Root phototropism: from dogma to the mechanism of blue light perception.
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How and why do root apices sense light under the soil surface?The Arabidopsis TUMOR PRONE5 gene encodes an acetylornithine aminotransferase required for arginine biosynthesis and root meristem maintenance in blue light.Tyrosine phosphorylation regulates the activity of phytochrome photoreceptors.Expression of Root Genes in Arabidopsis Seedlings Grown by Standard and Improved Growing MethodsPhysiological characterization and genetic modifiers of aberrant root thigmomorphogenesis in mutants of Arabidopsis thaliana MILDEW LOCUS O genes.Skewing in Arabidopsis roots involves disparate environmental signaling pathways.Seedling development in buckwheat and the discovery of the photomorphogenic shade-avoidance response.Darwin-Wallace Demons: survival of the fastest in populations of duckweeds and the evolutionary history of an enigmatic group of angiosperms.Natural variation of root traits: from development to nutrient uptake.Growth-limiting proteins in maize coleoptiles and the auxin-brassinosteroid hypothesis of mesocotyl elongation.Phototropic solar tracking in sunflower plants: an integrative perspective.Genetic control of root growth: from genes to networks.A Soil-Plate Based Pipeline for Assessing Cereal Root Growth in Response to Polyethylene Glycol (PEG)-Induced Water Deficit Stress.Phytochrome A Mediates Blue-Light Enhancement of Second-Positive Phototropism in ArabidopsisSpecificity of root microbiomes in native-grown Nicotiana attenuata and plant responses to UVB increase Deinococcus colonization.Proper PIN1 distribution is needed for root negative phototropism in Arabidopsis.Roles of proteome dynamics and cytokinin signaling in root to hypocotyl ratio changes induced by shading roots of Arabidopsis seedlings.Basic versus applied research: Julius Sachs (1832-1897) and the experimental physiology of plants.UV-B Induced Generation of Reactive Oxygen Species Promotes Formation of BFA-Induced Compartments in Cells of Arabidopsis Root Apices.Photophobic behavior of maize roots.Flavonols Mediate Root Phototropism and Growth through Regulation of Proliferation-to-Differentiation Transition.A novel blue-light phototropic response is revealed in roots of Arabidopsis thaliana in microgravity.Auxin Information Processing; Partners and Interactions beyond the Usual Suspects.Gravitropism interferes with hydrotropism via counteracting auxin dynamics in cucumber roots: clinorotation and spaceflight experiments.Light signaling, root development and plasticity.Analysis of the Root System Architecture of Arabidopsis Provides a Quantitative Readout of Crosstalk between Nutritional Signals.
P2860
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P2860
Root phototropism: from dogma to the mechanism of blue light perception.
description
article científic
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article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
@pt
artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
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artículo científico
@es
name
Root phototropism: from dogma to the mechanism of blue light perception.
@en
Root phototropism: from dogma to the mechanism of blue light perception.
@nl
type
label
Root phototropism: from dogma to the mechanism of blue light perception.
@en
Root phototropism: from dogma to the mechanism of blue light perception.
@nl
prefLabel
Root phototropism: from dogma to the mechanism of blue light perception.
@en
Root phototropism: from dogma to the mechanism of blue light perception.
@nl
P2860
P1433
P1476
Root phototropism: from dogma to the mechanism of blue light perception.
@en
P2093
Ulrich Kutschera
Winslow R Briggs
P2860
P2888
P304
P356
10.1007/S00425-012-1597-Y
P577
2012-03-01T00:00:00Z