World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
44
Citations
12678
World Ranking
19206
National Ranking
1308

Overview

Volker Lipka is affiliated with the University of Göttingen in Germany. Their research primarily focuses on plant science, with particular attention to aspects of agricultural and biological sciences, alongside biochemistry, genetics, and molecular biology.

The main subfields of study addressed in Lipka's work include:

  • Plant Science
  • Molecular Biology
  • Cell Biology
  • Biophysics
  • Nutrition and Dietetics

Lipka's research interests encompass a range of topics related to plant biology and pathology. Key areas of investigation include:

  • Plant-Microbe Interactions and Immunity
  • Polysaccharides and Plant Cell Walls
  • Photosynthetic Processes and Mechanisms
  • Legume Nitrogen Fixing Symbiosis
  • Plant Parasitism and Resistance
  • Plant Stress Responses and Tolerance
  • Plant Pathogenic Bacteria Studies

The scientist has published extensively in several venues. Among the most frequent publication outlets are:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • The Plant Journal
  • Frontiers in Plant Science
  • PLANT PHYSIOLOGY
  • New Phytologist

Selected recent publications by Lipka include:

  • Mixed Linkage β-1,3/1,4-Glucan Oligosaccharides Induce Defense Responses in Hordeum vulgare and Arabidopsis thaliana, 2021, Frontiers in Plant Science
  • Live-cell RESOLFT nanoscopy of transgenic Arabidopsis thaliana, 2020, Plant Direct
  • Moonlighting Function of Phytochelatin Synthase1 in Extracellular Defense against Fungal Pathogens, 2020, PLANT PHYSIOLOGY
  • De novo indol-3-ylmethyl glucosinolate biosynthesis, and not long-distance transport, contributes to defence of Arabidopsis against powdery mildew, 2020, Plant Cell & Environment
  • SCFSNIPER7 controls protein turnover of unfoldase CDC48A to promote plant immunity, 2020, New Phytologist

Throughout their career, Lipka has collaborated with several frequent coauthors, including:

  • Elena Petutschnig
  • Josephine Mittendorf
  • Leon Pierdzig
  • Marcel Wiermer
  • Hassan Ghareeb

Best Publications

  • SNARE-protein-mediated disease resistance at the plant cell wall

    Nicholas C. Collins;Hans Thordal-Christensen;Volker Lipka;Stephan Bau

  • Pre- and postinvasion defenses both contribute to nonhost resistance in Arabidopsis

    Volker Lipka;Jan Dittgen;Pawel Bednarek;Riyaz Bhat

  • Arabidopsis PEN3/PDR8, an ATP Binding Cassette Transporter, Contributes to Nonhost Resistance to Inappropriate Pathogens That Enter by Direct Penetration

    Mónica Stein;Jan Dittgen;Clara Sánchez-Rodríguez;Bi-Huei Hou

  • Conserved requirement for a plant host cell protein in powdery mildew pathogenesis.

    C. Consonni;M. E. Humphry;H. A. Hartmann;M. Livaja

  • An Arabidopsis Callose Synthase, GSL5, Is Required for Wound and Papillary Callose Formation

    Andrew K. Jacobs;Andrew K. Jacobs;Volker Lipka;Rachel A. Burton;Ralph Panstruga

  • Arabidopsis lysin-motif proteins LYM1 LYM3 CERK1 mediate bacterial peptidoglycan sensing and immunity to bacterial infection

    Roland Willmann;Heini M. Lajunen;Gitte Erbs;Mari Anne Newman

  • Synthetic Plant Promoters Containing Defined Regulatory Elements Provide Novel Insights into Pathogen- and Wound-Induced Signaling

    Paul J. Rushton;Anja Reinstädler;Volker Lipka;Bernadette Lippok

  • AvrPtoB targets the LysM receptor kinase CERK1 to promote bacterial virulence on plants.

    Selena Gimenez-Ibanez;Dagmar R. Hann;Vardis Ntoukakis;Elena Petutschnig

  • Co-option of a default secretory pathway for plant immune responses

    Chian Kwon;Christina Neu;Christina Neu;Simone Pajonk;Hye Sup Yun

  • The Lysin Motif Receptor-like Kinase (LysM-RLK) CERK1 Is a Major Chitin-binding Protein in Arabidopsis thaliana and Subject to Chitin-induced Phosphorylation

    Elena K. Petutschnig;Elena K. Petutschnig;Alexandra M.E. Jones;Liliya Serazetdinova;Ulrike Lipka

  • Isochorismate-derived biosynthesis of the plant stress hormone salicylic acid

    Dmitrij Rekhter;Daniel Lüdke;Yuli Ding;Kirstin Feussner

  • Non‐host resistance in plants: new insights into an old phenomenon

    Thorsten Nürnberger;Volker Lipka

  • Broad-Spectrum Suppression of Innate Immunity Is Required for Colonization of Arabidopsis Roots by the Fungus Piriformospora indica

    Sophie Jacobs;Bernd Zechmann;Alexandra Molitor;Marco Trujillo

  • SNARE-Ware: The role of SNARE-Domain proteins in plant biology

    Volker Lipka;Chian Kwon;Ralph Panstruga

  • LYM2-dependent chitin perception limits molecular flux via plasmodesmata

    Christine Faulkner;Christine Faulkner;Elena Petutschnig;Yoselin Benitez-Alfonso;Martina Beck

  • Host and non-host pathogens elicit different jasmonate/ethylene responses in Arabidopsis.

    Laurent Zimmerli;Mónica Stein;Mónica Stein;Volker Lipka;Paul Schulze-Lefert

  • Barley MLO Modulates Actin-Dependent and Actin-Independent Antifungal Defense Pathways at the Cell Periphery

    Marco Miklis;Chiara Consonni;Riyaz A. Bhat;Volker Lipka

  • Arabidopsis non-host resistance to powdery mildews.

    Ulrike Lipka;Rene Fuchs;Volker Lipka

  • Nonhost Resistance in Arabidopsis-Colletotrichum Interactions Acts at the Cell Periphery and Requires Actin Filament Function

    Chiyumi Shimada;Volker Lipka;Richard O'Connell;Tetsuro Okuno

  • Transcriptional Activation and Production of Tryptophan-Derived Secondary Metabolites in Arabidopsis Roots Contributes to the Defense against the Fungal Vascular Pathogen Verticillium longisporum

    Tim Iven;Stefanie König;Seema Singh;Susanna A. Braus-Stromeyer

Frequent Co-Authors

Paul Schulze-Lefert
Paul Schulze-Lefert Max Planck Society
Ralph Panstruga
Ralph Panstruga RWTH Aachen University
Shauna Somerville
Shauna Somerville University of California, Berkeley
Xin Li
Xin Li University of British Columbia
Ivo Feussner
Ivo Feussner University of Göttingen
Paweł Bednarek
Paweł Bednarek Polish Academy of Sciences
Thorsten Nürnberger
Thorsten Nürnberger University of Tübingen
Gerhard H. Braus
Gerhard H. Braus University of Göttingen
Antonio Molina
Antonio Molina Technical University of Madrid
Rachel A. Burton
Rachel A. Burton University of Adelaide

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