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Tomáš Takáč

@takac-group.bsky.social
30 followers 27 following 10 posts

Our group investigates the mechanisms of enzymatic antioxidant defence regulation with a focus on superoxide dismutases. We would also like to characterize plant SODs and their roles in development and stress response.

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Tomáš Takáč @takac-group.bsky.social · 11/07/2026
www.biorxiv.org/content/10.6... Check out our new preprint on unusual regulation of CuZnSOD in Arabidopsis, independent of its ROS decomposing function.
biorxiv.org
Stomatal movement in Arabidopsis is driven by guard cell-localized and copper-insensitive CSD1 splice variant
Copper (Cu) is an essential micronutrient whose bioavailability is strongly affected by soil physicochemical properties. During evolution, plants have developed mechanisms to flexibly adjust their met...
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Tomáš Takáč @takac-group.bsky.social · 09/06/2026
I am pleased to share an excellent new paper from my colleagues. Congratulations to all the authors !!! doi.org/10.1186/s438...
doi.org
Stress-induced MAPK (SIMK)-dependent organization of microtubules in alfalfa - Molecular Horticulture
Mitogen-activated protein kinases (MAPKs) modulate the organization of the plant cytoskeleton. The spatial organization of microtubules is critical for cell division, polarity, shape control, and elongation during plant growth and morphogenesis. Here, we analyzed the impact of the stress-induced MAPK (SIMK) abundance on the tubulin cytoskeleton in different plant organs and tissues of an important legume crop species, alfalfa (Medicago sativa L.). For this purpose, we have established unique transgenic double lines with genetically manipulated SIMK, possessing microtubular molecular fluorescent marker, the tag RED FLUORESCENT PROTEIN-TUBULIN ALPHA 6 (tagRFP-TUA6). We show that lower or higher SIMK abundance can change cell division planes (CDPs) and phragmoplast orientations in roots. In addition, the transgenic line with downregulated SIMK shows disordered and disorganized microtubules, and a reduced degree of microtubule bundling mainly in leaves and stems. This may be linked to smaller habitus, shorter stems, and smaller leaves. Obtained results indicate that the genetic manipulation of SIMK abundance has effect on microtubule organization and plant development in alfalfa. This study also paves the way for testing anti-microtubular drugs on alfalfa and for biotechnological use of the newly-developed lines.
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Reposted by Tomáš Takáč
Samaj Lab @samaj-lab.bsky.social · 16/03/2026
Killers or Protectors: Contrasting Roles of Alfalfa SIMKK and PRKK in Nicotiana benthamiana Cell Death www.sciencedirect.com/science/arti...
sciencedirect.com
Killers or Protectors: Contrasting Roles of Alfalfa SIMKK and PRKK in Nicotiana benthamiana Cell Death
Mitogen-activated protein kinases (MAPKs) play important roles in immune signalling pathways following pathogen attack or elicitor treatment. A key pl…
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Tomáš Takáč @takac-group.bsky.social · 12/03/2026
It was a fun experience to take part in a report for Czech Television about salt stress in plants.
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Tomáš Takáč @takac-group.bsky.social · 12/03/2026
I am looking forward to presenting a talk on Gordon Research Conference "Salt and Water Stress in Plants" in Les Diablerets. www.grc.org/salt-and-wat...
grc.org
2026 Salt and Water Stress in Plants Conference GRC
The 2026 Gordon Research Conference on Salt and Water Stress in Plants will be held in Les Diablerets, Vaud (fr) Switzerland. Apply today to reserve your spot.
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Tomáš Takáč @takac-group.bsky.social · 12/03/2026
Our review was published in the 4th issue of PCE - Linking Superoxide Production and Scavenging in Plant Development - Řehák - 2026 - Plant, Cell & Environment - Wiley Online Library onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
Linking Superoxide Production and Scavenging in Plant Development
This review examines phytohormone-dependent regulation of NADPH oxidases and superoxide dismutases, controlling superoxide signaling in plant development. Superoxide production and detoxification are...
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Tomáš Takáč @takac-group.bsky.social · 09/03/2026
When stress drives you to kidnap: RACK1A sequesters FSD1 into stress granules during salt stress url: academic.oup.com/plphys/artic...
academic.oup.com
When stress drives you to kidnap: RACK1A sequesters FSD1 into stress granules during salt stress
Describing plants as sessile organisms may sound like a scientific revelation, but it simply means they have nowhere to go. However, it serves as a fitting
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Reposted by Tomáš Takáč
Plant Physiology @plantphys.bsky.social · 12/02/2026
RACK1A interacts and colocalizes with FSD1 in stress granules to regulate salt stress response in Arabidopsis (Pavol Melicher , Petr Dvořák , Maryna Tsinyk , et al) doi.org/10.1093/plph... #PlantScience @aspbofficial
doi.org
RACK1A interacts and colocalizes with FSD1 in stress granules to regulate salt stress response in Arabidopsis
A scaffolding protein accumulates in stress granules during salt stress to recruit an antioxidant enzyme, thereby modulating its activity and improving see
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Reposted by Tomáš Takáč
Samaj Lab @samaj-lab.bsky.social · 02/02/2026
New baby in our microscopy labs.😃
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Tomáš Takáč @takac-group.bsky.social · 07/01/2026
We projected a possible mechanisms linking ROS production with scavenging in a review paper published in Plant, Cell & Environment. Congrats to all co-authors for their enormous effort. Linking Superoxide Production and Scavenging in Plant Development onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
Linking Superoxide Production and Scavenging in Plant Development
This review examines phytohormone-dependent regulation of NADPH oxidases and superoxide dismutases, controlling superoxide signaling in plant development. Superoxide production and detoxification are...
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Tomáš Takáč @takac-group.bsky.social · 07/01/2026
We are honoured that our paper was highlighted in News and Views section in Plant Physiology. When stress drives you to kidnap: RACK1A sequesters FSD1 into stress granules during salt stress url: academic.oup.com/plphys/artic...
academic.oup.com
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Tomáš Takáč @takac-group.bsky.social · 07/01/2026
We are pleased to share our new paper, reporting an entirely new way of SODs regulation in plants. RACK1A interacts and co-localizes with FSD1 in stress granules to regulate salt stress response in Arabidopsis url: academic.oup.com/plphys/artic...
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Tomáš Takáč @takac-group.bsky.social · 07/03/2025
check out our preprint showing a new stress granule mediated yay of antioxidant enzyme regulation by RACK1A www.biorxiv.org/content/10.1...
biorxiv.org
Protein and genetic interactions between RACK1A and FSD1 modulate plant development and stress granule-dependent response to salt in Arabidopsis
The generation of reactive oxygen species (ROS) and their regulation by antioxidant enzymes such as IRON SUPEROXIDE DISMUTASE 1 (FSD1) are critical for managing plant responses to salt stress. However...
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