logo ipb
logo ipb mobile
x
  • Deutsch
  • English
Benutzeranmeldung
  • Forschung
    • Leitbild und Forschungsprofil

    • Molekulare Signalverarbeitung

      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung MSV
      • Publikationen
      • Forschungsgruppen
        • Nährstoffperzeption
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Symbiose-Signaling
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Jasmonat-Signaling
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
    • Natur- und Wirkstoffchemie

      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung NWC
      • Publikationen
      • Forschungsgruppen
        • Wirkstoffe
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Naturstoffe & Metabolomics
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Biotechnologie
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Biofunktionale Synthese
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Computerchemie
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Daten & Ressourcen
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
    • Biochemie pflanzlicher Interaktionen

      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung BPI
      • Publikationen
      • Forschungsgruppen
        • Kalzium-abhängige Proteinkinasen, CDPKs
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Zelluläre Signaltransduktion
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Metaboliten-basierte Abwehrmechanismen
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Zellkernprozesse in der pflanzlichen Abwehr
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
    • Stoffwechsel- und Zellbiologie

      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung SZB
      • Publikationen
      • Forschungsgruppen
        • Glanduläre Trichome und Isoprenoidbiosynthese
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Jasmonatfunktion & Mykorrhiza
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Phenylpropanstoffwechsel
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • Synthetische Biologie
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
    • Unabhängige Nachwuchsgruppen

      • Forschungsgruppen
        • Rezeptorbiochemie
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
    • Program Center MetaCom

      • Sekretariat & Alle Mitarbeiter
      • Publikationen
      • Unser Equipment
      • Forschungsgruppen
        • MetaCom Metabolomics-Einheit
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Methoden
        • MetaCom Analytisches Labor
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Methoden
        • Computergestützte Pflanzenbiochemie
          • Projekte
          • Mitarbeiter
          • Publikationen
          • Kooperationen
        • MetaCom Juniorforschungsgruppe
          • Projekte
          • Mitarbeiter
    • Publikationen

    • Gute Wissenschaftliche Praxis

    • Forschungsförderung

    • Netzwerke und Verbundprojekte

      • Verbundprojekte als Koordinator
        • Abgeschlossene Projekte als Koordinator
      • Verbundprojekte als Partner
        • Beendete Projekte als Partner
      • Netzwerke
    • Symposien und Kolloquien

      • Vorträge
        • IPB-Seminare
      • Leibniz Plant Biochemistry Symposia
    • Alumni-Forschungsgruppen

      • Forschungsgruppen
        • Auxin-Signaltransduktion
          • Projekte
          • Publikationen
        • Bioorganische Chemie
          • Projekte
          • Publikationen
        • Designer-Glykane
          • Projekte
          • Publikationen
        • Jasmonat-Wirkungsweise
          • Publikationen
        • Proteinerkennung und -abbau
          • Projekte
          • Publikationen
        • Regulatorische RNAs (MLU-assoziiert)
          • Projekte
          • Publikationen
        • Signalintegration
          • Projekte
          • Publikationen
        • Ubiquitinierung in der Immunantwort
          • Projekte
          • Publikationen
        • Zelluläre Koordination
          • Projekte
          • Publikationen
  • Infrastruktur
    • Datenbanken und Tools

      • XCMS
      • Rdisop
      • CAMERA
      • MetShot
      • MassBank
      • MetFrag
      • MetFamily
      • PaCeQuant
      • CytoskeletonAnalyzer
      • GoldenMutagenesis
      • cisHighlight
      • FlagScreen
      • RootDetection
    • Technische Ausstattung

    • Zellbiologie-Plattform

    • Gewächshäuser und Phytokammern

    • Bibliothek

      • Online Public Access Catalogue, OPAC
      • Elektronische Zeitschriftenbibliothek, EZB
      • Angebote für Mitarbeiter
  • Institut
    • Organigramm

    • Leitung und Gremien

      • Stiftungsrat
      • Wissenschaftlicher Beirat
      • Geschäftsführung / Direktorium
      • Wissenschaftlicher Institutsrat
      • Beauftragte
      • Personalrat
      • Satzung
    • Administration und Infrastruktur

      • Sekretariat & Alle Mitarbeiter
      • Arbeitsgruppen
        • Personal
        • Finanzen
        • Einkauf
        • IT & Geräteservice
        • Versuchsgärtnerei
        • Gebäude & Liegenschaften
        • Bibliothek
        • Digitalisierung
    • Energiemanagement

      • Ziele & Maßnahmen
      • Energiemanagementteam
    • Vielfalt, Familie, Chancengleichheit

      • Diversität
      • Chancengleichheit
      • Familienfreundlichkeit
      • Fort- und Weiterbildungen
      • Eingliederung und Gesundheit
      • Allgemeines Gleichbehandlungsgesetz (AGG)
    • Öffentliche Ausschreibungen

    • Patente und Lizenzen

    • IPB Welcoming Culture

    • Gästehäuser

    • IPB-Lageplan

    • Geschichte des Instituts

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

      • Karrieresprungbrett IPB
  • Karriere
    • Datenschutzhinweise für Bewerber

    • Doktorandenprogramm

      • Doktorandenvertretung
      • DoCou - Doctoral Training Courses
      • Plant Science Student Conference
    • Postdoktoranden

    • Berufsausbildung

  • Öffentlichkeit
    • Aktuelles

      • 2024
      • 2023
      • 2022
      • Archiv Aktuelles
        • 2021
        • 2020
        • 2019
        • 2018
        • 2017
        • 2016
        • 2015
        • 2014
        • vor 2014
    • Newsticker Wissenschaft

      • Newsticker 2024
      • Newsticker 2023
      • Newsticker 2022
      • Archiv Newsticker
        • Newsticker 2021
        • Newsticker 2020
        • Newsticker 2019
    • Pressemitteilungen

      • 2024
      • 2023
      • 2022
      • Archiv Pressemitteilungen
        • 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: PROGRAMM

    • IPB Newsletter

    • IPB Geschichtsbuch

    • Scientific Reports / Research Highlights

    • Veranstaltungen

      • 2024 Lange Nacht der Wissenschaft
      • 2024 Leibniz Plant Biochemistry Symposium
      • Archiv Veranstaltungen
    • Cover Art

    • Citizen Science: Pilzberatung

      • Das Reich der Pilze
      • Pilzberatung
      • Forschung an Pilzen
  • Kontakt
    • Anfahrt

    • Mitarbeiterverzeichnis

    • Impressum

    • Datenschutz

    • Barrierefreiheit

  1. Startseite
  2. Forschung
  3. Publikationen

    • Leitbild und Forschungsprofil
    • Trenner 0
    • Molekulare Signalverarbeitung
      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung MSV
      • Publikationen
      • Forschungsgruppen
        • Nährstoffperzeption
        • Symbiose-Signaling
        • Jasmonat-Signaling
    • Natur- und Wirkstoffchemie
      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung NWC
      • Publikationen
      • Forschungsgruppen
        • Wirkstoffe
        • Naturstoffe & Metabolomics
        • Biotechnologie
        • Biofunktionale Synthese
        • Computerchemie
        • Daten & Ressourcen
    • Biochemie pflanzlicher Interaktionen
      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung BPI
      • Publikationen
      • Forschungsgruppen
        • Kalzium-abhängige Proteinkinasen, CDPKs
        • Zelluläre Signaltransduktion
        • Metaboliten-basierte Abwehrmechanismen
        • Zellkernprozesse in der pflanzlichen Abwehr
    • Stoffwechsel- und Zellbiologie
      • Sekretariat & Alle Mitarbeiter
      • Technische Ausstattung SZB
      • Publikationen
      • Forschungsgruppen
        • Glanduläre Trichome und Isoprenoidbiosynthese
        • Jasmonatfunktion & Mykorrhiza
        • Phenylpropanstoffwechsel
        • Synthetische Biologie
    • Unabhängige Nachwuchsgruppen
      • Forschungsgruppen
        • Rezeptorbiochemie
    • Program Center MetaCom
      • Sekretariat & Alle Mitarbeiter
      • Publikationen
      • Unser Equipment
      • Forschungsgruppen
        • MetaCom Metabolomics-Einheit
        • MetaCom Analytisches Labor
        • Computergestützte Pflanzenbiochemie
        • MetaCom Juniorforschungsgruppe
    • Trenner 1
    • Publikationen
    • Gute Wissenschaftliche Praxis
    • Forschungsförderung
    • Trenner
    • Netzwerke und Verbundprojekte
      • Verbundprojekte als Koordinator
        • Abgeschlossene Projekte als Koordinator
      • Verbundprojekte als Partner
        • Beendete Projekte als Partner
      • Netzwerke
    • Symposien und Kolloquien
      • Vorträge
        • IPB-Seminare
      • Leibniz Plant Biochemistry Symposia
    • Trenner
    • Alumni-Forschungsgruppen
      • Forschungsgruppen
        • Auxin-Signaltransduktion
        • Bioorganische Chemie
        • Designer-Glykane
        • Jasmonat-Wirkungsweise
        • Proteinerkennung und -abbau
        • Regulatorische RNAs (MLU-assoziiert)
        • Signalintegration
        • Ubiquitinierung in der Immunantwort
        • Zelluläre Koordination

Suchfilter

  • Typ der Publikation
    • Publikation (12)
  • Erscheinungsjahr
    • 1993 (1)
      1994 (1)
      1996 (1)
      1999 (1)
      2002 (1)
      2003 (1)
      2007 (2)
      2010 (1)
      2014 (1)
      2022 (1)
      2023 (1)
  • Journal / Buchreihe / Preprint-Server Nach Häufigkeit alphabetisch sortiert
    • Phytochemistry (132)
      Plant J. (95)
      Plant Physiol. (94)
      0 (84)
      Plant Cell (55)
      Planta (54)
      bioRxiv (51)
      New Phytol. (50)
      Methods Mol. Biol. (41)
      Front. Plant Sci. (40)
      Int. J. Mol. Sci. (33)
      J. Biol. Chem. (33)
      J. Exp. Bot. (33)
      PLOS ONE (30)
      FEBS Lett. (29)
      Molecules (28)
      Vietnam J. Chem. (26)
      Proc. Natl. Acad. Sci. U.S.A. (25)
      Angew. Chem. Int. Ed. (22)
      J. Plant Physiol. (21)
      Angew. Chem. (18)
      Tetrahedron Lett. (18)
      Trends Plant Sci. (18)
      Plant Cell Physiol. (17)
      Sci. Rep. (17)
      Metabolomics (16)
      Mol. Plant Microbe Interact. (16)
      ChemBioChem (15)
      Plants (15)
      Anal. Bioanal. Chem. (14)
      BMC Plant Biol. (14)
      J. Agr. Food Chem. (14)
      J. Org. Chem. (14)
      Nat. Prod. Commun. (14)
      Plant Signal Behav. (14)
      Plant Cell Environ. (13)
      Plant Mol. Biol. (13)
      Adv. Exp. Med. Biol. (12)
      Anal. Chem. (12)
      Biochem. Syst. Ecol. (12)
      Chem. Commun. (12)
      Curr. Biol. (12)
      Curr. Opin. Plant Biol. (12)
      Food Chem. (12)
      J. Nat. Prod. (12)
      Metabolites (12)
      Org. Biomol. Chem. (12)
      Synthesis (12)
      Biol. Chem. (11)
      Eur. J. Org. Chem. (11)
      Nat. Commun. (11)
      Planta Med. (11)
      Tetrahedron (11)
      BMC Bioinformatics (10)
      J. Cheminform. (10)
      J. Mass Spectrom. (10)
      Nat. Prod. Res. (10)
      Eur. J. Med. Chem. (9)
      Mol. Plant (9)
      Synlett (9)
      Z. Naturforsch. C (9)
      Beilstein J. Org. Chem. (8)
      ChemCatChem (8)
      Fitoterapia (8)
      J. Proteome Res. (8)
      Mol. Plant Pathol. (8)
      Mycorrhiza (8)
      Phytochem. Anal. (8)
      Plant Biotechnol. J. (8)
      Proteomics (8)
      Theor. Appl. Genet. (8)
      Amino Acids (7)
      Chem.-Eur. J. (7)
      Org. Lett. (7)
      Pharmazie (7)
      Plant Growth Regul. (7)
      Plant Sci. (7)
      ACS Catal. (6)
      BIOspektrum (6)
      Bio Protoc. (6)
      Biochimie (6)
      Biomolecules (6)
      Chem. Biodivers. (6)
      Dalton Trans. (6)
      EMBO J. (6)
      Eur. J. Biochem. (6)
      J. Inorg. Biochem. (6)
      J. Med. Chem. (6)
      J. Pharm. Biomed. Anal. (6)
      Nat. Chem. Biol. (6)
      Nat. Plants (6)
      PLOS Pathog. (6)
      Physiol. Plant. (6)
      Plant Biol. (6)
      Plant Cell Tiss. Organ Cult. (6)
      RSC Adv. (6)
      Science (6)
      ACS Chem. Biol. (5)
      Anal. Biochem. (5)
      Biologie in unserer Zeit (5)
  • Autor Nach Häufigkeit alphabetisch sortiert
    • Miersch, O. (5)
      Abdala, G. (4)
      Castro, G. (2)
      Hause, B. (2)
      Schliemann, W. (2)
      Schneider, G. (2)
      Vigliocco, A. (2)
      Wasternack, C. (2)
      Abel, S. (1)
      Abhishek, S. (1)
      Agostini, E. (1)
      Alemano, S. (1)
      Atzorn, R. (1)
      Bajaj, P. (1)
      Balbach, J. (1)
      Beisser, D. (1)
      Bhandari, D. D. (1)
      Bormann, J. (1)
      Buscaill, P. (1)
      Davari, M. D. (1)
      Dodds, I. (1)
      Donnelly, D. (1)
      Eschen-Lippold, L. (1)
      Feussner, I. (1)
      Forchetti, G. (1)
      Gopalswamy, M. (1)
      Guiñazú, M. M. (1)
      Gupta, M. D. (1)
      Halder, V. (1)
      Heilmann, G. (1)
      Henze, M. (1)
      Kaiser, M. (1)
      Kaschani, F. (1)
      Kombrink, E. (1)
      Krahn, J. H. (1)
      Kramell, R. (1)
      Kumar, A. (1)
      Morimoto, K. (1)
      Ninck, S. (1)
      Nitin, K. (1)
      Ortel, B. (1)
      Pearce, D. (1)
      Pedranzani, H. (1)
      Rajakumara, E. (1)
      Resch, S. (1)
      Saniya, D. (1)
      Scholtysik, R. (1)
      Schwaneberg, U. (1)
      Sewald, L. (1)
      Sierra-de-Grado, R. (1)
      Tizio, R. (1)
      Wishart, C. (1)
      van der Hoorn, R. A. L. (1)
  • Erscheinungsjahr
  • Typ der Publikation
Aktive Filter: Journal / Buchreihe / Preprint-Server Nach Häufigkeit alphabetisch sortiert: Plant Growth Regul. Journal / Buchreihe / Preprint-Server Nach Häufigkeit alphabetisch sortiert: ACS Chem. Biol. Alle Filter entfernen
Zeige Ergebnisse 1 bis 10 von 12.
  • Ergebnisse als:
  • Druckansicht
  • Endnote (RIS)
  • BibTeX
  • Tabelle: CSV | HTML
Ergebnisse pro Seite:
  • 1
  • 2

Publikation

Ninck, S.; Halder, V.; Krahn, J. H.; Beisser, D.; Resch, S.; Dodds, I.; Scholtysik, R.; Bormann, J.; Sewald, L.; Gupta, M. D.; Heilmann, G.; Bhandari, D. D.; Morimoto, K.; Buscaill, P.; Hause, B.; van der Hoorn, R. A. L.; Kaschani, F.; Kaiser, M.; Chemoproteomics Reveals the Pan-HER Kinase Inhibitor Neratinib To Target an Arabidopsis Epoxide Hydrolase Related to Phytohormone Signaling ACS Chem. Biol. 18 1076-1088 (2023) DOI: 10.1021/acschembio.2c00322
  • Abstract
  • Internet
  • BibText
  • RIS

Plant phytohormone pathways are regulated by an intricate network of signaling components and modulators, many of which still remain unknown. Here, we report a forward chemical genetics approach for the identification of functional SA agonists in Arabidopsis thaliana that revealed Neratinib (Ner), a covalent pan-HER kinase inhibitor drug in humans, as a modulator of SA signaling. Instead of a protein kinase, chemoproteomics unveiled that Ner covalently modifies a surface-exposed cysteine residue of Arabidopsis epoxide hydrolase isoform 7 (AtEH7), thereby triggering its allosteric inhibition. Physiologically, the Ner application induces jasmonate metabolism in an AtEH7-dependent manner as an early response. In addition, it modulates PATHOGENESIS RELATED 1 (PR1) expression as a hallmark of SA signaling activation as a later effect. AtEH7, however, is not the exclusive target for this physiological readout induced by Ner. Although the underlying molecular mechanisms of AtEH7-dependent modulation of jasmonate signaling and Ner-induced PR1-dependent activation of SA signaling and thus defense response regulation remain unknown, our present work illustrates the powerful combination of forward chemical genetics and chemical proteomics for identifying novel phytohormone signaling modulatory factors. It also suggests that marginally explored metabolic enzymes such as epoxide hydrolases may have further physiological roles in modulating signaling.

Publikation

Rajakumara, E.; Abhishek, S.; Nitin, K.; Saniya, D.; Bajaj, P.; Schwaneberg, U.; Davari, M. D.; Structure and cooperativity in substrate–enzyme interactions: Perspectives on enzyme engineering and inhibitor design ACS Chem. Biol. 17 266-280 (2022) DOI: 10.1021/acschembio.1c00500
  • Abstract
  • Internet
  • BibText
  • RIS

Enzyme-based synthetic chemistry provides a green way to synthesize industrially important chemical scaffolds and provides incomparable substrate specificity and unmatched stereo-, regio-, and chemoselective product formation. However, using biocatalysts at an industrial scale has its challenges, like their narrow substrate scope, limited stability in large-scale one-pot reactions, and low expression levels. These limitations can be overcome by engineering and fine-tuning these biocatalysts using advanced protein engineering methods. A detailed understanding of the enzyme structure and catalytic mechanism and its structure–function relationship, cooperativity in binding of substrates, and dynamics of substrate–enzyme–cofactor complexes is essential for rational enzyme engineering for a specific purpose. This Review covers all these aspects along with an in-depth categorization of various industrially and pharmaceutically crucial bisubstrate enzymes based on their reaction mechanisms and their active site and substrate/cofactor-binding site structures. As the bisubstrate enzymes constitute around 60% of the known industrially important enzymes, studying their mechanism of actions and structure–activity relationship gives significant insight into deciding the targets for protein engineering for developing industrial biocatalysts. Thus, this Review is focused on providing a comprehensive knowledge of the bisubstrate enzymes’ structure, their mechanisms, and protein engineering approaches to develop them into industrial biocatalysts.

Publikation

Kumar, A.; Gopalswamy, M.; Wishart, C.; Henze, M.; Eschen-Lippold, L.; Donnelly, D.; Balbach, J.; N-Terminal Phosphorylation of Parathyroid Hormone (PTH) Abolishes Its Receptor Activity ACS Chem. Biol. 9 2465-2470 (2014) DOI: 10.1021/cb5004515
  • Abstract
  • BibText
  • RIS

The parathyroid hormone (PTH) is an 84-residue peptide, which regulates the blood Ca2+ level via GPCR binding and subsequent activation of intracellular signaling cascades. PTH is posttranslationally phosphorylated in the parathyroid glands; however, the functional significance of this processes is not well characterized. In the present study, mass spectrometric analysis revealed three sites of phosphorylation, and NMR spectroscopy assigned Ser1, Ser3, and Ser17 as modified sites. These sites are located at the N-terminus of the hormone, which is important for receptor recognition and activation. NMR shows further that the three phosphate groups remotely disturb the α-helical propensity up to Ala36. An intracellular cAMP accumulation assay elucidated the biological significance of this phosphorylation because it ablated the PTH-mediated signaling. Our studies thus shed light on functional implications of phosphorylation at native PTH as an additional level of regulation.

Publikation

Wasternack, C.; Kombrink, E.; Jasmonates: Structural Requirements for Lipid-Derived Signals Active in Plant Stress Responses and Development ACS Chem. Biol. 5 63-77 (2010) DOI: 10.1021/cb900269u
  • Abstract
  • BibText
  • RIS

Jasmonates are lipid-derived signals that mediate plant stress responses and development processes. Enzymes participating in biosynthesis of jasmonic acid (JA) (1, 2) and components of JA signaling have been extensively characterized by biochemical and molecular-genetic tools. Mutants of Arabidopsis and tomato have helped to define the pathway for synthesis of jasmonoyl-isoleucine (JA-Ile), the active form of JA, and to identify the F-box protein COI1 as central regulatory unit. However, details of the molecular mechanism of JA signaling have only recently been unraveled by the discovery of JAZ proteins that function in transcriptional repression. The emerging picture of JA perception and signaling cascade implies the SCFCOI1 complex operating as E3 ubiquitin ligase that upon binding of JA-Ile targets JAZ repressors for degradation by the 26S-proteasome pathway, thereby allowing the transcription factor MYC2 to activate gene expression. The fact that only one particular stereoisomer, (+)-7-iso-JA-l-Ile (4), shows high biological activity suggests that epimerization between active and inactive diastereomers could be a mechanism for turning JA signaling on or off. The recent demonstration that COI1 directly binds (+)-7-iso-JA-l-Ile (4) and thus functions as JA receptor revealed that formation of the ternary complex COI1-JA-Ile-JAZ is an ordered process. The pronounced differences in biological activity of JA stereoisomers also imply strict stereospecific control of product formation along the JA biosynthetic pathway. The pathway of JA biosynthesis has been unraveled, and most of the participating enzymes are well-characterized. For key enzymes of JA biosynthesis the crystal structures have been established, allowing insight into the mechanisms of catalysis and modes of substrate binding that lead to formation of stereospecific products.

Publikation

Pedranzani, H.; Sierra-de-Grado, R.; Vigliocco, A.; Miersch, O.; Abdala, G.; Cold and water stresses produce changes in endogenous jasmonates in two populations of Pinus pinaster Ait Plant Growth Regul. 52 111-116 (2007) DOI: 10.1007/s10725-007-9166-2
  • Abstract
  • BibText
  • RIS

There is considerable evidence suggesting that jasmonates (JAs) play a role in plant resistance against abiotic stress. It is well known that in Angiosperms JAs are involved in the defense response, however there is little information about their role in Gymnosperms. Our proposal was to study the involvement of JAs in Pinus pinaster Ait. reaction to cold and water stress, and to compare the response of two populations of different provenances (Gredos and Bajo Tiétar) to these stresses. We detected 12-oxo-phytodienoic acid (OPDA), jasmonic acid (JA), and the hydroxylates 11-hydroxyjasmonate and 12-hydroxyjasmonate in foliage and shoots of P. pinaster plants. The response of the Gredos population to cold stress differed from that of Bajo Tiétar. Gredos plants showed a lower JA-basal level than Bajo Tiétar; under cold stress JA increased twofold at 72 h, while it decreased in Bajo Tiétar plants. The hydroxylates slightly increased in both populations due to cold stress treatment. Under water stress, plants from Gredos showed a remarkable JA-increase; thus the JA-response was much more prominent under water stress than under cold stress. In contrast, no change was found in JA-level in Bajo Tiétar plants under water stress. The level of JA-precursor, OPDA, was very low in control plants from Gredos and Bajo Tiétar. Under water stress OPDA increased only in plants from Bajo Tiétar. Therefore, we inform here of a different JAs-accumulation pattern after the stress treatment in P. pinaster from two provenances, and suggest a possible correlation with adaptations to diverse ecological conditions.

Publikation

Abel, S.; Auxin Is Surfacing ACS Chem. Biol. 2 380-384 (2007) DOI: 10.1021/cb7001158
  • Abstract
  • BibText
  • RIS

Indole-3-acetic acid (IAA or auxin) is essential throughout the life cycle of a plant. It controls diverse cellular processes, including gene expression. The hormone is perceived by a ubiquitin protein ligase (E3) and triggers the rapid destruction of repressors, called Aux/IAA proteins. The first structural model of a plant hormone receptor illustrates how auxin promotes Aux/IAA substrate recruitment by extending the hydrophobic protein-interaction surface. This work establishes a novel mechanism of E3 regulation by small molecules and promises a novel strategy for the treatment of human disorders associated with defective ubiquitin-dependent proteolysis.

Publikation

Abdala, G.; Miersch, O.; Kramell, R.; Vigliocco, A.; Agostini, E.; Forchetti, G.; Alemano, S.; Jasmonate and octadecanoid occurrence in tomato hairy roots. Endogenous level changes in response to NaCl Plant Growth Regul. 40 21-27 (2003) DOI: 10.1023/A:1023016412454
  • Abstract
  • BibText
  • RIS

Jasmonic acid biosynthesis occurs in leaves and there is also evidence of a similar pathway in roots. The expression of lipoxygenase, allene oxide cyclase and low amounts of transcripts of allene oxide synthase in tomato roots indicates that some steps of the jasmonate synthesis may occur in these organs. Thus, the aim of the present work was to study the jasmonate and octadecanoid occurrence in tomato roots using isolated cultures of hairy roots. These were obtained by the transformation of cv. Pera roots with Agrobacterium rhyzogenes. Also we investigated the effect of NaCl stress on the endogenous levels of these compounds. Jasmonic acid, 12-oxophytodienoic acid and their methylated derivatives, as well as a jasmonate-isoleucine conjugate, were present in control hairy roots of 30 d of culture. The 12-oxophytodienoic acid and its methylated derivative showed higher levels than jasmonic acid and its methylated form, although the content of the conjugate was the same as that of jasmonic acid. After salinization of hairy roots for 14, 20 and 30 d, free jasmonates and octadecanoids were measured. Fourteen days after salt treatment, increased levels of these compounds were found, jasmonic acid and 12-oxophytodienoic acid showed the most remarkable rise. 11-OH-jasmonic acid was found at 14 d of culture in control and salt-treated hairy roots; whereas the 12-OH- form of jasmonic acid was only detected in the salt-treated hairy roots. Agrobacterium rhizogenes cultures did not produce jasmonates and/or octadecanoids.

Publikation

Abdala, G.; Castro, G.; Miersch, O.; Pearce, D.; Changes in jasmonate and gibberellin levels during development of potato plants (Solanum tuberosum) Plant Growth Regul. 36 121-126 (2002) DOI: 10.1023/A:1015065011536
  • Abstract
  • BibText
  • RIS

Among the multiple environmental signals and hormonal factors regulatingpotato plant morphogenesis and controlling tuber induction, jasmonates (JAs)andgibberellins (GAs) are important components of the signalling pathways in theseprocesses. In the present study, with Solanum tuberosum L.cv. Spunta, we followed the endogenous changes of JAs and GAs during thedevelopmental stages of soil-grown potato plants. Foliage at initial growthshowed the highest jasmonic acid (JA) concentration, while in roots the highestcontent was observed in the stage of tuber set. In stolons at the developmentalstage of tuber set an important increase of JA was found; however, in tubersthere was no change in this compound during tuber set and subsequent growth.Methyl jasmonate (Me-JA) in foliage did not show the same pattern as JA; Me-JAdecreased during the developmental stages in which it was monitored, meanwhileJA increased during those stages. The highest total amount of JAs expressed asJA + Me-JA was found at tuber set. A very important peak ofJA in roots was coincident with that observed in stolons at tuber set. Also, aprogressive increase of this compound in roots was shown during the transitionof stolons to tubers. Of the two GAs monitored, gibberellic acid(GA3) was the most abundant in all the organs. While GA1and GA3 were also found in stolons at the time of tuber set, noothermeasurements of GAs were obtained for stolons at previous stages of plantdevelopment. Our results indicate that high levels of JA and GAs are found indifferent tissues, especially during stolon growth and tuber set.

Publikation

Ortel, B.; Atzorn, R.; Hause, B.; Feussner, I.; Miersch, O.; Wasternack, C.; Jasmonate-induced gene expression of barley (Hordeum vulgare) leaves - the link between jasmonate and abscisic acid Plant Growth Regul. 29 113-122 (1999) DOI: 10.1023/A:1006212017458
  • Abstract
  • BibText
  • RIS

In barley leaves a group of genes is expressed in response to treatment with jasmonates and abscisic acid (ABA) [21]. One of these genes coding for a jasmonate-induced protein of 23 kDa (JIP-23) was analyzed to find out the link between ABA and jasmonates by recording its expression upon modulating independently, the endogenous level of both of them. By use of inhibitors of JA synthesis and ABA degradation, and the ABA-deficient mutant Az34, as well as of cultivar-specific differences, it was shown that endogenous jasmonate increases are necessary and sufficient for expression of this gene. The endogenous rise of ABA did not induce synthesis of JIP-23, whereas exogenous ABA did not act via jasmonates. Different signalling pathways are suggested and discussed.

Publikation

Abdala, G.; Castro, G.; Guiñazú, M. M.; Tizio, R.; Miersch, O.; Occurrence of jasmonic acid in organs of Solanum tuberosum L. and its effect on tuberization Plant Growth Regul. 19 139-143 (1996) DOI: 10.1007/BF00024580
  • Abstract
  • BibText
  • RIS

The aims of this study were to demonstrate the endogenous presence of jasmonic acid (JA) in roots, stolons and periderm of new formed tubers, by means of bioassays, ELISA and GC-MS, and to test a microdrop bioassay using the leaflets of potato cuttings cultured in vitro. Our results confirm the existence of JA by bioassays and GC-MS in foliage, stolons, roots and tuber periderm.

  • 1
  • 2

Drucken

  • Startseite
  • Aktuelles
  • Vorträge
  • Publikationen
  • Öffentliche Ausschreibungen
  • IPB Remote & Mail
  • Impressum
  • Datenschutz
  • Barrierefreiheit
  • Die Leibniz-Gemeinschaft
  • Wege zu einer pflanzenbasierten Wirtschaft
  • Martin-Luther Universität Halle
  • Erfolgsfaktor Familie
  • TOTAL E-QUALITY
  • Forschung
    • Leitbild und Forschungsprofil

    • Molekulare Signalverarbeitung

    • Natur- und Wirkstoffchemie

    • Biochemie pflanzlicher Interaktionen

    • Stoffwechsel- und Zellbiologie

    • Unabhängige Nachwuchsgruppen

    • Program Center MetaCom

    • Publikationen

    • Gute Wissenschaftliche Praxis

    • Forschungsförderung

    • Netzwerke und Verbundprojekte

    • Symposien und Kolloquien

    • Alumni-Forschungsgruppen

  • Infrastruktur
    • Datenbanken und Tools

    • Technische Ausstattung

    • Zellbiologie-Plattform

    • Gewächshäuser und Phytokammern

    • Bibliothek

  • Institut
    • Organigramm

    • Leitung und Gremien

    • Administration und Infrastruktur

    • Energiemanagement

    • Vielfalt, Familie, Chancengleichheit

    • Öffentliche Ausschreibungen

    • Patente und Lizenzen

    • IPB Welcoming Culture

    • Gästehäuser

    • IPB-Lageplan

    • Geschichte des Instituts

    • Alumni

  • Karriere
    • Datenschutzhinweise für Bewerber

    • Doktorandenprogramm

    • Postdoktoranden

    • Berufsausbildung

  • Öffentlichkeit
    • Aktuelles

    • Newsticker Wissenschaft

    • Pressemitteilungen

    • IPB Pressespiegel

    • LANGE NACHT, DIE WISSEN SCHAFFT: PROGRAMM

    • IPB Newsletter

    • IPB Geschichtsbuch

    • Scientific Reports / Research Highlights

    • Veranstaltungen

    • Cover Art

    • Citizen Science: Pilzberatung

  • IPB Remote & Mail