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Dive into the research topics where Ireneusz Slesak is active.

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Featured researches published by Ireneusz Slesak.


Plant Physiology | 2009

Arabidopsis Chloroplastic Glutathione Peroxidases Play a Role in Cross Talk between Photooxidative Stress and Immune Responses

Christine Chi-Chen Chang; Ireneusz Slesak; Lucía Jordá; Alexey Sotnikov; Michael Melzer; Zbigniew Miszalski; Philip M. Mullineaux; Jane E. Parker; Barbara Karpinska; Stanislaw Karpinski

Glutathione peroxidases (GPXs; EC 1.11.1.9) are key enzymes of the antioxidant network in plants and animals. In order to investigate the role of antioxidant systems in plant chloroplasts, we generated Arabidopsis (Arabidopsis thaliana) transgenic lines that are depleted specifically in chloroplastic (cp) forms of GPX1 and GPX7. We show that reduced cpGPX expression, either in transgenic lines with lower total cpGPX expression (GPX1 and GPX7) or in a gpx7 insertion mutant, leads to compromised photooxidative stress tolerance but increased basal resistance to virulent bacteria. Depletion of both GPX1 and GPX7 expression also caused alterations in leaf cell and chloroplast morphology. Leaf tissues were characterized by shorter and more rounded palisade cells, irregular spongy mesophyll cells, and larger intercellular air spaces compared with the wild type. Chloroplasts had larger and more abundant starch grains than in wild-type and gpx7 mutant plants. Constitutively reduced cpGPX expression also led to higher foliar ascorbic acid, glutathione, and salicylic acid levels in plants exposed to higher light intensities. Our results suggest partially overlapping functions of GPX1 and GPX7. The data further point to specific changes in the chloroplast ascorbate-glutathione cycle due to reduced cpGPX expression, initiating reactive oxygen species and salicylic acid pathways that affect leaf development, light acclimation, basal defense, and cell death programs. Thus, cpGPXs regulate cellular photooxidative tolerance and immune responses.


Acta Biochimica Polonica | 2007

The role of hydrogen peroxide in regulation of plant metabolism and cellular signalling in response to environmental stresses.

Ireneusz Slesak; Marta Libik; Barbara Karpinska; Stanislaw Karpinski; Zbigniew Miszalski


Plant Cell and Environment | 1998

Subcellular localization and stress responses of superoxide dismutase isoforms from leaves in the C3-CAM intermediate halophyte Mesembryanthemum crystallinum L.

Zbigniew Miszalski; Ireneusz Slesak; Ewa Niewiadomska; R. Baczek-Kwinta; U. Luttge; R. Ratajczak


Plant Biology | 2001

The Effect of Irradiance on Carboxylating/Decarboxylating Enzymes and Fumarase Activities in Mesembryanthemum crystallinum L. Exposed to Salinity Stress

Zbigniew Miszalski; Ewa Niewiadomska; Ireneusz Slesak; Ulrich Lüttge; Manfred Kluge; Rafael Ratajczak


Plant and Cell Physiology | 2004

A Salinity-Induced C3-CAM Transition Increases Energy Conservation in the Halophyte Mesembryanthemum crystallinum L.

Ewa Niewiadomska; Barbara Karpinska; Elżbieta Romanowska; Ireneusz Slesak; Stanislaw Karpinski


Acta Biochimica Polonica | 2010

The key role of the redox status in regulation of metabolism in photosynthesizing organisms

Andrzej Kornas; Elżbieta Kuzniak; Ireneusz Slesak; Zbigniew Miszalski


Archive | 2013

PLANT TREATMENT METHODS AND MEANS THEREFOR

Stanislaw Karpinski; Magdalena Szechyńska-Hebda; Ireneusz Slesak; Weronika Wituszyńska


Biologia Plantarum | 2007

Superoxide dismutase activity in C 3 and C 3 /CAM intermediate species of Clus

Zbigniew Miszalski; Andrzej Kornas; K. Gawronska; Ireneusz Slesak; Ewa Niewiadomska; Jerzy Kruk; Anna-Luise Christian; Elke Fischer-Schliebs; Robert E. Krisch; Ulrich Lüttge


Archive | 2005

Functional characterization of the chloroplastic glutathione peroxidases (cpGPXs) in Arabidopsis thaliana : its role in light acclimatory mechanisms

Christine Chi-Chen Chang; Ireneusz Slesak; Alexej Sotnikow; Philip M. Mullineaux; Stanislaw Karpinski; Barbara Karpinska


Archive | 2005

Functional analysis of chloroplastic glutathione peroxidases (cpGPXs) in Arabidopsis thaliana provides a direct link between photo-oxidative stress and basal pathogen resistance mechanisms

Christine Chi-Chen Chang; Lucía Jordá; Ireneusz Slesak; Michael Melzer; Zbigniew Miszalski; Thomas Moritz; Philip M. Mullineaux; Jane E. Parker; Barbara Karpinska; Stanislaw Karpinski

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Ewa Niewiadomska

Polish Academy of Sciences

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Stanislaw Karpinski

Swedish University of Agricultural Sciences

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Barbara Karpinska

Polish Academy of Sciences

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Christine Chi-Chen Chang

Warsaw University of Life Sciences

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Marta Libik

Polish Academy of Sciences

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Lucía Jordá

Technical University of Madrid

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