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Hengqi

@hengqi.bsky.social
165 followers 217 following 16 posts

PhD student (Her/She) in plant cell biology, I am working on plant root. 🪵🪵🌴🌲🍀🌿🌱 @ University of Freiburg

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Reposted by Hengqi
Brady Lab @bradylabs.bsky.social · 14/08/2026
Our latest preprint! A deep learning framework that maps suberin, lignin and aerenchyma in both monocots and dicots! We present a collection of 1,695 fluorescent images. One surprise-the model works best when trained on both monocots + dicots! www.biorxiv.org/content/10.6...
biorxiv.org
RADIX: a deep learning framework that maps root barriers across species and reveals genetic and environmental contributions
Root anatomical barriers, including the suberized and lignified walls of the endodermis and exodermis, and cortical aerenchyma, regulate water and nutrient transport, gas exchange, and rhizosphere int...
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Karin Schumacher @schumacherlab.bsky.social · 12/08/2026
1999 ✅ 2026 ✅ 2081 🤔
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Bert De Rybel @bertderybel.bsky.social · 30/07/2026
Happy to share our combined views on the opportunities and challenges in single-cell and spatial biology; collaborative work now out in @theplantcell.bsky.social : track.smtpsendmail.com/9032119/c?p=...
track.smtpsendmail.com
Decoding plants cell by cell: opportunities and challenges in single-cell and spatial biology
Single-cell and spatial biology techniques present new opportunities for plant research, but also come with methodological considerations, technical limita
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Tatsuya Nobori @tatsuyanobori.bsky.social · 30/07/2026
A collection of perspectives on the opportunities and challenges in single-cell and spatial biology is now published in @ThePlantCell . academic.oup.com/plcell/advan... Happy to have contributed the chapter, “Spatial transcriptomics in plants: where next?”
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Brady Lab @bradylabs.bsky.social · 25/07/2026
One of our recent papers describing techniques to identify root barriers to parasitic plant infection. Plus we show that lignin in the cortex can block branched broomrape infection of tomato.
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KleineVehnLab @kleinevehnlab.bsky.social · 23/07/2026
Excited to share our latest publication! 🎉 Here @sophiezoe.bsky.social reveals an early developmental time window determining initial growth direction of lateral roots. Wonderful collaboration with @wabniklab.bsky.social and @matesf.bsky.social lab www.pnas.org/doi/10.1073/... @cibss.bsky.social
pnas.org
SHOOT GRAVITROPISM 9 links sensory timing to the initial lateral root growth angle | PNAS
Plants strategically respond to gravity and actively set defined growth angles. These gravitropic set-point angles (GSAs) shape the width and depth...
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Tonni Andersen @tonnigrubeandersen.bsky.social · 22/07/2026
Read our new review: The life and legacy of the root endodermis: A spatiotemporal view of function and development - a very nice piece by @swatimahiwal.bsky.social www.sciencedirect.com/science/arti...
sciencedirect.com
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Thomas Greb @thomasgreb.bsky.social · 20/07/2026
In an heoric endeavor, Xiomin Liu, PhD student in the lab, characterized the dynamics and topology of the cell division machinery during cambium stem cell divisions. Super fruitful collaboration with the group of Sabine Müller (@phragmoplast.bsky.social). doi.org/10.1111/nph....
doi.org
The preprophase band is dispensable for robust cell division orientation in wood‐forming cambium stem cells
Characterization of periclinal and anticlinal cell divisions in dividing cambium stem cells (CSCs). (a) Scheme indicating periclinal and anticlinal cell divisions in CSCs in the Arabidopsis hypocotyl...
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Hua Jiang @huajiang1981.bsky.social · 08/07/2026
*PhD position in Plant Physiology at Stockholm University* We are looking for a new PhD candidate to join our new lab at Stockholm University! The project will focus on epigenetic regulation of reproductive thermotolerance. Please share🙏 More information: su.varbi.com/what:job/job....
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DOMPS @domps-ufr.bsky.social · 01/07/2026
How do roots choose their angle? Steep, deep, and cheap! @gwenkirschner.bsky.social (from @hutton.ac.uk) explored the molecular control of root angle in barley, revealing how cytokinin and other regulators determine root growth angle and shape root system architecture. 📅 Jun 26 #PlantScience
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Bert De Rybel @bertderybel.bsky.social · 11/05/2026
Not sure which scRNA-seq platform to use for 🪴 plant samples? How well do doublet detection algorithms really work in 🌱? How can I optimise sample prep ? Find out in our benchmark study! Led by @carogro.bsky.social and @thomaseekhout.bsky.social. Open access at EMBO Journal: doi.org/10.1038/s443...
doi.org
Benchmarking plant single cell RNA-sequencing sample processing strategies - The EMBO Journal
The isolation of single plant cells from complex tissues is prone to selective enrichment and sampling biases, which complicates accurate profiling of the large diversity in cell types. Optimizing methodologies for cell enrichment and single-cell transcriptomics is therefore critical for single-cell studies addressing plant cell heterogeneity. Here, we systematically compared protoplast enrichment technologies (including conventional and image-based flow cytometry, as well as magnetic cell sorting) and single-cell RNA sequencing (scRNA-seq) platforms (10X Genomics Chromium, BD Rhapsody) using Arabidopsis roots. Image-based flow cytometry offered increased precision due to customizable gating strategies, while magnetic sorting provided faster processing and enhanced representation of cell size heterogeneity. Both scRNA-seq platforms captured root cell heterogeneity and yielded reproducible gene expression profiles, but showed platform-associated differences in cell type composition. Notably, single-nucleotide polymorphism analysis of a mixed ecotype sample revealed that, among cells identified as doublets by computational algorithms, two-thirds were likely to have been misclassified. These insights identify key biases in plant cell purification and scRNA-seq workflows and provide practical guidance for improving data quality across plant species.
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Laura Ragni @lauraragni.bsky.social · 06/05/2026
Very proud of my student @hengqi.bsky.social who won best poster award #rooting2026 #proudPI @dompsfr.bsky.social
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Hengqi @hengqi.bsky.social · 06/05/2026
Great Job!👏🏻👍👍
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Hengqi @hengqi.bsky.social · 06/05/2026
We are now watching a nice ‘movie’ created by Sophie! She is presenting her work on lateral roots!🌱👍
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Nature Plants @natplants.nature.com · 06/05/2026
New Article: "Root hair lifespan is antagonistically controlled by autophagy and programmed cell death" rdcu.be/fhdSG Autophagy negatively regulates senescence-induced programmed cell death to maximize the functional lifespan of root hairs. #PlantScience
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Nature Plants @natplants.nature.com · 06/05/2026
New OA Article: "Cell-type-specific autophagy in root-hair-forming cells is essential for salt stress tolerance in Arabidopsis thaliana" rdcu.be/fhdNJ Enhanced autophagy helps Arabidopsis store excess sodium, control oxidative stress and tolerate salt stress. #PlantScience
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Sophie Zoe Farkas @sophiezoe.bsky.social · 05/05/2026
@dompsfr.bsky.social is well represented at the #Rooting2026 conference! We just heard a great talk by @lauraragni.bsky.social. You can check out our posters #7 (@hengqi.bsky.social) and #4 (mine) today, and listen to my talk tomorrow.
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Jian-Pu 韩 @jian-pu.bsky.social · 05/05/2026
It’s FINALLY out! We investigated the natural variations for endodermal suberin and identified SUBER GENE1 (SBG1)- Type One Protein Phosphatases (TOPPs) as a novel module that regulates endodermal suberization. @mariebarberon.bsky.social rdcu.be/fgU6g #PlantScience
rdcu.be
GWAS reveal SUBER GENE1-mediated suberization via type one phosphatases
Nature Plants - A genetic screen across Arabidopsis accessions identifies SBG1 as a regulator of root abscisic acid response and endodermal suberin deposition via type 1 protein phosphatases,...
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Hengqi @hengqi.bsky.social · 28/03/2026
🥳 We managed! #teamwork
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DOMPS @domps-ufr.bsky.social · 28/03/2026
Our excursion to Syngenta Crop Protection Research Stein offered insights into seed care, chemistry, and product development. From designing active compounds to creating practical crop protection solutions, one key message stood out: innovation starts with “thinking like a farmer.”
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Sjon Hartman @hartman-plantlab.com · 27/03/2026
Super proud of the team organizing this year's @dompsfr.bsky.social #plantscience symposium 🌱 We had a blast!
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DOMPS @domps-ufr.bsky.social · 27/03/2026
“We still don’t know what’s going on, but we’re having fun on the way.” - @likeyoda1.bsky.social (from @unituebingen.bsky.social) Margot’s keynote explored how cell identity is regulated during plant embryogenesis, from the heart to torpedo stage, through precisely timed asymmetric cell divisions.
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DOMPS @domps-ufr.bsky.social · 27/03/2026
Anup Kumar (from @uni-freiburg.de) introduced how artificial intelligence and machine learning are shaping modern biological research. The workshop highlighted how computational approaches can support data analysis, pattern detection, and biological discovery in increasingly complex datasets.
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CIBSS – Centre for Integrative Biological Signalling Studies @cibss.bsky.social · 26/03/2026
#CIBSS is happy to support our local #PlantScience community and to facilitate scientific exchange and networking. Have a fantastic meeting full of meaningful interactions, exciting science and of course lots of fun together!
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Laura Ragni @lauraragni.bsky.social · 26/03/2026
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Hengqi @hengqi.bsky.social · 26/03/2026
We had such a great time at Syngenta Stein! 🌱 Science, smiles, and great company🍀. —4th DOMPS symposium excursion
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Michael Raissig @michaelraissig.bsky.social · 25/03/2026
Our first study on how the leaf succulent Kalanchoë laxiflora makes stomatal subsidiary cells is finally peer-reviewed & out - and it made the cover! 🌵 🧬 🔬 doi.org/10.1126/scia... Despite 150 years of evolution, grasses and Crassulacean succulents use the SAME gene to make subsidiary cells! 🤯
ONLINE COVER: Leaves of Kalanchoe thyrsiflora, a member of the Crassulaceae family of succulents also containing Kalanchoë laxiflora. Stomata, otherwise known as plants’ breathing pores, allow gas exchange between plants and the atmosphere, but little is known about how succulent stomata are formed or move. Cheng et al.’s investigation into K. laxiflora revealed that subsidiary cells can support the opening and closing of stomata and that the transcription factor MUTE, which drives stomatal development, also facilitates additional rounds of asymmetric division needed to generate subsidiary cells. Their work provides insight into succulent development and could be applied in agricultural contexts to engineer water conservation strategies.

Credit: Rob Tilley / MindenExcessive activation of the MUTE gene switch leads to unrestricted asymmetric cell divisions in the leaf surface of the succulent Kalanchoë laxiflora.
© Miro LäderachThe MUTE gene switch is active in all cells of the developing stomata. Gene activity is visible through a weak signal (in blue) in the future helper cells and a strong signal (in green) in the mother cell of the guard cells.
© Michael Raissig
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Hengqi @hengqi.bsky.social · 25/03/2026
Super cool Workshop from @marcus Everyone was actively engaged in the discussion! Took away a lot of valuable insights!
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DOMPS @domps-ufr.bsky.social · 25/03/2026
We started our 4th departmental symposium with a short introduction from our PhD representatives. We are very grateful for their work! If you would like to join a wonderful group of people and help drive change at the university level, reach out to them. 🙌🏻
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New Phytologist @newphyt.bsky.social · 25/03/2026
We are pleased to support the DOMPS Symposium taking place in Freiburg this week: dompssymposium.wixsite.com/domps The New Phytologist Foundation supports events that further innovation and advancement in plant-focused research around the world: www.newphytologist.org/grants-award...
dompssymposium.wixsite.com
DOMPS Symposium 2026 - Freiburg
Symposium taking place in Freiburg from 25.03-27.02. With this symposium, we aspire to strengthen the connection between members of the Department of Molecular Plant Sciences (DOMPS). We especially…
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Hengqi @hengqi.bsky.social · 25/03/2026
Free feel to stop by and explore our posters!🥳 the 4th DOMPS symposium is running!!!
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Sjon Hartman @hartman-plantlab.com · 25/03/2026
Opening of this year's @dompsfr.bsky.social Symposium by @kevindaniel.bsky.social and @advaitagashe.bsky.social 🌱 Look forward to an exciting 3 days for our @biologyunifreiburg.bsky.social #plantscience community 👍🏻
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Sjon Hartman @hartman-plantlab.com · 24/03/2026
Happening from tomorrow onwards and organized by our @dompsfr.bsky.social PhD students @hengqi.bsky.social @kevindaniel.bsky.social, @rimchaudhury15.bsky.social , @advaitagashe.bsky.social and @carlos-rc.bsky.social. Exciting!
media.tenor.com
a man in a tie is excited and says so excited !!!
ALT: a man in a tie is excited and says so excited !!!
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Jennifer Lopez Ortiz @jenlopezortiz.bsky.social · 13/03/2026
During secondary growth, primary protective barriers break, and a new one forms beneath: the phellem. But what triggers phellem to differentiate and become a functional barrier? Our results show it’s mechanical cues from tissue rupture 🌱 Check out our preprint 👇 www.biorxiv.org/content/10.6... 🧵/1
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Hengqi @hengqi.bsky.social · 12/03/2026
Symposium preparation in progress ✂️ Name badges, last-minute logistics. Getting everything ready for the 2026 DOMPS Symposium in Freiburg! @kevindaniel.bsky.social @advaitagashe.bsky.social @rimchaudhury15.bsky.social @Carlos
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Laura Ragni @lauraragni.bsky.social · 09/03/2026
🚨 PhD Position in Plant Molecular Biology 🌱 We are looking for a motivated PhD student to join our team to study root protective barriers. If you are interested in confocal microscopy, cell wall biology, and plant development, this project might be for you! Please share! #PlantScience #PlantSciJob
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Clémence Marchal @clemmar.bsky.social · 05/02/2026
Please share! We are looking for a postdoctoral scientist (2 years, extension possible) starting from 01/05/2026 at @ipbhalle.bsky.social! The project focuses on plant immune receptor biochemistry and structural biology. Deadline 09/03/2026. Apply at: ipb-halle.mhm.jobs/11-postdocto...
ipb-halle.mhm.jobs
Postdoctoral position in biology (m/f/d) (2/2026)
Leibniz Institute of Plant Biochemistry (Halle) offers a Postdoctoral position in Biology
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Peter Etchells @peteretchells.bsky.social · 02/02/2026
Given the described activators of cambium growth, we reasoned repressors were needed to balance the system. Here they are! www.biorxiv.org/content/10.6... Discovery: Xing, Jingyi, Emma, Riikka, Anne-Maarit, Julia, Qing, Hanan, Raluca, Joanna, Yuqi, Wiki #plantscience #plantdev
biorxiv.org
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Bert De Rybel @bertderybel.bsky.social · 20/01/2026
Happy to present our latest: Evolutionary adaptations to the hormonal regulation of vascular tissue development | PNAS www.pnas.org/doi/10.1073/.... Work by Wei Xiao and funded by @erc.europa.eu
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
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Laura Ragni @lauraragni.bsky.social · 20/11/2025
It’s finally out! 🎉 Work led by former PhD student @wei-xiao-botany.bsky.social , in collaboration with @bayerlab.bsky.social and @bertderybel.bsky.social AINTEGUMENTA phospho-switch regulates bilateral stem cell activity during secondary growth. 🔗 www.pnas.org/doi/10.1073/... #PlantSciences
pnas.org
An AINTEGUMENTA phosphoswitch controls bilateral stem cell activity during secondary growth | PNAS
Plant stem cells have the remarkable ability to give rise to distinct tissues and organs throughout development. Two concentric cylinders of active...
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KleineVehnLab @kleinevehnlab.bsky.social · 22/09/2025
1/ 🌱 When plants face stress, they often suppress growth to save resources. In our new Science Advances paper, we reveal how: plants repurpose their ER quality control machinery (ERAD) to regulate auxin compartmentalization and thus growth. www.science.org/doi/10.1126/...
science.org
ERAD machinery controls the conditional turnover of PIN-LIKES in plants
Plant ERAD machinery governs the turnover of auxin transporters involved in developmental and stress responses.
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Ralf Reski @reskilab.bsky.social · 17/09/2025
Great article in Cell: Time-resolved reprogramming of single somatic cells into totipotent states during plant regeneration It's about #Arabidopsis and #auxin. www.cell.com/cell/fulltex...
cell.com
Time-resolved reprogramming of single somatic cells into totipotent states during plant regeneration
In Arabidopsis, transcriptional factors LEC2 and SPCH enhance local auxin biosynthesis, establishing a transcriptional framework that enables differentiated single somatic epidermal cells to regain to...
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Jeffrey Ross-Ibarra @jrossibarra.bsky.social · 11/08/2025
Our paper showing that variation in transcription factor binding sites underlies the majority of additive genetic variance for phenotypic variation in maize is finally out! Sadly they didn't use our suggested cover image below (made by the inimitable Andi Kur). www.nature.com/articles/s41...
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Laura Ragni @lauraragni.bsky.social · 14/06/2025
And now it is the turn of @hengqi.bsky.social representing the team!
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Bert De Rybel @bertderybel.bsky.social · 14/06/2025
Warming up to #ICAR2025 🌱with two days of cool vascular science at our Vascular Development satellite meeting at @psb-vib.bsky.social.
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DOMPS @domps-ufr.bsky.social · 08/05/2025
The importance of barriers in a functional relationship... After the break, the Plant Science Seminar is back with @tonnigrubeandersen.bsky.social (from @maxplanck.de). 📅 Tomorrow (Fri, May 9) 🕥 10:15 | 📍 Room KS0.009 Want to meet Tonni? He’ll be around, just drop @lauraragni.bsky.social an email.
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Sjon Hartman @hartman-plantlab.com · 03/04/2025
Great @dompsfr.bsky.social #Plantscience symposium this year 🌱 What a fantastic community 👏🏻 Thanks to the organizers!
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Hengqi @hengqi.bsky.social · 01/04/2025
Wonderful workshop! Got a lot of take-home messages!
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Eucor – The European Campus @eucor-uni.org · 01/04/2025
The joint project "Deciphering Molecular Determinants of Plant Resilience and Biomass Production" by @lauraragni.bsky.social (@uni-freiburg.de) and @huguesrenault.bsky.social (@unistra.fr) is starting in April! Eucor is funding the project with #SeedMoney. www.eucor-uni.org/en/funding-o...
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Ka Wai Ma @kawaima.bsky.social · 01/04/2025
‼️we are pleased to share the first work coming from my lab on biorxiv. Misregulation of the jasmonate signaling pathway leads to altered plant microbiota interaction and plant stress responses biorxiv.org/content/10.1... 1/n
biorxiv.org
Misregulation of the jasmonate signaling pathway leads to altered plant microbiota interaction and plant stress responses
The model plant Arabidopsis thaliana hosts diverse microbial communities collectively known as the microbiota. The plant microbiota is generally taxonomically structured. Some of the members can promo...
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