Tomáš Takáč
takac-group.bsky.social
Tomáš Takáč
@takac-group.bsky.social
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.
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/...
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...
onlinelibrary.wiley.com
January 7, 2026 at 2:37 PM
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...
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academic.oup.com
January 7, 2026 at 2:23 PM
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...
January 7, 2026 at 2:10 PM
check out our preprint showing a new stress granule mediated yay of antioxidant enzyme regulation by RACK1A www.biorxiv.org/content/10.1...
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...
www.biorxiv.org
March 7, 2025 at 3:36 PM