0000000000465582

AUTHOR

Cornelia I. Ullrich

showing 5 related works from this author

Comparison between tumors in plants and human beings: Mechanisms of tumor development and therapy with secondary plant metabolites

2019

Abstract Background Human tumors are still a major threat to human health and plant tumors negatively affect agricultural yields. Both areas of research are developing largely independent of each other. Treatment of both plant and human tumors remains unsatisfactory and novel therapy options are urgently needed. Hypothesis The concept of this paper is to compare cellular and molecular mechanisms of tumor development in plants and human beings and to explore possibilities to develop novel treatment strategies based on bioactive secondary plant metabolites. The interdisciplinary discourse may unravel commonalities and differences in the biology of plant and human tumors as basis for rational …

Cellular immunityPhytochemicalsPlant TumorsPhysical CarcinogenesisSecondary MetabolismPharmaceutical ScienceBiologymedicine.disease_cause03 medical and health sciences0302 clinical medicineImmune systemCancer stem cellNeoplasmsDrug DiscoveryBiological CarcinogenesisPlant defense against herbivorymedicineAnimalsHumansPlant ImmunityPlant Physiological PhenomenaPlant Diseases030304 developmental biologyPharmacology0303 health sciencesAntibiotics Antineoplasticfungifood and beveragesPlantsAntineoplastic Agents PhytogenicComplementary and alternative medicineAgrobacterium tumefaciensDrug Resistance Neoplasm030220 oncology & carcinogenesisCancer researchMolecular MedicineCarcinogenesisPhytomedicine
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Uptake of Acidic and Basic Sugar Derivatives in Lemna gibba G1

1989

The uptake of acidic and basic sugar derivatives in Lemna gibba L. was studied. Uronic acids applied to the experimental solution (50 millimolar) induced a small decrease of the membrane potential (10 +/- 1 millivolt galacturonic acid, and 20 +/- 4 millivolt glucuronic acid). After incubation of the plants in a 0.1 millimolar solution of these substrates, no decrease in the concentration of reducing groups in the external solution was detected. Respiration increased by 31% with 50 millimolar galacturonic acid, whereas no effect was found with the same concentration of glucuronic acid. Glucosamine caused a considerable concentration-dependent membrane depolarization. ((14)C)glucosamine uptak…

Molar concentrationChromatographybiologyPhysiologyChemistryLemna gibbaSubstrate (chemistry)Plant ScienceUronic acidCarbohydrateMembrane transportbiology.organism_classificationGlucuronic acidchemistry.chemical_compoundGlucosamineGeneticsMembranes and BioenergeticsPlant Physiology
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Ni2+ toxicity in rice: effect on membrane functionality and plant water content.

2007

The heavy metal nickel is an essential mineral trace nutrient found at low concentrations in most natural soils. However, it may reach toxic levels in certain areas and affect a number of biochemical and physiological processes in plants. Wilting and leaf necrosis have been described as typical visible symptoms of Ni(2+) toxicity. The plasma membrane (PM) of root cells constitutes the first barrier for the entry of heavy metals but also a target of their toxic action. This work studies the relationship between disturbances of membrane functionality and the development of the typical symptoms of Ni(2+) toxicity. Rice plants (Oryza sativa L. cv. Bahia) grown in nutrient medium containing 0.5m…

Stomatal conductanceCell Membrane PermeabilityMembrane permeabilityPhysiologyChemistryWiltingfood and beveragesWaterOryzaPlant ScienceMembrane PotentialsArticle AddendumHorticultureNutrientNickelShootToxicityBotanyGeneticsWater contentTranspirationPlant physiology and biochemistry : PPB
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Hormone Effects on the Membrane Potential and on Sucrose-Induced Depolarization of Young <italic>Citrus</italic> Leaves

1992

chemistry.chemical_classificationMembrane potentialSucrosePhysiologyDepolarizationCell BiologyPlant ScienceGeneral MedicineBiologybiology.organism_classificationchemistry.chemical_compoundRutaceaechemistryBiochemistryAuxinBotanyGibberellinAbscisic acidCitrus × sinensisPlant and Cell Physiology
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Distinctive phytotoxic effects of Cd and Ni on membrane functionality.

2009

Metal ions essential for plant growth, such as Fe, Mn, Ni, Cu or Zn, are taken up by plants from the soil solution through metal transporters at the plasma membrane, mainly of the ZIP and Nramp families. These transport systems, however, can also give entry to other metals (Al, Cd, Hg, Pb). Non-nutritive elements, as well as the essential nutrients at higher than metabolic concentrations, can cause phytotoxicity. We have studied previously the effects of an essential (Ni) and a non essential (Cd) heavy metal on root cell plasma membranes, the first selective barrier encountered when entering the plant, using rice as model plant. Distinctive effects of Cd and Ni on membrane function (i.e., E…

Plant growthMembrane permeabilityMetal ions in aqueous solutionfood and beveragesTransporterPlant ScienceBiologyMetalMembraneCytoplasmvisual_artBotanyvisual_art.visual_art_mediumBiophysicsPhytotoxicityPlant signalingbehavior
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