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Genetics

D-Index
65
Citations
16125
World Ranking
2698
National Ranking
343

Research.com Recognitions

  • Member of the European Molecular Biology Organization (EMBO)
  • Member of the European Molecular Biology Organization (EMBO)

Overview

Jerzy Paszkowski is affiliated with the University of Cambridge in the United Kingdom. Their research primarily spans the fields of Agricultural and Biological Sciences and Biochemistry, Genetics and Molecular Biology, with a focus on Plant Science and Molecular Biology as subfields.

Their work covers multiple topics including Chromosomal and Genetic Variations, Plant Virus Research Studies, and CRISPR and Genetic Engineering.

Among recent publications, one notable paper is titled "Specific suppression of long terminal repeat retrotransposon mobilization in plants", published in 2022 in the journal PLANT PHYSIOLOGY. This paper has been cited seven times.

Paszkowski has collaborated frequently with several coauthors, including:

  • Anna Brestovitsky
  • Mayumi Iwasaki
  • Jungnam Cho
  • Natthawut Adulyanukosol
  • Marco Catoni

Their research outputs have been published in the venue PLANT PHYSIOLOGY, reflecting a focus on plant biology and related molecular studies.

Among distinctions, Paszkowski has been recognized as a Member of the European Molecular Biology Organization (EMBO).

Best Publications

  • Direct gene transfer to plants.

    Jerzy Paszkowski;Raymond D. Shillito;Michael Saul;Václáv Mandák

  • An siRNA pathway prevents transgenerational retrotransposition in plants subjected to stress

    Hidetaka Ito;Hervé Gaubert;Etienne Bucher;Etienne Bucher;Marie Mirouze;Marie Mirouze

  • Maintenance of CpG methylation is essential for epigenetic inheritance during plant gametogenesis.

    Hidetoshi Saze;Ortrun Mittelsten Scheid;Jerzy Paszkowski

  • High Efficiency Direct Gene Transfer to Plants

    R. D. Shillito;M. W. Saul;J. Paszkowski;M. Müller

  • Epigenetic contribution to stress adaptation in plants

    Marie Mirouze;Marie Mirouze;Jerzy Paszkowski

  • Compromised stability of DNA methylation and transposon immobilization in mosaic Arabidopsis epigenomes

    Jon Reinders;Brande B.H. Wulff;Marie Mirouze;Arturo Marí-Ordóñez

  • Gene targeting in plants.

    Jerzy Paszkowski;Markus Baur;Augustyn Bogucki;Ingo Potrykus

  • Transgenerational stability of the Arabidopsis epigenome is coordinated by CG methylation

    Olivier Mathieu;Jon Reinders;Marian Čaikovski;Chotika Smathajitt

  • Chromatin techniques for plant cells.

    Chris Bowler;Giovanna Benvenuto;Pierre Laflamme;Diana Molino

  • Direct gene transfer to cells of a graminaceous monocot

    Ingo Potrykus;Michael W. Saul;Jirina Petruska;Jerzy Paszkowski

  • Agarose plating and a bead type culture technique enable and stimulate development of protoplast-derived colonies in a number of plant species

    R. D. Shillito;J. Paszkowski;I. Potrykus

  • Erasure of CpG methylation in Arabidopsis alters patterns of histone H3 methylation in heterochromatin

    Muhammad Tariq;Hidetoshi Saze;Aline V. Probst;Jacek Lichota

  • Selective epigenetic control of retrotransposition in Arabidopsis

    Marie Mirouze;Jon Reinders;Etienne Bucher;Taisuke Nishimura

  • DNA and histone methylation in plants.

    Muhammad Tariq;Jerzy Paszkowski

  • Disruption of the plant gene MOM releases transcriptional silencing of methylated genes.

    P. Amedeo;Y. Habu;K. Afsar;O. Mittelsten Scheid

  • Expression of a bacterial gene in plants by using a viral vector

    N Brisson;J Paszkowski;J R Penswick;B Gronenborn

  • Molecular and general genetics of a hybrid foreign gene introduced into tobacco by direct gene transfer.

    Ingo Potrykus;Jerzy Paszkowski;Michael W. Saul;Jirina Petruska

  • Distinct regulation of salinity and genotoxic stress responses by Arabidopsis MAP kinase phosphatase 1

    Roman Ulm;Roman Ulm;Kazuya Ichimura;Tsuyoshi Mizoguchi;Scott C. Peck;Scott C. Peck

  • Distinct regulation of histone H3 methylation at lysines 27 and 9 by CpG methylation in Arabidopsis

    Olivier Mathieu;Olivier Mathieu;Aline V Probst;Aline V Probst;Jerzy Paszkowski

  • Erasure of CpG methylation in Arabidopsis alters patterns of histone H3 methylation in

    Hidetoshi Saze;Aline V. Probst;Jacek Lichota;Yoshiki Habu

Frequent Co-Authors

Ingo Potrykus
Ingo Potrykus ETH Zurich
Ortrun Mittelsten Scheid
Ortrun Mittelsten Scheid Austrian Academy of Sciences
Thomas Hohn
Thomas Hohn University of Basel
Barbara Hohn
Barbara Hohn Friedrich Miescher Institute
Tesfaye Mengiste
Tesfaye Mengiste Purdue University West Lafayette
Roman Ulm
Roman Ulm University of Geneva
Detlef Weigel
Detlef Weigel Max Planck Institute for Developmental Biology
Tong Zhu
Tong Zhu Research Triangle Park Foundation
David C. Baulcombe
David C. Baulcombe University of Cambridge
Lars Hennig
Lars Hennig Swedish University of Agricultural Sciences

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