indoleacetic acid and glycosides

indoleacetic acid has been researched along with glycosides in 18 studies

Research

Studies (18)

TimeframeStudies, this research(%)All Research%
pre-19905 (27.78)18.7374
1990's3 (16.67)18.2507
2000's7 (38.89)29.6817
2010's3 (16.67)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Branca, C; Ricci, D1
Kuhlemeier, C; Mandel, T; Reinhardt, D1
Kotake, T; Nakagawa, N; Sakurai, N; Takeda, K1
Lüthen, H; Tode, K1
Hertel, R; Kang, BG; Park, WJ; Prinsen, E; Schäfer, A; van Onckelen, H1
Montague, MJ1
Cheung, SP; Cleland, RE1
Galston, AW; Migliaccio, F1
Hasenstein, KH; Rayle, D1
Cleland, RE; Cosgrove, DJ; Van Volkenburgh, E1
Cleland, RE1
Nakamura, T; Nishitani, K; Tomita, E; Yokoyama, R1
JACOBELLI, G; TABONE, J1
Clément, B; Otten, L; Pollmann, S; Urbanczyk-Wochniak, E; Weiler, E1
Belova, LP; Il'ina, TM; Velikanov, GA1
Hara, Y; Ishizawa, K; Koizumi, Y; Sakano, K; Yazaki, Y1
Helm, RF; Lewis, DR; Miller, ND; Muday, GK; Ramirez, MV; Ray, WK; Vallabhaneni, P; Winkel, BS1
Cingoz, GS; Gurel, E; Verma, SK1

Other Studies

18 other study(ies) available for indoleacetic acid and glycosides

ArticleYear
Inhibiting action of fusicoccin on the ethylene production of Pisum sativum.
    Bollettino della Societa italiana di biologia sperimentale, 1983, Oct-30, Volume: 59, Issue:10

    Topics: 2,4-Dichlorophenoxyacetic Acid; Ethylenes; Glycosides; Indoleacetic Acids; Naphthaleneacetic Acids; Plants; Thiazoles

1983
Auxin regulates the initiation and radial position of plant lateral organs.
    The Plant cell, 2000, Volume: 12, Issue:4

    Topics: Adenine; Arabidopsis; Arabidopsis Proteins; Biological Transport; Brassinosteroids; Cell Division; Cholestanols; Culture Techniques; Gibberellins; Glycosides; Indoleacetic Acids; Kinetin; Membrane Proteins; Membrane Transport Proteins; Meristem; Morphogenesis; Mutation; Phenotype; Phthalimides; Plant Leaves; Plant Structures; Solanum lycopersicum; Steroids, Heterocyclic

2000
Auxin-induced elongation growth and expressions of cell wall-bound exo- and endo-beta-glucanases in barley coleoptiles.
    Plant & cell physiology, 2000, Volume: 41, Issue:11

    Topics: beta-Glucosidase; Blotting, Northern; Cell Wall; Cellulase; Cotyledon; Dose-Response Relationship, Drug; Gene Expression Regulation, Developmental; Gene Expression Regulation, Enzymologic; Gene Expression Regulation, Plant; Glucan 1,3-beta-Glucosidase; Glucose; Glycosides; Hordeum; Indoleacetic Acids; Molecular Weight; Plant Growth Regulators; Polysaccharides; RNA, Plant; Time Factors

2000
Fusicoccin- and IAA-induced elongation growth share the same pattern of K+ dependence.
    Journal of experimental botany, 2001, Volume: 52, Issue:355

    Topics: Calcium; Cotyledon; Glycosides; Indoleacetic Acids; Ion Transport; Mycotoxins; Plant Growth Regulators; Potassium; Potassium Channel Blockers; Potassium Channels; Rubidium; Tetraethylammonium; Zea mays

2001
Auxin-induced elongation of short maize coleoptile segments is supported by 2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one.
    Planta, 2001, Volume: 213, Issue:1

    Topics: Benzoxazines; Cell Division; Cotyledon; Glycosides; Indoleacetic Acids; Oxazines; Plant Growth Regulators; Zea mays

2001
Hormonal and gravitropic specificity in the regulation of growth and cell wall synthesis in pulvini and internodes from shoots of Avena sativa L. (oat).
    Plant physiology, 1995, Volume: 107, Issue:2

    Topics: Avena; Carbon Radioisotopes; Cell Wall; Gibberellins; Glucose; Glycosides; Gravitation; Gravitropism; Indoleacetic Acids; Plant Growth Regulators; Plant Shoots; Pulvinus

1995
Galactose inhibits auxin-induced growth of Avena coleoptiles by two mechanisms.
    Plant & cell physiology, 1991, Volume: 32, Issue:7

    Topics: Avena; Cotyledon; Drug Interactions; Galactose; Glycosides; Hydrogen-Ion Concentration; Indoleacetic Acids; Plant Growth Regulators; Protons; Time Factors

1991
On the nature and origin of the calcium asymmetry arising during gravitropic response in etiolated pea epicotyls.
    Plant physiology, 1987, Volume: 85

    Topics: 3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethyl-5-nitro-4-(2-(trifluoromethyl)phenyl)-, Methyl ester; Biological Transport; Calcimycin; Calcium; Calcium Channel Agonists; Calcium Channel Blockers; Cycloheximide; Glycosides; Gravitation; Gravitropism; Hydrogen-Ion Concentration; Indoleacetic Acids; Ionophores; Nisoldipine; Nitrendipine; Pisum sativum; Plant Growth Regulators; Plant Shoots; Protein Synthesis Inhibitors; Protoplasts

1987
Cell wall pH and auxin transport velocity.
    Plant physiology, 1984, Volume: 76, Issue:1

    Topics: Avena; Biological Transport; Cell Wall; Cotyledon; Cycloheximide; Glycosides; Hydrogen-Ion Concentration; Indoleacetic Acids; Plant Growth Regulators; Protein Synthesis Inhibitors

1984
Stress relaxation of cell walls and the yield threshold for growth: demonstration and measurement by micro-pressure probe and psychrometer techniques.
    Planta, 1984, Volume: 162, Issue:1

    Topics: Biomass; Cell Wall; Elasticity; Glycosides; Indoleacetic Acids; Osmotic Pressure; Pisum sativum; Pressure; Stress, Mechanical

1984
Characteristics and implications of prolonged fusicoccin-induced growth of Avena coleoptile sections.
    Physiologia plantarum, 1994, Volume: 90, Issue:4

    Topics: Avena; Cotyledon; Culture Media; Glycosides; Hydrogen-Ion Concentration; Indoleacetic Acids; Plant Epidermis; Plant Growth Regulators; Potassium Chloride; Protons; Sucrose; Time Factors

1994
Two azuki bean XTH genes, VaXTH1 and VaXTH2, with similar tissue-specific expression profiles, are differently regulated by auxin.
    Plant & cell physiology, 2003, Volume: 44, Issue:1

    Topics: Fabaceae; Gene Expression Regulation, Enzymologic; Gene Expression Regulation, Plant; Glycosides; Glycosyltransferases; Indoleacetic Acids; Isoenzymes; Mannitol; Molecular Sequence Data; Multigene Family; Phylogeny; Plant Proteins; RNA, Messenger

2003
[Migration of the aglycone in a series of beta-glycoside esters of aromatic acids].
    Bulletin de la Societe de chimie biologique, 1961, Volume: 43

    Topics: Bacillus; Esters; Glycosides; Indoleacetic Acids; ortho-Aminobenzoates; Propionates

1961
The Agrobacterium vitis T-6b oncoprotein induces auxin-independent cell expansion in tobacco.
    The Plant journal : for cell and molecular biology, 2006, Volume: 45, Issue:6

    Topics: Bacterial Proteins; Cell Enlargement; Dexamethasone; DNA, Bacterial; Fructose; Glucose; Glycosides; Indoleacetic Acids; Nicotiana; Oncogene Proteins; Plant Growth Regulators; Plant Leaves; Plants, Genetically Modified; Potassium; Rhizobium

2006
[The role of proton pump and potassium channels of plasma membrane in regulation of cellulose synthesis in plants].
    Tsitologiia, 2005, Volume: 47, Issue:7

    Topics: Cell Membrane; Cells, Cultured; Cellulose; Glycosides; Indoleacetic Acids; Membrane Potentials; Plant Growth Regulators; Plant Roots; Potassium Channel Blockers; Potassium Channels; Proton Pumps; Seedlings; Tetraethylammonium; Triticum

2005
Involvement of plasma membrane H+-ATPase in anoxic elongation of stems in pondweed (Potamogeton distinctus) turions.
    The New phytologist, 2011, Volume: 190, Issue:2

    Topics: Anaerobiosis; Buffers; Cell Membrane; Culture Media; Glycosides; Hydrogen-Ion Concentration; Indoleacetic Acids; Microsomes; Plant Stems; Potamogetonaceae; Potassium Channels; Proton-Translocating ATPases; Protons; Time Factors; Vacuoles

2011
Auxin and ethylene induce flavonol accumulation through distinct transcriptional networks.
    Plant physiology, 2011, Volume: 156, Issue:1

    Topics: Amino Acids, Cyclic; Arabidopsis; Arabidopsis Proteins; Ethylenes; Flavonols; Gene Expression Regulation, Plant; Gene Regulatory Networks; Glycosides; Gravitropism; Indoleacetic Acids; Mutation; Plant Growth Regulators; Plant Roots; Plants, Genetically Modified; Quercetin; Recombinant Fusion Proteins; RNA, Plant; Seedlings

2011
Hydrogen peroxide-induced antioxidant activities and cardiotonic glycoside accumulation in callus cultures of endemic Digitalis species.
    Plant physiology and biochemistry : PPB, 2014, Volume: 82

    Topics: Antioxidants; Catalase; Digitalis; Glycosides; Hydrogen Peroxide; Indoleacetic Acids

2014