Search results for "Funaria"

showing 5 items of 5 documents

Üher den Ureidstoffwechsel heim Lauhmoosprotonema von Funaria hygrometrica L. (SIBTH.)

1974

Summary The uptake of allantoine-7- 14 C by moss protonema grown in submerged culture is controlled by light and by the degree of catabolisation within the cell. The rate of uptake was enhanced by the application of ATP + glucose to the medium of a dark grown culture. The degradation products of allantoine-7- 14 C in light grown protonema are allantoic acid and urea. Urea is degraded in the Henseleit-Krebs-cycle to ornithine, citrulline and arginine. Urea is a further source of radioactive CO 2 . In darkness, the single product of allantoine degradation is allantoic acid. Allantoicase is blocked in the dark but the metabolism can be activated by the application of ATP or ATP + glucose to th…

Allantoic acidbiologyArginineGeneral MedicineGeneral ChemistryMetabolismOrnithinebiology.organism_classificationFunaria hygrometricachemistry.chemical_compoundchemistryBiochemistryUreaAllantoicaseProtonemaBiochemie und Physiologie der Pflanzen
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Über den Ureidstoffwechsel beim Laubmoosprotonema von Funaria hygrometrica L. (Sibth.)

1973

Summary 1. Allantoin and allantoic acid were about 6 % of the total nitrogen content of moss protonema (Funaria hygrornetica L.). 2. The level of endogenous allantoin depends on the spectrum colour of the irradiation. The peaks coincide with the peaks of a chlorophyll absorption spectrum from a methanolic extract of moss protonema. 3. The total amount of allan to in consists of two parts. One part is supplied by metabolism in darkness but the main one depends on light. Green- and far red light are “physiological dark conditions” for the moss protonema. In the dark ureide degradation comes to an end with allantoic acid. There are only traces of urea. 4. The coinciding correlations between th…

Allantoic acidbiologyDCMUFar-redGeneral MedicineGeneral Chemistrybiology.organism_classificationChloroplastchemistry.chemical_compoundAllantoinchemistryBiochemistryFunariaChlorophyllBotanyProtonemaBiochemie und Physiologie der Pflanzen
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Fatty acid composition of mutants of the moss Physcomitrella patens

1981

Abstract The fatty acid composition of various mutant strains of the moss Physcomitrella patens has been compared to the wild-type. These included strains defective in their responses to auxins and/or cytokinins, one which releases much more cytokinin into the medium than the wild-type, and two aphototropic strains. The lipids of the aphototropic mutants were also studied after culture in different light regimes. Although some differences in fatty acid composition have been found between strains, these alone are probably not responsible for their physiological differences. Considerable changes occur in many fatty acids in senescent or dark-grown material, including changes in the proportion…

chemistry.chemical_classificationMutantPhospholipidfood and beveragesPlant ScienceGeneral MedicineHorticultureBiologyPhyscomitrella patensbiology.organism_classificationBiochemistryMossFunariaceaechemistry.chemical_compoundGlycolipidchemistryBiochemistryAuxinBotanyCytokininMolecular BiologyPhytochemistry
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Untersuchungen zur Biosynthese eines Cytokinins in Calluszellen von Laubmoossporophyten

1973

When callus cells derived from the sporogon of the hybrid Funaria hygrometrica x Physcomitrium piriforme are supplied with adenine-8-14C, they produce a labelled cytokinin which has the same chromatographic behavior as N6-γγ-(dimethylallyl)aminopurine. The cytokinin is the first radioactive product that can be detected in the culture medium. It is formed as long as labelled adenine is available. When callus cells are grown in an optimum culture medium containing amino acids, about 10% of the radioactivity supplied as adenine is found in the cytokinin. When the cells are grown in a medium without amino acids, the RNA-content of the cells and the total yield of cytokinin decrease, but about 1…

chemistry.chemical_classificationbiologyChemistryGuaninefungifood and beveragesRNAPlant Sciencebiology.organism_classificationAmino acidFunaria hygrometricachemistry.chemical_compoundBiochemistryCallusCytokininGeneticsUreaheterocyclic compoundsAminopurinePlanta
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Über den Ureidstoffwechsel beim Laubmoosprotonema von Funaria hydrometrica L. (Sibth.)1)1)Herrn Prof. Dr. Dr. Kurt Mothes zum 75. Geburtstag gewidmet.

1975

Summary The activity of allantoinase (EC 3.5.2.5) is influenced by light and darkness. The extracts of dark-grown moss protonema showed a very higher enzyme activity than the extracts of light-grown plants. The allantoinase activity was increased by light-dark and decreased by dark-light transitions. DMAP mimicked light effects by stabelizing the charakteristic light depending enzyme avctivities in the dark. The inhibitors DCMU, DNP and CCCP increased the enzyme activity of light-grown moss protonema, to some extend they induced a “physiological dark condition”.

chemistry.chemical_classificationgenetic structuresbiologyAllantoinaseDCMUGeneral MedicineGeneral Chemistrybiology.organism_classificationMossEnzyme assayFunaria hygrometricachemistry.chemical_compoundEnzymechemistryBiochemistryBotanyDarknessbiology.proteinsense organsProtonemaBiochemie und Physiologie der Pflanzen
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