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Paolo Triozzi

@paolotriozzi.bsky.social
160 followers 405 following 1 posts

Plant Researcher at Sant’Anna School, Pisa-Italy. Interested in how plants adapt to a changing environment.

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Reposted by Paolo Triozzi
Isa Manrique @isamanrique.bsky.social · 16/09/2026
Our paper is out! 🤩 HYT1, a new Cys2- substrate of the #Ndegron pathway to add to the list! 🌱 Thanks to @n-end-rules.bsky.social @charlene-kunaka.bsky.social @gunjansharma88.bsky.social , Susana and all the people involved in this work! You can read it on @natcomms.nature.com👇🏼
nature.com
Hierarchical regulation of oxygen-sensing through coupled transducers in Arabidopsis thaliana - Nature Communications
The PLANT CYSTEINE OXIDASE (PCO) N-degron pathway contributes to oxygen sensing in plants. Here the authors identify HYPOXIA TRANSDUCER1 (HYT1) as a substrate of PCO and show it forms a coherent feed-...
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Reposted by Paolo Triozzi
N End Rules @n-end-rules.bsky.social · 16/09/2026
We introduce a new transducer of oxygen sensing: Cys2-HYT1 @isamanrique.bsky.social @charlene-kunaka.bsky.social Susanna Ubeda Tomas & @gunjansharma88.bsky.social ma88.bsky.social lead work defining HYT1 contribution to root hypoxia tolerance. @natcomms.nature.com www.nature.com/articles/s41...
nature.com
Hierarchical regulation of oxygen-sensing through coupled transducers in Arabidopsis thaliana - Nature Communications
The PLANT CYSTEINE OXIDASE (PCO) N-degron pathway contributes to oxygen sensing in plants. Here the authors identify HYPOXIA TRANSDUCER1 (HYT1) as a substrate of PCO and show it forms a coherent feed-...
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Reposted by Paolo Triozzi
Daan Weits @daanweits.bsky.social · 31/08/2026
Oxygen levels in leaves is a hot topic in @isplore.bsky.social and I'm very curious to find out how this all fits together! @djgibbs.bsky.social @drosborneplantsci.bsky.social @theplantlab.bsky.social @paolotriozzi.bsky.social pubmed.ncbi.nlm.nih.gov/40147448/ pubmed.ncbi.nlm.nih.gov/38243593/
sciencedirect.com
VRN2-PRC2 facilitates light-triggered repression of PIF signaling to coordinate growth in Arabidopsis
VERNALIZATION2 (VRN2) is a flowering plant-specific subunit of the polycomb-repressive complex 2 (PRC2), a conserved eukaryotic holoenzyme that repres…
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Reposted by Paolo Triozzi
International Society for Plant Low Oxygen Research @isplore.bsky.social · 17/07/2026
doi.org/10.1093/plph... Chemical priming of hypoxia responses via PLANT CYSTEINE OXIDASE inhibition improves flooding tolerance - by @paolotriozzi.bsky.social @emilyflashman.bsky.social @theplantlab.bsky.social #plantscience
doi.org
Chemical priming of hypoxia responses via PLANT CYSTEINE OXIDASE inhibition improves flooding tolerance
Abstract. Extreme flooding driven by climate change demands strategies to enhance plant tolerance to low-oxygen stress. We investigated the ability of bioa
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Reposted by Paolo Triozzi
aldosutti.bsky.social @aldosutti.bsky.social · 27/02/2026
Three great days of science and fun in Bertinoro at SIBV Workshop. Thanks to the organizers and all the participants 🌱 @olmiemma.bsky.social @paolotriozzi.bsky.social @angelocandito.bsky.social
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Emma Olmi @olmiemma.bsky.social · 25/02/2026
Happy to see our review online in @jxbotany.bsky.social 🌱 In this work, we provide an overview of the molecular mechanisms plants use to survive under low oxygen stress and during recovery after reoxygenation 🌊 doi.org/10.1093/jxb/...
doi.org
Switching on and off the hypoxic response in plants
Abstract. Hypoxia significantly impacts plant metabolism and growth by disrupting mitochondrial respiration, and oxygen sensing plays a vital role in regul
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Reposted by Paolo Triozzi
Hajk-Georg Drost @hajkdrost.bsky.social · 07/01/2026
🧵 Just out in Cell after more than 10 years in the making! 🎓 www.cell.com/cell/fulltex... Plants and animals evolve radically different body plans. Do they also operate under fundamentally different molecular evolutionary constraints during organ formation? @cellpress.bsky.social
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Pierdomenico Perata @theplantlab.bsky.social · 07/01/2026
New in Science of Plants: "Inferring hypoxia-responsive regulators of cell fate in plant meristems throughsingle-cell transcriptomics" rdcu.be/eXYvw
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Uhrig Lab @uhriglab.bsky.social · 23/12/2025
New preprint examining circadian control of the diel plant proteome. Collaboration between @mehta-lab.com @ezer-lab, @bar-plantbio.bsky.social and @uhriglab.bsky.social www.biorxiv.org/content/10.6... -> WT + 6 clock mutants -> 2h sampling -> Paired RNAseq analysis -> ePlant data visualization
biorxiv.org
The plant circadian clock exerts stronger control over the diel proteome than the transcriptome
The plant circadian clock is a genetic circuit composed of multiple mutually-regulating transcription factors that together synchronize internal biological rhythms to the ~24-hour period of planetary ...
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Reposted by Paolo Triozzi
Tatsuya Nobori @tatsuyanobori.bsky.social · 29/11/2025
FX-Cell: a method for single-cell RNA sequencing on difficult-to-digest and cryopreserved plant samples www.nature.com/articles/s41...
nature.com
FX-Cell: a method for single-cell RNA sequencing on difficult-to-digest and cryopreserved plant samples - Nature Methods
This work describes FX-Cell and its derivatives to achieve single-cell RNA sequencing from challenging and cryopreserved plant tissues, expanding the scope of single-cell genomics across field-grown s...
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Reposted by Paolo Triozzi
Isa Manrique @isamanrique.bsky.social · 23/11/2025
🏔️🌧️ 🧬 We wrote this Expert View on oxygen sensing, you can read it here! 👇🏼
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N End Rules @n-end-rules.bsky.social · 22/11/2025
Recent advances in the mechanism, transduction and function of oxygen sensing in plants #nendrule #hypoxia #plantscience academic.oup.com/jxb/advance-...
academic.oup.com
Recent advances in the mechanism, transduction and function of oxygen sensing in plants
Abstract. Response to reduced ambient oxygen is a key component of plant adaptation in natural and farmed environments and is regulated by oxygen dependent
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Reposted by Paolo Triozzi
Frederica Theodoulou @freddietheodoulou.bsky.social · 17/10/2025
How does leaf age affect flood resilience? 🌿🌊 New preprint from @rsasidharan.bsky.social with a little help from us www.biorxiv.org/content/10.1...
biorxiv.org
Leaf-age specific flood resilience in Arabidopsis thaliana is determined by distinct processes contributing to post-submergence recovery
While the molecular mechanisms mediating submergence tolerance have been extensively studied, those underpinning age-dependent resilience remain poorly characterized. In Arabidopsis thaliana, submerge...
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International Society for Plant Low Oxygen Research @isplore.bsky.social · 22/09/2025
Opening of the #ISPLORE2025JP welcome dinner with some traditional Japanese food by our president Pierdomenico Perata 🍲🍣
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International Society for Plant Low Oxygen Research @isplore.bsky.social · 23/09/2025
The second day of #ISPLORE2025JP starts with a great overview talk by @theplantlab.bsky.social on hypoxia regulation. Hypoxia is everywhere! #plantscience 🌱🌊
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Daan Weits @daanweits.bsky.social · 22/09/2025
Coming to you live from #ISPLORE2025JP Fresh preprint from my lab showing that leaves progressively oxygenate and how this is important for their morphogenesis.Thanks to our collaborators from @Fra_LicO2si lab. #plantscience www.biorxiv.org/content/10.1...
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Sjon Hartman @hartman-plantlab.com · 25/08/2025
Happy to see our latest #plantscience review by @aidamaric.bsky.social, @advaitagashe.bsky.social and Johanna onlinr! We describe how epigenetic mechanisms control ethylene signal generation and progression, and how ethylene in turn modulates chromatin. www.sciencedirect.com/science/arti...
sciencedirect.com
Ethylene signal integration through epigenetic mechanisms in plants
Ethylene is an essential phytohormone that controls a plethora of plant developmental and stress responses. Accordingly, ethylene signal generation an…
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Reposted by Paolo Triozzi
Natanella Illouz-Eliaz @natanellae.bsky.social · 31/08/2025
Our #research on #drought #recovery, now published with @springernature.com in @natcomms.nature.com: Drought recovery in plants triggers a cell-state-specific immune activation. doi.org/10.1038/s414... Read thread below 👇
doi.org
Drought recovery in plants triggers a cell-state-specific immune activation - Nature Communications
Post-drought rehydration triggers a preventive immune response in plants, revealing targets to enhance crop resilience by linking drought stress recovery with improved pathogen resistance.
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Reposted by Paolo Triozzi
Natanella Illouz-Eliaz @natanellae.bsky.social · 19/08/2025
From a gene’s single cell expression–through spatial localization–to novel function, and beyond! Now out @natplants.nature.com We built a comprehensive spatial-transcriptomic atlas of Arabidopsis, revealing cell-type identities across organs in unprecedented detail www.nature.com/articles/s41...
nature.com
A single-cell, spatial transcriptomic atlas of the Arabidopsis life cycle - Nature Plants
This study presents an extensive single-nucleus and spatial transcriptomic atlas of the Arabidopsis life cycle that represents ten distinct developmental time points inclusive of six diverse organs.
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Devang Mehta🌱🧬 @mehta-lab.com · 12/08/2025
Delighted to share the lab’s first independent publication, a Tansley Insight in @newphyt.bsky.social where we analyse new crop genomics studies to show how we can engineer plants that can grow at different latitudes (key for climate-smart Ag) nph.onlinelibrary.wiley.com/doi/10.1111/...
A screenshot of the first page of the scientific paper linked in the post.
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N End Rules @n-end-rules.bsky.social · 28/05/2025
How did oxygen-sensing evolve in plants? In collaboration with @syno2xis.bsky.social Great work from @lauradc.bsky.social et. al. #plantscience @leverhulme.ac.uk “ERFVIIs as transducers of oxygen-sensing in the evolution of land plant response to hypoxia” www.cell.com/molecular-pl...
cell.com
ERFVIIs as transducers of oxygen-sensing in the evolution of land plant response to hypoxia
Short summary:This study investigates the evolution of the low-oxygen response in land plants mediated by group VII Ethylene Response Factors (ERFVIIs). We identified conserved transcriptional signatu...
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Reposted by Paolo Triozzi
Dan Gibbs 🌱🧬 @djgibbs.bsky.social · 26/03/2025
Happy to see our latest paper by @drosborneplantsci.bsky.social et al out today in Developmental Cell @cellpress.bsky.social! We identify a role for VRN2-PRC2 in regulating light-responsive growth in Arabidopsis through the conditional epigenetic repression of PIF signalling. tinyurl.com/swbyff24
tinyurl.com
VRN2-PRC2 facilitates light-triggered repression of PIF signaling to coordinate growth in Arabidopsis
Osborne et al. show that the angiosperm-specific PRC2 subunit VRN2 is enriched in hypoxic regions of the Arabidopsis shoot, where it is required for stable deposition of H3K27me3 in key PIF4 target ge...
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wabniklab.bsky.social @wabniklab.bsky.social · 20/02/2025
Our take on Photoperiod regulation of core clock across plants: www.sciencedirect.com/science/arti...
sciencedirect.com
Regulatory principles of photoperiod-driven clock function in plants
The circadian clock provides a fundamental timing mechanism for plant fitting to seasonal changes in the photoperiod. Although photoperiodic regulatio…
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Paolo Triozzi @paolotriozzi.bsky.social · 15/01/2025
Very glad that part of my PhD thesis is finally out. A special thanks goes to @mmperales.bsky.social and Daniela Gomez who have led this work. A must-read for anyone interested in how trees control the timing of bud break in spring
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Reposted by Paolo Triozzi
bioRxiv Plant Bio @biorxiv-plants.bsky.social · 10/01/2025
Severe Fe deficiency promotes hypoxia inducible responses in Arabidopsis thaliana www.biorxiv.org/content/10.1101/202…
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Moe Abbas @moeabbas.bsky.social · 23/12/2024
Clear blue skies over our cover image in this @plantphys.bsky.social hypoxia focused issue. Check out all the recent works and updates on oxygen biology in plants!
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Rashmi Sasidharan @rsasidharan.bsky.social · 23/12/2024
Our #hypoxia FI is online! @plantphys.bsky.social featuring this stunning cover image by @moeabbas.bsky.social Check out the fantastic lineup of Updates, Topical Review & research articles @schwarzlanderlab.bsky.social academic.oup.com/plphys/issue...
academic.oup.com
Volume 197 Issue 1 | Plant Physiology | Oxford Academic
Plant Physiology is an international journal devoted to physiology, biochemistry, cellular and molecular biology, genetics, biophysics, and environmental biology of plants
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Vinay Shukla @vinayshukla.bsky.social · 15/12/2024
Preprint alert, please share!! With our new study, we engineered an orthogonal hypoxia-responsive system in plants inspired by mammalian HIF protein degradation. We demonstrated that this system could control protein stability and activity, enabling modulation of Oxygen sensing outputs. Here's how:
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International Society for Plant Low Oxygen Research @isplore.bsky.social · 08/12/2024
The editorial on the upcoming #plantscience Hypoxia special issue in Plant Physiology 🌱🌊 academic.oup.com/plphys/advan...
academic.oup.com
Hypoxia as challenge and opportunity: from cells to crops, to synthetic biology
Julia Bailey-Serres, Peter Geigenberger, Pierdomenico Perata, Rashmi Sasidharan, Markus Schwarzländer; Hypoxia as challenge and opportunity: from cells to
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Mikel Lavilla-Puerta @mikellavi.bsky.social · 05/12/2024
First Bluesky post to share our review with the world! Is there anything, beyond oxygen biosensors, that SynBio can provide to the world of plant hypoxia? Check it out here! @plantphys.bsky.social academic.oup.com/plphys/advan...
academic.oup.com
Designed to breathe: synthetic biology applications in plant hypoxia
Novel biosensors and concepts from engineering biology expand the toolbox for plant low oxygen biology research
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Devang Mehta🌱🧬 @mehta-lab.com · 01/12/2024
Delighted to announce the registration is now open for Plant Chronobiology 2025, the first-ever dedicated conference for plant circadian biology! Please share #plantscience plantclock.wixsite.com/2025
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Daan Weits @daanweits.bsky.social · 27/11/2024
Check out our update on Tools to understand hypoxia responses in plant tissues in @plantphys.bsky.social Really enjoyed putting this together with Ole Pedersen, @schwarzlanderlab.bsky.social We hope you will find it a useful starting point on your low oxygen journey🌱 academic.oup.com/plphys/advan...
academic.oup.com
Tools to understand hypoxia responses in plant tissues
Abstract. Our understanding of how low oxygen (O2) conditions arise in plant tissues and how they shape specific responses has seen major advancement in re
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Plant Energy Biology Lab @schwarzlanderlab.bsky.social · 22/11/2024
How to analyze #hypoxia in plants?🌊🌿 Check out this update on tools 🛠️ thoughtfully put together jointly with @DaanWeits & Ole Pederson for the forthcoming Focus Issue Hypoxia & Plants @plantphys.bsky.social with Pedro Barreto & Sophie Lichtenauer @isplore.bsky.social doi.org/10.1093/plph...
doi.org
Tools to understand hypoxia responses in plant tissues
Abstract. Our understanding of how low oxygen (O2) conditions arise in plant tissues and how they shape specific responses has seen major advancement in re
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International Society for Plant Low Oxygen Research @isplore.bsky.social · 20/11/2024
Welcome to @n-end-rules.bsky.social @syno2xis.bsky.social @emilyflashman.bsky.social & @paolotriozzi.bsky.social on #plantscience Bluesky, now also included in our starter pack!
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Antony Dodd @antdodd.bsky.social · 31/08/2024
Enjoyed reading this article about Darwin’s interests in biological rhythms, by Tiago de Andrade and Andrew Beale #chronobiology academic.oup.com/pnasnexus/ar...
academic.oup.com
Darwin and the biological rhythms
Abstract. While the formalization of chronobiology as a scientific discipline occurred in the mid-20th century, the exploration of rhythmic phenomena has a
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Sjon Hartman @hartman-plantlab.com · 12/11/2024
Our expert update on the molecular integration of hypoxia signaling with energy, redox and hormonal cues is now out in Plant Physiology 🌱🌊! Great collaboration with Tilo, @rimchaudhury15.bsky.social, Angelika and Romy. Check it out! #plantscience academic.oup.com/plphys/advan...
academic.oup.com
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