Search results for "Indole-3-acetic acid"

showing 10 items of 10 documents

Investigations on the content indole-3-acetic spruce needles of healthy and damaged trees of various sites

1993

Summary Surveys were made on the concentration of indole-3-acetic acid (IAA) in spruce trees of various sites. The concentrations of the hormone were specified with a radioimmunoassay after the needle extract had been purified in several steps. The content of IAA in needles of damaged trees was distinctly lower than the content in needles of healthy trees. Another feature was the annual rythm of the IAA content with the maximum of concentration in June. A distinct diurnal course with highest level of concentration during the early afternoon hours was also observed. The diurnal rhythm of the damaged trees was clearly lower. The supposition is that the lower IAA content is responsible for a p…

Indole testchemistry.chemical_classificationbiologyPhysiologyDiurnal temperature variationfood and beveragesPicea abiesPlant Sciencebiology.organism_classificationchemistry.chemical_compoundHorticultureAbscissionchemistryAuxinBotanyheterocyclic compoundsIndole-3-acetic acidAgronomy and Crop ScienceJournal of Plant Physiology
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A Specific Radioimmunoassay for the Determination of Low Quantities of Indole-3-acetic Acid in Spruce Needles of Healthy and Damaged Trees

1988

Summary The aim of the present investigation was to develop a radioimmunoassay for the quantification of indole-3-acetic acid in needles of Picea abies in damaged and phenotypically healthy trees. Phenols, lipophilic substances or compounds with cross-reactivity had to be separated from the extracts in several purification steps. Measurements were carried out between May and October 1986 on trees from two spruce plantations. Marked differences were found in IAA content in needles of healthy and damaged trees. In most cases the needles of the damaged trees contain lower endogenous IAA levels. The auxin levels also depended on the age of the tree, the year of needle formation, and the vegetat…

chemistry.chemical_classificationDevelopmental stagebiologyPhysiologyfood and beveragesPicea abiesRadioimmunoassayPlant Sciencebiology.organism_classificationWest germanychemistry.chemical_compoundSpecific radioimmunoassaychemistryAuxinBotanyheterocyclic compoundsPhenolsIndole-3-acetic acidAgronomy and Crop ScienceJournal of Plant Physiology
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Effects of indole-3-acetic acid on Sinorhizobium meliloti survival and on symbiotic nitrogen fixation and stem dry weight production

2009

We evaluated the effects of the main auxin phytohormone, indole-3-acetic acid (IAA), on the central metabolism of Sinorhizobium meliloti strain 1021. We either treated the Sinorhizobium meliloti 1021 strain with 0.5 mM IAA (1021+) or use a derivative, RD64, of the same strain harbouring a pathway for IAA biosynthesis converting tryptophan into IAA via indoleacetamide. We assayed the activity of key enzymes in the major energy-yielding pathways (Entner-Doudoroff, Embden-Meyerhof-Parnas, pentose phosphate, glyoxylate bypass and tricarboxylic acid cycle). We found that activity of two main regulative tricarboxylic acid (TCA) cycle enzymes was increased. Citrate synthase (CS) activity, as compa…

PolyestersHydroxybutyratesDehydrogenaseCitrate (si)-SynthaseApplied Microbiology and BiotechnologyCell survival . PHB . TCA . Nitrogen fixationchemistry.chemical_compoundBacterial ProteinsPlant Growth RegulatorsAcetyl Coenzyme AAuxinNitrogen FixationMedicago truncatulaCitrate synthaseKetoglutarate Dehydrogenase ComplexBiomasschemistry.chemical_classificationSinorhizobium melilotiMicrobial ViabilityIndoleacetic AcidsPlant StemsbiologyTryptophanfood and beveragesGeneral MedicineMetabolismbiology.organism_classificationCitric acid cycleBiochemistrychemistrybiology.proteinIndole-3-acetic acidSinorhizobium melilotiBiotechnologyApplied Microbiology and Biotechnology
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Development and Validation of a Reversed-Phase Liquid Chromatography Method for the Simultaneous Determination of Indole-3-Acetic Acid, Indole-3-Pyru…

2011

A simple, sensitive, precise, and specific reverse HPLC method was developed and validated for the determination of plant hormones in barley (Hordeum vulgareL.). The method includes extraction in aqueous organic solvent followed by solid-phase extraction, sample evaporation, and reversed-phase HPLC analysis in a general purpose UV-visible (abscisic acid (ABA)) and fluorescence detection (indole-3-acetic acid (IAA) and indole-3-pyruvic acid (IPA)), high-performance liquid chromatography system. The separation was carried out on Zorbax Eclipse XDB C8 column (150 × 4.6 mm I.D) with a mobile phase composed of methanol and 1% acetic acid (60 : 40 v/v) in isocratic mode at a flow rate of 1 ml min…

Detection limitChromatographylcsh:QD71-142Article SubjectGeneral Chemical EngineeringExtraction (chemistry)lcsh:Analytical chemistryfood and beveragesReversed-phase chromatographyComputer Science ApplicationsAnalytical Chemistrychemistry.chemical_compoundAcetic acidchemistryHordeum vulgareMethanolIndole-3-acetic acidInstrumentationAbscisic acidResearch ArticleJournal of Analytical Methods in Chemistry
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ChemInform Abstract: Experimental and Theoretical Studies on the Electronic Spectra of Indole-3-acetic Acid and Its Anionic and Protonated Species.

2010

Abstract The geometrical and electronic structure of indole-3-acetic acid (IAH) have been investigated using the MINDO/3 molecular orbital method, the geometries being optimized by Rinaldi's method. The UV spectrum of IAH has been recorded in different solvents. The corresponding spectra of IAH + 2 and IA − were also respectively obtained, from IAH in different H 2 SO 4 /water mixtures and NaOH solutions. The agreement of experimental spectra with the ones theoretically calculated by the CNDO/M-Cl method after optimization of the κ parameter, is discussed. The p K a values of IAH have also been determined from the IAH + 2 spectra and are compared with literature data.

CNDO/2chemistry.chemical_compoundchemistryPhysical chemistryA valueProtonationMolecular orbitalGeneral MedicineElectronic structureIndole-3-acetic acidMINDOSpectral lineChemInform
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The effect of indole-3-acetic-acid on the photosynthetic apparatus of Sinapis alba

1980

The influence of indole-3-acetic-acid (IAA) during the development of primary leaves of Sinapis alba was studied. IAA treatment (4 ppm ≈ 22.8 μM) caused a decrease of dry weight, soluble reducing sugars, soluble protein, chlorophylls, carotenoids and cytochrome f; it also caused a lower ratio of protein to chlorophyll, a lower ratio of chlorophyll a to chlorophyll b and a higher ratio of chlorophyll per cytochrome f. Furthermore, IAA treatment induced a significantly lower rate of CO2 fixation and a depressed nitrite reductase activity. Similar effects could also be observed in adaptation reactions brought about by red light and low-light (or shade) conditions.

Cytochrome fChlorophyll bChlorophyll abiologySinapisfood and beveragesPlant physiologyCell BiologyPlant ScienceGeneral MedicinePhotosynthesisbiology.organism_classificationBiochemistrychemistry.chemical_compoundchemistryChlorophyllBotanyFood scienceIndole-3-acetic acidPhotosynthesis Research
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Hexacyanoferrate (III) stimulation of elongation in coleoptile segments fromZea mays L.

1995

The influence of exogenous potassium hexacyanoferrate (III) (HCF III) on elongation of maize (Zea mays L.) coleoptile segments was investigated. Addition of HCF III led to a strong stimulation of growth both in the presence and absence of indole-3-acetic acid (IAA). The magnitude of growth stimulation was dependent on the presence of IAA, HCF III concentration, incubation time, and phase growth. The reduced form, potassium hexacyanoferrate (II), was without effect on growth. In the presence of HCF III, elongation was suppressed when coleoptile segments were treated with N,N′-dicyclohexylcarbodiimide, cycloheximide or atebrine (quinacrine). The addition of HCF III stimulated the IAA-induced …

biologyATPasePotassiumfood and beverageschemistry.chemical_elementStimulationCell BiologyPlant ScienceGeneral MedicineCycloheximideHypocotylchemistry.chemical_compoundColeoptileBiochemistrychemistrybiology.proteinBiophysicsElongationIndole-3-acetic acidProtoplasma
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Comparison of the Effects of Indole-3-Acetic Acid and Kinetin on the Photosynthetic Apparatus and on the Cell Metabolism

1984

External and internal factors can exert a regulatory influence on growth and differentiation within a reaction norm determined by the genetic material. As to the internal factors, the phytohormones intervene in the most development processes in a regulatory manner. In a number of publications it was pointed out that there is a far-reaching accordance between the effects caused by I.4A and the effects induced by red light and low light conditions (Zerbe, Wild, 1980 a; Holzapfel et al., 1982 a). Plants of Sinapis alba grown under low light conditions but additionally treated with kinetin show changes in their metabolism that are characteristic of plants grown at higher light intensities (Zerb…

chemistry.chemical_compoundbiologychemistryBotanySinapisKinetinMetabolismRed lightPhotosynthesisbiology.organism_classificationIndole-3-acetic acidLight effectBlue light
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Rates of uptake and metabolism of indole-3-acetic acid and 2,4-dichlorophenoxyacetic acid by cultured leaf segments at different stages of developmen…

1987

Immature leaf tissue of Triticum timopheevi Zukh. responded to supplied auxin and showed cell division in culture. The rates of uptake and of metabolism of indole-3-acetic acid and 2,4-dichlorophenoxyacetic acid by such tissues were measured and compared with those of mature auxin-unresponsive tissue. The purpose of these experiments was to determine whether or not the concentration of auxin in cultured mature tissue was a factor limiting the cell division response to auxin. The data indicate that neither alterations in rates of uptake nor alterations in rates of metabolism could explain the loss of responsiveness to auxin which apparently occurs during cell differentiation. The results are…

chemistry.chemical_classification24-Dichlorophenoxyacetic acidCell divisionPhysiologyCellular differentiationfungifood and beveragesContext (language use)Cell BiologyPlant ScienceGeneral MedicineMetabolismBiologychemistry.chemical_compoundTissue culturechemistryBiochemistryAuxinGeneticsIndole-3-acetic acidPhysiologia Plantarum
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Presence of plant hormones in composts made from organic fraction of municipal solid waste

2016

Composting is a process of the biological decomposition of organic matter under aerobic conditions. Composts made from waste may still contain other substances that influence plant growth and development, such as vitamins or plant growth substances (plant hormones). Application of products containing phytohormones has an effect on numerous physiological processes in plants. Among observable results are: improved condition of the root system, increased absorption of nutrients, improved stress and disease resistance and delayed aging. The purpose of the research was to analyse the occurrence of plant hormones in mature composts made from selectively collected organic fraction of household mun…

Municipal solid wasteplant growth substancesEcologyHealth Toxicology and Mutagenesiswaste compostingkinetinPollutionOrganic fractionphenylacetic acidInorganic Chemistry6-benzylaminopurineEnvironmental chemistryEnvironmental scienceindole-3-acetic acidgibberellic acidJournal of Elementology
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