Photoperiod control of gibberellin levels and flowering in sorghum

scientific article published in March 1998

Photoperiod control of gibberellin levels and flowering in sorghum is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1104/PP.116.3.1003
P698PubMed publication ID9501132

P2093author name stringFoster KR
Morgan PW
Lee IJ
P2860cites workIsolation and expression of three gibberellin 20-oxidase cDNA clones from ArabidopsisQ24672008
Endogenous gibberellins in Arabidopsis thaliana and possible steps blocked in the biosynthetic pathways of the semidwarf ga4 and ga5 mutantsQ33843629
Gibberellin A1 is required for stem elongation in spinachQ36466827
The sorghum photoperiod sensitivity gene, Ma3, encodes a phytochrome B.Q36848021
Evidence for Phytochrome Regulation of Gibberellin A(20) 3beta-Hydroxylation in Shoots of Dwarf (lele) Pisum sativum L.Q46006428
Phytochrome B affects responsiveness to gibberellins in ArabidopsisQ46833061
Genetic Regulation of Development in Sorghum bicolor: VII. ma(3) Flowering Mutant Lacks a Phytochrome that Predominates in Green Tissue.Q47916741
Genetic Regulation of Development in Sorghum bicolor: VI. The ma(3) Allele Results in Abnormal Phytochrome PhysiologyQ47918684
Spotlight on Phytochrome Nomenclature.Q48796822
Genetic Regulation of Development in Sorghum bicolar: I. Role of the Maturity Genes.Q52260043
Genetic Regulation of Development in Sorghum bicolor (IX. The ma3R Allele Disrupts Diurnal Control of Gibberellin Biosynthesis).Q52547339
ent-kaurene biosynthesis is enhanced by long photoperiods in the long-day plants Spinacia oleracea L. and Agrostemma githago LQ72699074
Diurnal Fluctuations in Ethylene Formation in Chenopodium rubrumQ74770360
Genetic Regulation of Development in Sorghum bicolor (X. Greatly Attenuated Photoperiod Sensitivity in a Phytochrome-Deficient Sorghum Possessing a Biological Clock but Lacking a Red Light-High Irradiance Response)Q74781533
Genetic Regulation of Development in Sorghum bicolor (VIII. Shoot Growth, Tillering, Flowering, Gibberellin Biosynthesis, and Phytochrome Levels Are Differentially Affected by Dosage of the ma3R AlleleQ74789853
Endogenous rhythmicity of ethylene production in growing intact cereal seedlingsQ83232857
Ethylene, a regulator of young fruit abscissionQ83247213
Identification of six endogenous gibberellins in spinach shootsQ83254251
Effect of Photoperiod on the Levels of Endogenous Gibberellins in Spinach as Measured by Combined Gas Chromatography-selected Ion Current MonitoringQ83254981
Effect of photoperiod on the metabolism of deuterium-labeled gibberellin a(53) in spinachQ83258703
Rhythmicity in ethylene production in cotton seedlingsQ83260379
Photoperiod modification of [C]gibberellin a(12) aldehyde metabolism in shoots of pea, line g2Q83264137
Gibberellin metabolism in cell-free extracts from spinach leaves in relation to photoperiodQ83264181
Identification of endogenous gibberellins from sorghumQ83264226
Genetic Regulation of Development in Sorghum bicolor: III. Asynchrony of Thermoperiods with Photoperiods Promotes Floral InitiationQ83264771
Does water deficit stress promote ethylene synthesis by intact plants?Q83270854
Genetic Regulation of Development in Sorghum bicolor: V. The ma(3) Allele Results in Gibberellin EnrichmentQ83270920
Identification of Gibberellins in Spinach and Effects of Light and Darkness on their LevelsQ83272198
Gibberellins and the photoperiodic control of stem elongation in the long-day plant Agrostemma githago LQ86891970
Floral initiation in sorghum hastened by gibberellic acid and far-red lightQ86912171
P433issue3
P921main subjectdaylight cycleQ106636923
P304page(s)1003-1011
P577publication date1998-03-01
P1433published inPlant PhysiologyQ3906288
P1476titlePhotoperiod control of gibberellin levels and flowering in sorghum
P478volume116

Reverse relations

cites work (P2860)
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