.Changes in the Transcriptome of Dry Leafy Spurge (Euphorbia esula) Seeds Imbibed at a Constant and Alternating Temperature
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P2860
Reboot the system thanks to protein post-translational modifications and proteome diversity: How quiescent seeds restart their metabolism to prepare seedling establishment.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on 23 March 2011
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Reboot the system thanks to pr ...... repare seedling establishment.
@en
Reboot the system thanks to pr ...... repare seedling establishment.
@nl
type
label
Reboot the system thanks to pr ...... repare seedling establishment.
@en
Reboot the system thanks to pr ...... repare seedling establishment.
@nl
prefLabel
Reboot the system thanks to pr ...... repare seedling establishment.
@en
Reboot the system thanks to pr ...... repare seedling establishment.
@nl
P2093
P2860
P356
P1433
P1476
Reboot the system thanks to pr ...... prepare seedling establishment
@en
P2093
Béatrice Godin
Dominique Job
Gwendal Cueff
Imen Lounifi
Marc Galland
P2860
P304
P356
10.1002/PMIC.201000641
P577
2011-03-23T00:00:00Z