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Natalia Konstantinova

@natkonstantinova.bsky.social
72 followers 171 following 20 posts

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Natalia Konstantinova @natkonstantinova.bsky.social · 18/09/2026
@jennyrussinova.bsky.social gives a great overview of the work going on in her group at @psb-vib.bsky.social , looking at how brassinosteroids control growth. She covers a vast array of topics, from BR transport, synthesis and to concentration maintenance in the root. #plantresearch26
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Natalia Konstantinova @natkonstantinova.bsky.social · 18/09/2026
Tongda Xu gives an update on TMKs, showing exciting data that sheds light on how #auxin is sensed and how auxin flow is controlled. He also provides some insights and looks to answer the age old question, what drives the auxin switch from promotion to inhibition. #plantresearch26
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Natalia Konstantinova @natkonstantinova.bsky.social · 18/09/2026
Curious to learn more about the molecular mechanism that drives the rapid auxin response? How does auxin control root growth to elicit such a quick response in the root? @matesf.bsky.social presents the work of his team that answers this question! #plantresearch26
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Natalia Konstantinova @natkonstantinova.bsky.social · 17/09/2026
Beautiful images, thought provoking ideas and exciting data! @madelaineb.bsky.social asks, “how does one build novel biological systems?” Looking at intrinsic factors in maize that lead to diversity brings us closer to answering this fundamental question. #plantresearch26
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Natalia Konstantinova @natkonstantinova.bsky.social · 17/09/2026
About to start an exciting 2 days! #PlantResearch26
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Natalia Konstantinova @natkonstantinova.bsky.social · 01/09/2026
Please join us at #PlantResearch26, 17-18 September! The final deadline to register is coming up this week, September 3 (Thursday!) 🔗http://vibbio.tech/PlantResearch26 @psb-vib.bsky.social @vibtrainconf.bsky.social @viblifesciences.bsky.social
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Natalia Konstantinova @natkonstantinova.bsky.social · 18/08/2026
Today I am happy to shine a light on the work of Jenny Russinova @jennyrussinova.bsky.social and her team, based at PSB-VIB @psb-vib.bsky.social , who will present at the #PlantResearch26 conference, September 17-18 🧵1/3
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Natalia Konstantinova @natkonstantinova.bsky.social · 13/08/2026
🌱👏We continue the countdown to #PlantResearch26! Today in the spotlight we have Matyáš Fendrych @matesf.bsky.social, who will be presenting the work of his team 17-18 September in Gent! @psb-vib.bsky.social @viblifesciences.bsky.social @vibtrainconf.bsky.social 🧵1/4
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Natalia Konstantinova @natkonstantinova.bsky.social · 23/06/2026
On 17-18 September, plant scientists will come together at PSB-VIB in Ghent, Belgium at the #PlantResearch26 Forefront of Plant Biology conference! I’m happy to team up with @vibtrainconf.bsky.social to highlight some of the speakers coming and the research they are involved in. 1/4🧵
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Reposted by Natalia Konstantinova
European Commission @ec.europa.eu · 21/05/2025
Now open: New €10 million call for organisations under #MSCA4Ukraine. The latest Marie Skłodowska-Curie Actions call will provide vital support to displaced Ukrainian researchers to continue their work in EU and Horizon Europe institutions. Learn more → europa.eu/!jfJkGf
Graphic for Marie Skłodowska-Curie Actions announcing €10 million to support displaced Ukrainian researchers. Features Marie Curie’s portrait blended with an image of students walking in a university hallway, overlaid with blue and yellow elements of the Ukrainian flag.
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Natalia Konstantinova @natkonstantinova.bsky.social · 09/05/2025
exciting work!
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Reposted by Natalia Konstantinova
Journal of Experimental Botany @jxbotany.bsky.social · 06/05/2025
🧬🌱 EXPERT VIEW 🌱🧬 'Intrinsic cues guiding changes in division orientation in the Arabidopsis root meristem: a formative experience' - Konstantinova et al. doi.org/10.1093/jxb/... #PlantScience 🧪
Schematic representation of a longitudinal section of the juvenile root meristem and the regulatory networks controlling changes in division orientation. In the epidermis/lateral root cap (LRC), the SMB–FEZ pathway is responsible for regulating the division guiding changes in division orientation that generate the epidermis and LRC. In the ground tissue, the SHR–SCR module guides the changes in division orientation that generate the cortex and endodermal tissues. In the vascular tissue, the TMO5/LHW–DOF2.1 module and, more specifically in the phloem, PEAR transcription factors, drive oriented divisions that regulate vascular proliferation. Inset: developmental trajectories for the various cell types found in the root meristem, beginning from the quiescent centre (QC) in the centre and ending outermost with the final forms.
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