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Akshay Gokulendran Nair

@akshaynair.bsky.social
55 followers 67 following 0 posts

PhD student in VIB-PSB Ghent. Interested in plant development and stress responses. www.psb.ugent.be/people/Gokulendran…

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Reposted by Akshay Gokulendran Nair
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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Reposted by Akshay Gokulendran Nair
Nature @nature.com · 10/07/2026
Nature research paper: Universal cell embedding provides a foundation model for cell biology go.nature.com/3T4PJGX
go.nature.com
Universal cell embedding provides a foundation model for cell biology - Nature
The universal cell embedding foundation model learns to capture the organization and variation of cells by training on 36 million cells from hundreds of experiments, dozens of tissues and eight species.
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Jan Lohmann @meristemania.bsky.social · 08/07/2026
Interested in how plant stem cells can strive in the harshest environments? Read @thomasgreb.bsky.social and my review of plant stem cell robustness: doi.org/10.1016/j.de...
doi.org
Redirecting
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Thomas Ott @ottlab.bsky.social · 12/06/2026
Happy to share our newest preprint. We developed guidelines and analysis workflows for FLIM Imaging in plants. Multiplexing with spectrally overlapping fluorophores in plants is now possible. Have a look. Any feedback is more than welcome. www.biorxiv.org/content/10.6...
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José Dinneny @josedinneny.bsky.social · 02/06/2026
So proud to share our latest publication @CellCellPress! Yue Rui reveals that the same enzyme that makes the wall, cellulose synthase complex (CESA), also tethers the plasma membrane to the wall during water-deficit stress, providing resilience. sciencedirect.com/science/articl…
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Marhavy lab @pmarhavy.bsky.social · 16/05/2026
Excited to share our latest piece in Trends in Plant Science! 🌱🔬 www.sciencedirect.com/science/arti... We highlight how single-cell laser ablation reveals plant development, wound responses, and root defenses. @TrendsPlantSci @KAUST_BESE @ESNematologists @umeaplantscie ncecentre.se #PlantScience
sciencedirect.com
Single-cell laser ablation uncovers the blueprint of plant development
Understanding how positional information within plant tissues shapes developmental programs in real time has long remained a challenge due to technica…
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Reposted by Akshay Gokulendran Nair
Vinay Shukla @vinayshukla.bsky.social · 12/05/2026
Final week to apply! 🚨 We're looking for a postdoc to join the RO2T Respiration lab at University of Nottingham working on root oxygen biology, as part of our ERC-funded Breathing Underground programme. Closes 20 May. #plantscijobs
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Reposted by Akshay Gokulendran Nair
caroGro.bsky.social @carogro.bsky.social · 12/05/2026
Very excited to share our new paper with @thomaseekhout.bsky.social and @bertderybel.bsky.social about benchmarking results for plant single-cell transcriptomics workflows from the same sample🌱. doi.org/10.1038/s443...
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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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Daniel Van Damme @danielvandamme.bsky.social · 05/05/2026
I am looking for a postdoctoral fellow to join my team to work on the interplay between endocytosis and autophagy. The 3-year project runs in collaboration with the Dagdas lab @plantophagy.bsky.social and can start asap. Interested candidates can apply via the link below. jobs.vib.be/apply/134365
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Vinay Shukla @vinayshukla.bsky.social · 23/04/2026
We're hiring! 🌱 The RO2T Respiration Group is looking for a PhD student and a postdoc to work on root oxygen biology! Please spread the word! #plantscijobs
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Vinay Shukla @vinayshukla.bsky.social · 19/04/2026
New paper out from the Synoxys lab! We asked an important question: what if plants sensed oxygen like animals do? what if we swapped the O2 sensing across? We built the system to find out. 🧵 www.nature.com/articles/s41... #plantscience @syno2xis.bsky.social @beagiuntoli.bsky.social @biology.ox.ac.uk
media.tenor.com
a poster for indiana jones and the last crusade with a man in a hat
ALT: a poster for indiana jones and the last crusade with a man in a hat
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Reposted by Akshay Gokulendran Nair
Gust Bilcke @gustbilcke.bsky.social · 27/03/2026
In our new pre-print, we established massive single-cell RNA-sequencing for diatoms to investigate key cell fate transitions. Notably, we discovered that the diploid-to-haploid transition is regulated by Myb TFs, a process that is actively ongoing across the Global Ocean! 🌊
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Daan Weits @daanweits.bsky.social · 10/03/2026
www.cell.com/molecular-pl...
cell.com
The hypoxic niche enclosing the shoot apical meristem is shaped by a combination of morphological features and metabolic activity
This study reveals how a functional hypoxic microenvironment enclosing the shoot apical meristem arises through respiratory oxygen consumption and is stabilized by a cuticle-like diffusion barrier and...
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Reposted by Akshay Gokulendran Nair
René Schneider @schneiderlab.bsky.social · 04/03/2026
🚀 Now in press at Bio-protocol! bio-protocol.org/e5634 Grounded in years of hands-on experience 👋, our protocol covers imaging cellulose synthases 🔬 from sample prep 🌱 to reproducible quantification 👩‍💻 — transferable to other fluorescent markers too ♻️. @unipotsdam.bsky.social @crc1644.bsky.social
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Sandy Hetherington @sandyheth.bsky.social · 26/02/2026
We are really excited that Euro Evo Devo will take place here in Scotland from the 9th-12th June, at the University of Glasgow! Deadline for Early Bird Registration and Abstract Submission are rapidly approaching in March so do register soon! www.evodevoconference26.com/important-da...
evodevoconference26.com
10th European Society for Evolutionary Developmental Biology Meeting 2026
The European Society for Evolutionary Developmental Biology is delighted to welcome you to the 10th biennial meeting, to be held at the University of Glasgow from June 9th - 12th in 2026.
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Danve Castroverde @danvec.bsky.social · 12/02/2026
Recruitment of bifunctional regulator thermospermine to methylated ribosomes directs xylem fate | Science www.science.org/doi/10.1126/...
science.org
Recruitment of bifunctional regulator thermospermine to methylated ribosomes directs xylem fate
Polyamines are often associated with ribosomes and are thought to stabilize their integrity. In Arabidopsis, the polyamine thermospermine (tSpm) affects xylem cell fate. tSpm induces translation of SU...
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Reposted by Akshay Gokulendran Nair
Umeå Plant Science Centre @umeaplantsciencecentre.se · 06/02/2026
🧪🌾VACANCY – PhD position in plant development Join Stephan Wenkel’s group @microproteins.bsky.social and study how molecular mechanisms shape flower development, combining experimental and computational approaches! 📅 Deadline: 31 March 2026 👉 Read more and apply: www.upsc.se/jobs/6659-ph...
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wabniklab.bsky.social @wabniklab.bsky.social · 20/12/2025
Latest from our lab in 2025. A wonderful collaboration with Sabrina Sabatini's team at Sapienza University of Rome. How mechanical signals contribute to root growth and zonation @cbgpmadrid.bsky.social @upm.es doi.org/10.1126/scia...
doi.org
Cell wall–derived mechanical signals control cell growth and division during root development
Mechanical changes in elongating root cells guide division of neighboring cells, shaping root development.
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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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nikogeldner.bsky.social @nikogeldner.bsky.social · 10/12/2025
May their words reach politicians‘ ears…
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Danve Castroverde @danvec.bsky.social · 26/11/2025
Ethylene modulates cell wall mechanics for root responses to compaction www.nature.com/articles/s41...
nature.com
Ethylene modulates cell wall mechanics for root responses to compaction - Nature
Soil compaction traps ethylene around roots, which causes transcriptional upregulation of Auxin Response Factor1, resulting in decreased root cortical cell wall thickness and thereby promoting root ra...
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Vinay Shukla @vinayshukla.bsky.social · 29/11/2025
New sheriff in town! Check out the latest from the Synoxys lab identifying histone demethylase - KDMs as a new class of oxygen sensors that act in a root-specific manner and help prime plants for hypoxia tolerance. #plantscience
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Bipin Pandey @bipinpandey.bsky.social · 27/11/2025
Delighted to share this latest manuscript @nature.com Ethylene regulating root cell wall mechanics in compacted soil in collaboration with Wanqi and Staffan Persson @uniofnottingham.bsky.social @ukri.org @uonresearch.bsky.social @lucas-de-lion.bsky.social @osvaldo-chara.bsky.social rdcu.be/eR4or
rdcu.be
Ethylene modulates cell wall mechanics for root responses to compaction
Nature - Soil compaction traps ethylene around roots, which causes transcriptional upregulation of Auxin Response Factor1, resulting in decreased root cortical cell wall thickness and thereby...
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Reposted by Akshay Gokulendran Nair
Charles Melnyk @charlesmelnyk.bsky.social · 23/11/2025
“The ZAT14 family promotes cell death and regulates expansins to affect xylem formation and salt tolerance in Arabidopsis”. Now out in @theplantcell.bsky.social led by Ming Feng and colleagues. A 🌱 thread 👇 1/x academic.oup.com/plcell/advan...
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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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Reposted by Akshay Gokulendran Nair
Maite Saura @maitesaura.bsky.social · 10/09/2025
New preprint! 🐛 Root-knot nematodes hijack root cells, turning them into feeding sites and making plants very sick. Using a cross-species scRNA-seq approach we mapped this process and show how this knowledge can be used to engineer resistant crops.🌱 A summary🧵 : www.biorxiv.org/content/10.1...
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bioRxiv Plant Bio @biorxiv-plants.bsky.social · 05/09/2025
Conserved transcriptional reprogramming in nematode infected root cells www.biorxiv.org/content/10.1101/202…
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Maizel lab @maizel-lab.org · 27/08/2025
Some Impressions of the FASEB Mechanism of Plant Development - 110 attendees, two keynotes, 46 Talks & 83 posters but one passion: understand plant development 🌱🧪🔬🧑‍💻 #PDevSRC
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Nature Plants @natplants.nature.com · 08/07/2025
New OA Article: "Water availability positions auxin response maxima to determine plant regeneration fates" rdcu.be/evfFF High water availability induces root regeneration whereas low water availability triggers callus formation via stress hormones...
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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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Ari Pekka Mähönen @apmahonen.bsky.social · 26/03/2025
It's out! Detailed transcriptome atlas of mature Arabidopsis root undergoing secondary growth. Fantastic work by Munan Lyu and Hiroyuki Iida + other lab members, wonderful collab with @bertderybel.bsky.social lab on the scRNAseq analysis. @treebiocoe.bsky.social 1/x www.nature.com/articles/s41...
nature.com
The dynamic and diverse nature of parenchyma cells in the Arabidopsis root during secondary growth - Nature Plants
A combination of lineage tracing and single-cell RNA sequencing reveals how xylem and phloem parenchyma cells in the secondary tissue of Arabidopsis root mature gradually. Upon root barrier injury, th...
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Bert De Rybel @bertderybel.bsky.social · 21/03/2025
Our Vascular Development satellite meeting linked to ICAR2025 is filling up quickly. Only 30 spots left, so register if you want to join us in Ghent!
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