logo ipb
logo ipb mobile
x
  • Deutsch
  • English
Login
  • Research
    • Research Mission and Profile

    • Molecular Signal Processing

      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Nutrient Sensing
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Symbiosis Signaling
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Jasmonate Signaling
          • Projects
          • Staff
          • Publications
          • Collaborations
    • Bioorganic Chemistry

      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Bioactives
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Natural Products & Metabolomics
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Biotechnology
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Biofunctional Synthesis
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Computational Chemistry
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Data & Resources
          • Projects
          • Staff
          • Publications
          • Collaborations
    • Biochemistry of Plant Interactions

      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Calcium-dependent Protein Kinases
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Cellular Signaling
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Nuclear Processes in Plant Defense
          • Projects
          • Staff
          • Publications
          • Collaborations
    • Cell and Metabolic Biology

      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Glandular Trichomes and Isoprenoid Biosynthesis
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Jasmonate Function & Mycorrhiza
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Phenylpropanoid Metabolism
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Synthetic Biology
          • Projects
          • Staff
          • Publications
          • Collaborations
    • Independent Junior Research Groups

      • Research Groups
        • Receptor Biochemistry
          • Projects
          • Staff
          • Publications
          • Collaborations
    • Program Center MetaCom

      • Secretariat & All staff
      • Publikationen
      • Our Equipment
      • Research Groups
        • Metabolomics Facility
          • Projects
          • Staff
          • Publications
          • Methods
        • MetaCom Analytical Laboratory
          • Projects
          • Staff
          • Publications
          • Methods
        • Computational Plant Biochemistry
          • Projects
          • Staff
          • Publications
          • Collaborations
        • Biochemical Genetics of Metabolic Plasticity
          • Projects
          • Staff
          • Publications
          • Collaborations
    • Publications

    • Good Scientific Practice

    • Research Funding

    • Networks and Collaborative Projects

      • Collaborative Projects as Coordinator
        • Completed Projects as Coordinator
      • Collaborative Projects as Partner
        • Completed Projects as Partner
      • Networks
    • Symposia and Colloquia

      • Lectures
        • IPB Seminars
      • Leibniz Plant Biochemistry Symposia
    • Alumni Research Groups

      • Research Groups
        • Auxin Signaling
          • Projects
          • Publications
        • Bioorganic Chemistry
          • Projects
          • Publications
        • Designer Glycans
          • Projects
          • Publications
        • Jasmonate Mode of Action
          • Publications
        • Protein Recognition and Degradation
          • Projects
          • Publications
        • Regulatory RNAs (MLU-associated group)
          • Projects
          • Publications
        • Signal Integration
          • Projects
          • Publications
        • Ubiquitination in Immunity
          • Projects
          • Publications
        • Cellular Coordination
          • Projects
          • Publications
  • Infrastructure
    • Databases and Tools

      • XCMS
      • Rdisop
      • CAMERA
      • MetShot
      • MassBank
      • MetFrag
      • MetFamily
      • PaCeQuant
      • CytoskeletonAnalyzer
      • GoldenMutagenesis
      • cisHighlight
      • FlagScreen
      • RootDetection
    • Technical Resources

    • Imaging Unit

    • Greenhouses and Phytochambers

    • Library Services

      • OPAC
      • Electronic Journals Library
      • Service for Employees
  • Institute
    • Organizational Chart

    • Management and Boards

      • Board of Trustees
      • Scientific Advisory Board
      • IPB Management / Board of Directors
      • Scientific Council
      • Authorized Representatives of the IPB
      • Staff Council
      • Statutes
    • Administration and Infrastructure

      • Secretariat & All Staff
      • Working Groups
        • Human Resources
        • Finance & Accounting
        • Purchasing
        • IT & Technical Support
        • Experimental Nursery
        • Facility Management
        • Library
        • Digitalization
    • Energy Management

      • Objectives and Measures
      • Energy Management Team
    • Diversity, Family and Equality

    • Public Tendering

    • Patents and Licensing

    • The IPB Welcoming Culture

    • Guest Houses

    • IPB Site Map

    • Brief IPB History

      • Bildergalerie zur Historie
      • Alte Filmsequenzen zum Institut
      • Historischer Massenspektrograph
    • Alumni Network

      • The IPB as a career launching pad
  • Career
    • Data protection information for applicants

    • PhD Program

      • PhD Student Representatives
      • DoCou - Doctoral Training Courses
      • PSSC
    • Postdocs

    • Berufsausbildung

  • Public Relations
    • News

      • 2024
      • 2023
      • 2022
      • Archiv Aktuelles
        • 2021
        • 2020
        • 2019
        • 2018
        • 2017
        • 2016
        • 2015
        • 2014
        • vor 2014
    • News Ticker Science

      • News Ticker 2024
      • News Ticker 2023
      • News Ticker 2022
      • News Ticker Archive
        • News Ticker 2021
        • News Ticker 2020
        • News Ticker 2019
    • Press Releases

      • 2024
      • 2023
      • 2022
      • Archive Press Releases
        • 2021
        • 2020
        • 2019
        • 2018
        • 2017
        • 2016
        • 2015
        • 2014
        • 2013
        • 2012
        • 2011
        • 2010
        • 2009
        • 2008
        • 2007
        • 2006
        • 2005
        • 2004
        • 2003
        • 2002
    • IPB Pressespiegel

    • Lange Nacht, die Wissen schafft

      • 2024 Long Night of Sciences
      • 2022 Long Night of Sciences
    • IPB Newsletter

    • Printed / Information Material

    • Scientific Reports / Research Highlights

    • Events

      • 2024 Leibniz Plant Biochemistry Symposium
    • Cover Art

    • Citizen Science: Pilzberatung

      • Das Reich der Pilze
      • Pilzberatung
      • Forschung an Pilzen
  • Contact
    • Directions for Visitors

    • Staff Directory

    • Imprint

    • Data Protection

    • Accessibility

  1. IPB Halle
  2. Research
  3. Publications

    • Research Mission and Profile
    • Trenner 0
    • Molecular Signal Processing
      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Nutrient Sensing
        • Symbiosis Signaling
        • Jasmonate Signaling
    • Bioorganic Chemistry
      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Bioactives
        • Natural Products & Metabolomics
        • Biotechnology
        • Biofunctional Synthesis
        • Computational Chemistry
        • Data & Resources
    • Biochemistry of Plant Interactions
      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Calcium-dependent Protein Kinases
        • Cellular Signaling
        • Nuclear Processes in Plant Defense
    • Cell and Metabolic Biology
      • Secretariat & All Staff
      • Technical Resources
      • Publications
      • Research Groups
        • Glandular Trichomes and Isoprenoid Biosynthesis
        • Jasmonate Function & Mycorrhiza
        • Phenylpropanoid Metabolism
        • Synthetic Biology
    • Independent Junior Research Groups
      • Research Groups
        • Receptor Biochemistry
    • Program Center MetaCom
      • Secretariat & All staff
      • Publikationen
      • Our Equipment
      • Research Groups
        • Metabolomics Facility
        • MetaCom Analytical Laboratory
        • Computational Plant Biochemistry
        • Biochemical Genetics of Metabolic Plasticity
    • Trenner 1
    • Publications
    • Good Scientific Practice
    • Research Funding
    • Trenner
    • Networks and Collaborative Projects
      • Collaborative Projects as Coordinator
        • Completed Projects as Coordinator
      • Collaborative Projects as Partner
        • Completed Projects as Partner
      • Networks
    • Symposia and Colloquia
      • Lectures
        • IPB Seminars
      • Leibniz Plant Biochemistry Symposia
    • Trenner
    • Alumni Research Groups
      • Research Groups
        • Auxin Signaling
        • Bioorganic Chemistry
        • Designer Glycans
        • Jasmonate Mode of Action
        • Protein Recognition and Degradation
        • Regulatory RNAs (MLU-associated group)
        • Signal Integration
        • Ubiquitination in Immunity
        • Cellular Coordination

Advanced Search

  • Type of publication
    • Publication 6
  • Year
    • 1994 3
      1997 6
  • Journal / Volume / Preprint Server Sorted by frequency and by alphabetical order
    • Phytochemistry 33
      FEBS Lett. 15
      Planta 9
      Bot. Acta 6
      J. Biol. Chem. 6
      J. Prakt. Chem. 6
      Magn. Reson. Chem. 6
      Plant Physiol. 6
      Proc. Natl. Acad. Sci. U.S.A. 6
      Tetrahedron 6
      Tetrahedron Lett. 6
      0 5
      Acta Chem. Scand. 3
      Anal. Biochem. 3
      Angew. Chem. 3
      Angew. Chem. Int. Ed. 3
      BIOspektrum 3
      Chromatographia 3
      J. Plant Physiol. 3
      Pharmazie 3
      Plant Cell Physiol. 3
      Science 3
      Synlett 3
      Synthesis 3
      Trends Plant Sci. 3
      Adv. Exp. Med. Biol. 1
  • Author Sorted by frequency and by alphabetical order
    • Hause, B. 6
      Wasternack, C. 6
      Feussner, I. 3
      Feussner, K. 3
      Fritz, I. G. 3
      Ullrich, W. R. 3
  • Year
  • Type of publication
Search narrowed by: Year: 1997 Journal / Volume / Preprint Server Sorted by frequency and by alphabetical order: Bot. Acta Remove all filters
Displaying results 1 to 6 of 6.
  • Results as:
  • Print view
  • Endnote (RIS)
  • BibTeX
  • Table: CSV | HTML
Results per page:
  • 1

Publications

Feussner, I.; Fritz, I. G.; Hause, B.; Ullrich, W. R.; Wasternack, C.; Induction of a new Lipoxygenase Form in Cucumber Leaves by Salicylic Acid or 2,6-Dichloroisonicotinic Acid Bot. Acta 110 101-108 (1997) DOI: 10.1111/j.1438-8677.1997.tb00616.x
  • Abstract
  • BibText
  • RIS

Changes in lipoxygenase (LOX) protein pattern and/or activity were investigated in relation to acquired resistance of cucumber (Cucumis sativus L.) leaves against two powdery mildews, Sphaerotheca fuliginea (Schlecht) Salmon and Erysiphe cichoracearum DC et Merat. Acquired resistance was established by spraying leaves with salicylic acid (SA) or 2,6‐dichloroisonicotinic acid (INA) and estimated in whole plants by infested leaf area compared to control plants. SA was more effective than INA. According to Western blots, untreated cucumber leaves contained a 97 kDa LOX form, which remained unchanged for up to 48 h after pathogen inoculation. Upon treatment with SA alone for 24 h or with INA plus pathogen, an additional 95 kDa LOX form appeared which had an isoelectric point in the alkaline range. For the induction of this form, a threshold concentration of 1 mM SA was required, higher SA concentrations did not change LOX‐95 expression which remained similar between 24 h and 96 h but further increased upon mildew inoculation. Phloem exudates contained only the LOX‐97 form, in intercellular washing fluid no LOX was detected. dichloroisonicotinic localization revealed LOX protein in the cytosol of the mesophyll cells without differences between the forms.

Publications

Hause, B.; Feussner, K.; Wasternack, C.; Nuclear Location of a Diadenosine 5′,5′”-P1,P4Tetraphosphate (Ap4A) Hydrolase in Tomato Cells Grown in Suspension Cultures Bot. Acta 110 452-457 (1997) DOI: 10.1111/j.1438-8677.1997.tb00662.x
  • Abstract
  • BibText
  • RIS

Diadenosine 5′,5′”‐P1,P4‐tetraphosphate (Ap4A) cleaving enzymes are assumed to regulate intracellular levels of Ap4A, a compound known to affect cell proliferation and stress responses. From plants an Ap4A hydrolase was recently purified using tomato cells grown in suspension. It was partially sequenced and a peptide antibody was prepared (Feussner et al., 1996). Using this polyclonal monospecific antibody, an abundant nuclear location of Ap4A hydrolase in 4‐day‐old cells of atomato cell suspension culture is demonstrated here by means of immunocytochemical techniques using FITC (fluorescein‐5‐isothiocyanate) labeled secondary antibodies. The microscopic analysis of the occurrence of Ap4A hydrolase performed for different stages of the cell cycle visualized by parallel DAPI (4,6‐diamidino‐2‐phenylindole) staining revealed that the protein accumulates within nuclei of cells in the interphase, but is absent in the nucleus as well as cytoplasm during all stages of mitosis. This first intracellular localization of an Ap4A degrading enzyme within the nucleus and its pattern of appearance during the cell cycle is discussed in relation to the suggested role of Ap4A in triggering DNA synthesis and cell proliferation.

Publications

Feussner, I.; Fritz, I. G.; Hause, B.; Ullrich, W. R.; Wasternack, C.; Induction of a new Lipoxygenase Form in Cucumber Leaves by Salicylic Acid or 2,6-Dichloroisonicotinic Acid Bot. Acta 110 101-108 (1997) DOI: 10.1111/j.1438-8677.1997.tb00616.x
  • Abstract
  • BibText
  • RIS

Changes in lipoxygenase (LOX) protein pattern and/or activity were investigated in relation to acquired resistance of cucumber (Cucumis sativus L.) leaves against two powdery mildews, Sphaerotheca fuliginea (Schlecht) Salmon and Erysiphe cichoracearum DC et Merat. Acquired resistance was established by spraying leaves with salicylic acid (SA) or 2,6‐dichloroisonicotinic acid (INA) and estimated in whole plants by infested leaf area compared to control plants. SA was more effective than INA. According to Western blots, untreated cucumber leaves contained a 97 kDa LOX form, which remained unchanged for up to 48 h after pathogen inoculation. Upon treatment with SA alone for 24 h or with INA plus pathogen, an additional 95 kDa LOX form appeared which had an isoelectric point in the alkaline range. For the induction of this form, a threshold concentration of 1 mM SA was required, higher SA concentrations did not change LOX‐95 expression which remained similar between 24 h and 96 h but further increased upon mildew inoculation. Phloem exudates contained only the LOX‐97 form, in intercellular washing fluid no LOX was detected. dichloroisonicotinic localization revealed LOX protein in the cytosol of the mesophyll cells without differences between the forms.

Publications

Hause, B.; Feussner, K.; Wasternack, C.; Nuclear Location of a Diadenosine 5′,5′”-P1,P4Tetraphosphate (Ap4A) Hydrolase in Tomato Cells Grown in Suspension Cultures Bot. Acta 110 452-457 (1997) DOI: 10.1111/j.1438-8677.1997.tb00662.x
  • Abstract
  • BibText
  • RIS

Diadenosine 5′,5′”‐P1,P4‐tetraphosphate (Ap4A) cleaving enzymes are assumed to regulate intracellular levels of Ap4A, a compound known to affect cell proliferation and stress responses. From plants an Ap4A hydrolase was recently purified using tomato cells grown in suspension. It was partially sequenced and a peptide antibody was prepared (Feussner et al., 1996). Using this polyclonal monospecific antibody, an abundant nuclear location of Ap4A hydrolase in 4‐day‐old cells of atomato cell suspension culture is demonstrated here by means of immunocytochemical techniques using FITC (fluorescein‐5‐isothiocyanate) labeled secondary antibodies. The microscopic analysis of the occurrence of Ap4A hydrolase performed for different stages of the cell cycle visualized by parallel DAPI (4,6‐diamidino‐2‐phenylindole) staining revealed that the protein accumulates within nuclei of cells in the interphase, but is absent in the nucleus as well as cytoplasm during all stages of mitosis. This first intracellular localization of an Ap4A degrading enzyme within the nucleus and its pattern of appearance during the cell cycle is discussed in relation to the suggested role of Ap4A in triggering DNA synthesis and cell proliferation.

Publications

Hause, B.; Feussner, K.; Wasternack, C.; Nuclear Location of a Diadenosine 5′,5′”-P1,P4Tetraphosphate (Ap4A) Hydrolase in Tomato Cells Grown in Suspension Cultures Bot. Acta 110 452-457 (1997) DOI: 10.1111/j.1438-8677.1997.tb00662.x
  • Abstract
  • BibText
  • RIS

Diadenosine 5′,5′”‐P1,P4‐tetraphosphate (Ap4A) cleaving enzymes are assumed to regulate intracellular levels of Ap4A, a compound known to affect cell proliferation and stress responses. From plants an Ap4A hydrolase was recently purified using tomato cells grown in suspension. It was partially sequenced and a peptide antibody was prepared (Feussner et al., 1996). Using this polyclonal monospecific antibody, an abundant nuclear location of Ap4A hydrolase in 4‐day‐old cells of atomato cell suspension culture is demonstrated here by means of immunocytochemical techniques using FITC (fluorescein‐5‐isothiocyanate) labeled secondary antibodies. The microscopic analysis of the occurrence of Ap4A hydrolase performed for different stages of the cell cycle visualized by parallel DAPI (4,6‐diamidino‐2‐phenylindole) staining revealed that the protein accumulates within nuclei of cells in the interphase, but is absent in the nucleus as well as cytoplasm during all stages of mitosis. This first intracellular localization of an Ap4A degrading enzyme within the nucleus and its pattern of appearance during the cell cycle is discussed in relation to the suggested role of Ap4A in triggering DNA synthesis and cell proliferation.

Publications

Feussner, I.; Fritz, I. G.; Hause, B.; Ullrich, W. R.; Wasternack, C.; Induction of a new Lipoxygenase Form in Cucumber Leaves by Salicylic Acid or 2,6-Dichloroisonicotinic Acid Bot. Acta 110 101-108 (1997) DOI: 10.1111/j.1438-8677.1997.tb00616.x
  • Abstract
  • BibText
  • RIS

Changes in lipoxygenase (LOX) protein pattern and/or activity were investigated in relation to acquired resistance of cucumber (Cucumis sativus L.) leaves against two powdery mildews, Sphaerotheca fuliginea (Schlecht) Salmon and Erysiphe cichoracearum DC et Merat. Acquired resistance was established by spraying leaves with salicylic acid (SA) or 2,6‐dichloroisonicotinic acid (INA) and estimated in whole plants by infested leaf area compared to control plants. SA was more effective than INA. According to Western blots, untreated cucumber leaves contained a 97 kDa LOX form, which remained unchanged for up to 48 h after pathogen inoculation. Upon treatment with SA alone for 24 h or with INA plus pathogen, an additional 95 kDa LOX form appeared which had an isoelectric point in the alkaline range. For the induction of this form, a threshold concentration of 1 mM SA was required, higher SA concentrations did not change LOX‐95 expression which remained similar between 24 h and 96 h but further increased upon mildew inoculation. Phloem exudates contained only the LOX‐97 form, in intercellular washing fluid no LOX was detected. dichloroisonicotinic localization revealed LOX protein in the cytosol of the mesophyll cells without differences between the forms.

  • 1

Print

  • IPB Halle
  • News
  • Lectures
  • Publications
  • Public Tendering
  • IPB Remote & Mail
  • Imprint
  • Data Protection
  • Accessibility
  • Die Leibniz-Gemeinschaft
  • Wege zu einer pflanzenbasierten Wirtschaft
  • Martin-Luther Universität Halle
  • Erfolgsfaktor Familie
  • TOTAL E-QUALITY
  • Research
    • Research Mission and Profile

    • Molecular Signal Processing

    • Bioorganic Chemistry

    • Biochemistry of Plant Interactions

    • Cell and Metabolic Biology

    • Independent Junior Research Groups

    • Program Center MetaCom

    • Publications

    • Good Scientific Practice

    • Research Funding

    • Networks and Collaborative Projects

    • Symposia and Colloquia

    • Alumni Research Groups

  • Infrastructure
    • Databases and Tools

    • Technical Resources

    • Imaging Unit

    • Greenhouses and Phytochambers

    • Library Services

  • Institute
    • Organizational Chart

    • Management and Boards

    • Administration and Infrastructure

    • Energy Management

    • Diversity, Family and Equality

    • Public Tendering

    • Patents and Licensing

    • The IPB Welcoming Culture

    • Guest Houses

    • IPB Site Map

    • Brief IPB History

    • Alumni Network

  • Career
    • Data protection information for applicants

    • PhD Program

    • Postdocs

    • Berufsausbildung

  • Public Relations
    • News

    • News Ticker Science

    • Press Releases

    • IPB Pressespiegel

    • Lange Nacht, die Wissen schafft

    • IPB Newsletter

    • Printed / Information Material

    • Scientific Reports / Research Highlights

    • Events

    • Cover Art

    • Citizen Science: Pilzberatung

  • IPB Remote & Mail