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Ulrich Lutz

@ulrich-lutz.bsky.social
1.2K followers 900 following 23 posts

Plant scientist and entrepreneur • Building Biogenda (biogenda.de/en) and the Custom-Lab Institute (custom-lab.de / @custom-lab.bsky.social)

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Reposted by Ulrich Lutz
The Arabidopsis Information Resource (TAIR) @tairnews.bsky.social · 06/10/2026
Want to beta test the TAIR chatbot? We invited volunteers in March, when it was in alpha. After six months of work on more robust responses, we're holding a live feedback session in mid- to late October. New testers welcome! Please share.🧵 Try it ahead of time: dev.arabidopsis.org
screenshot of the AI chatbot with a textbox for entering questions
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Marc Somssich @somssich.bsky.social · 29/09/2026
Job alert! We are looking for a Head of Applied Genomics in our Vegetable Division @kwsgroup.bsky.social. This is a leadership position (full-time, permanent) based in the Netherlands. A strong background in #CropGenetics and leadership experience are necessary. #PlantScienceJobs #PlantSciJobs
jobs.kws.com
Head of Applied Genomics
Head of Applied Genomics
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 23/09/2026
Conventional #GMO crops have unexpected benefits in the face of climate change: reduced yield volatility, fewer climate related losses & even slowing the northward shift of US corn & soybean production. #climatecatastrophe www.nature.com/articles/s41...
Fig. 1 | Crop harvested land-use percentage change from 1978 to 2020.
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Reposted by Ulrich Lutz
Peter Morrell @peterlmorrell.bsky.social · 19/08/2026
QTL mapping academic.oup.com/genetics/art... Whether you are new to QTL mapping or have years of experience, you’re sure to learn something new and interesting from Shizhong Xu’s Primer. Don’t fret over the equations; there is a terrific narrative here about the past and future of QTL mapping!
academic.oup.com
QTL mapping
Abstract. Most biologically relevant traits are quantitative, controlled by multiple genes, and can be influenced by the environment. The multiple genes, c
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Plant Science Spotlight @plant-sci.bsky.social · 18/09/2026
🌱🧬 Col-0 isn't one genotype—it's a family of diverging lineages. Genome and methylome sequencing of 78 lab stocks reveals accumulated SNPs, epimutations, and subtle phenotypic drift. Know where your seeds come from. #plantscience @natplants.nature.com www.nature.com/articles/s41...
nature.com
Col-0 genetic divergence - Nature Plants
Nature Plants - Col-0 genetic divergence
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Amrei Bahr @amreibahr.bsky.social · 07/09/2026
Verzweiflung: verständlich. Wer sie nun aber zum Anlass nimmt, Resignation ins Internet zu schreiben, möge bitte dran denken, dass damit andere zusätzlich belastet werden. Auch die, die in Sachsen-Anhalt unermüdlich wertvolle Arbeit für Demokratie leisten. Öffentlich resignieren ist nicht hilfreich:
taz.de
Ansteckende Resignation: Der Dystopie trotzen
Erzählungen vom Untergang der Welt ziehen runter. Was hilft dagegen? Unter anderem, keine Hiobsbotschaften über die sozialen Netzwerke zu verbreiten.
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Marc Somssich @somssich.bsky.social · 03/09/2026
Another #PlantScience job here @kwsgroup.bsky.social! We need a seed physiology expert in our seed research team. This is a full-time, permanent position here at our headquarters in Einbeck. Expertise in Seed Physiology and Germination are needed. #PlantSciJob #PlantSciJobs
jobs.kws.com
Scientist Seed Research (m/f/d)
Scientist Seed Research (m/f/d)
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Reposted by Ulrich Lutz
PlantEvolution 🌱🌾 @plantevolution.bsky.social · 04/08/2026
Eerie similarity between NodeGWAS and our gfa2bin tool. Uses same public data (curated by my lab), same comparison against previous method from my lab & even same programming language, Rust. gfa2bin preprint went online 5 months before NodeGWAS was submitted. www.sciencedirect.com/science/arti...
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Journal of Experimental Botany @jxbotany.bsky.social · 03/08/2026
🔬🌱 TECHNICAL INNOVATION 🌱🔬 Rodríguez et al. present SuB3, a simple, fast, and inexpensive method to separate nuclear and cytoplasmic contents of plant cells to study where genes are active and how they are regulated. 🔗 doi.org/10.1093/jxb/... #PlantScience 🧪
Fig. 1.Schematic overview of the SuB3 protocol. The schematic shows the SuB3 workflow for obtaining total RNA and nuclear- and cytoplasmic-enriched fractions from ground tissue.
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Plant Science Spotlight @plant-sci.bsky.social · 31/07/2026
🌾🧬A tetraploid wheat pangenome from 12 genomes reveals domestication genetics, transposon-driven SV, and a Btr1-A allele for non-brittle rachis. GWAS identifies 287 loci, including HAT14-B for grain size and spikelet number. A key resource for wheat breeding #plantsci www.nature.com/articles/s41...
nature.com
A pangenome of tetraploid wheat reveals the genetic architecture underlying domestication and genomic diversity for breeding - Nature Genetics
A pangenome of tetraploid wheat constructed from 12 de novo genome assemblies spanning 10 subspecies, integrating with whole-genome sequencing data, highlights genetic variation associated with agricu...
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MPI for Biology Tübingen & Friedrich Miescher Laboratory @mpi-bio-fml.bsky.social · 27/07/2026
Friday afternoon = Fix Your Bike time. 🚲 Behind FixYourBike is a group of colleagues who invite the whole campus to their repair sessions. The motto: bring your bike, learn to fix it yourself. And now there’s a bike repair station on campus too! 🔧 Thanks for keeping our bikes rolling!
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Ali Raza @aliraza6.bsky.social · 22/07/2026
Happy to share our🆕 #OpenAccess review "𝘽𝙧𝙚𝙚𝙙𝙞𝙣𝙜 𝙙𝙧𝙤𝙪𝙜𝙝𝙩-𝙩𝙤𝙡𝙚𝙧𝙖𝙣𝙩 𝙘𝙧𝙤𝙥𝙨 𝙛𝙤𝙧 𝙨𝙪𝙨𝙩𝙖𝙞𝙣𝙖𝙗𝙡𝙚 𝙖𝙜𝙧𝙞𝙘𝙪𝙡𝙩𝙪𝙧𝙚💦🌾🌿" is now published in 𝘼𝙜𝙧𝙞𝙘𝙪𝙡𝙩𝙪𝙧𝙚 & 𝙁𝙤𝙤𝙙 𝙎𝙚𝙘𝙪𝙧𝙞𝙩𝙮 | @springernature.com 🤩🎊🎉🔁 🖇️ link.springer.com/article/10.1... ✔️Congrts to all authors👏 @abioticstress.bsky.social @planteditors.bsky.social
With the escalating impacts of climate change, drought stress (DS) is significantly decreasing water accessibility and availability, causing substantial direct and indirect economic repercussions within agricultural systems. Addressing the needs of a growing global population necessitates urgent advancements in breeding DS-tolerant crops while maintaining high yields. This urgency demands a fast and adaptable defensive strategy to mitigate the adverse effects of DS on crop productivity. Accelerating such developments requires leveraging advanced omics-assisted breeding (e.g., genomics, transcriptomics, proteomics, and metabolomics), genetic engineering (e.g., transgenic technology, and genome editing), machine learning, precise phenotyping, crop wild relatives, and speed breeding. These fast-forward methods present highly promising avenues for the design of future crops that can withstand DS pressures. In summary, we propose an innovative approach termed the “OGS trio,” which encompasses omics integration, genetic engineering, and speed breeding. This trio stands composed to transform efforts against DS, offering significant potential for developing drought-tolerant crops to achieve and food security amidst climate change.
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EMBO Lab Leadership @embolableadership.bsky.social · 13/07/2026
The EMBO Lab Leadership for #Postdocs online course running 08–10 September still has places open. Three days on the people side of running research: - interpersonal skills - tools for your development - clearer communication Sign up here: www.embolableadership.org/course/embol...  #EMBOLabLead
A woman by a flipchart during a course. Text highlighting the EMBO Lab Leadership for postdocs online course 08-10 September still has places available
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Reposted by Ulrich Lutz
Tonni Andersen @tonnigrubeandersen.bsky.social · 07/07/2026
Time for another preprint from the lab: www.biorxiv.org/content/10.6... Led by @yuanyuanzhang.bsky.social and @defengshen.bsky.social. We found some surprising secrets that connect and uncouple root barrier formation with systemic nitrogen signaling in shoots. see the thread below for more details
biorxiv.org
A tunable receptor separates root barrier formation from nutrient signaling through ligand-perception states
In roots, the endodermis controls nutrient entry by forming a barrier known as the Casparian strip. Yet how barrier-associated processes interface with systemic signaling remains unclear. Here, we sho...
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Plant Science Spotlight @plant-sci.bsky.social · 24/06/2026
🌱🧬 FLOWERING LOCUS C integrates seasonal temperature signals over time. Prolonged winter cold is monitored in parallel through chromatin memory mechanisms. This robust system aligns flowering with spring #plantscience @sulteavn.bsky.social @miguelmontez.bsky.social www.nature.com/articles/s41...
nature.com
Molecular integration of seasonal temperature signals in flowering time control - Nature Reviews Genetics
Plants must accurately time flowering by integrating seasonal temperature cues to ensure reproductive success. This Review describes how two mechanisms — rapid transcriptional responses and long-term ...
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Ralf Reski @reskilab.bsky.social · 17/06/2026
Ein guter Tag! EU macht Weg für Genomeditierung frei Nach Jahren hat das EU Parlament den Weg für Neue genomische Techniken freigemacht. Während Züchter und Forscher von einem überfälligen Modernisierungsschritt sprechen, warnen die Grünen vor einer Deregulierung. transkript.de/artikel/2026...
transkript.de
EU macht den Weg für Genomeditierung frei
Nach Jahren erbitterter Debatten hat das Europäische Parlament den Weg für Neue genomische Techniken freigemacht. Während Züchter und Forscher von einem überfälligen Modernisierungsschritt sprechen, w...
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Etienne Bucher 🌾🧬🇪🇺 @plantepigenetics.ch · 05/06/2026
We just published our new paper about an active Helitron transposon in wheat 🌾🧬 We found that it can be mobilised by heat stress when DNA methylation is reduced. We document its full lifecycle: RNA -> circular DNA -> integration www.nature.com/articles/s41... #TEsky
nature.com
An active Helitron transposon family in wheat - Nature Plants
Helitrons are a recently identified category of transposons. This study reveals that heat stress combined with reduced DNA methylation can mobilize a Helitron family in wheat. Its mobilization is gene...
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Marco Pessoa @marcopessoa.bsky.social · 16/06/2026
www.nature.com/articles/s41...
nature.com
A k-mer-based genome-wide association study approach empowering gene mining in polyploids - Nature Genetics
KMERIA, a k-mer-based genome-wide association study approach, specifically designed for polyploids, enhances statistical power and efficiency in agronomic variant discovery when applied to high-ploidy...
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WePlanet @weplanetint.bsky.social · 15/06/2026
Today is a big moment for the future of European agriculture. After over two years of negotiations the EU Parliament's ENVI committee will vote on the New Genomic Techniques (NGTs) file. We've been there since the beginning advocating for NGTs to improve EU sustainability & food security.
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Abiotic Stress in Plants @abioticstress.bsky.social · 15/06/2026
From #growth potential to #drought survival: a trait- and time-based framework for plant #water economics across #vascular species nph.onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @newphyt.bsky.social @wileylifesci.bsky.social @sciplant.bsky.social @silvapereiralab.bsky.social @botany.one
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Will Shaw @willshaw.bsky.social · 11/06/2026
New preprint out 🌱 We present a new T-DNA vector system for Arabidopsis that supports clean, genomically mapped, single-copy T-DNA insertion with predictable cell-type/conditional gene expression. @mokhalil.bsky.social + Gehring labs biorxiv.org/content/10.6... 🧵1/16
biorxiv.org
Rational design of T-DNA vectors enables predictable, single-copy integration in Arabidopsis thaliana
Agrobacterium-mediated transformation is the dominant method for plant transgenesis, yet it frequently produces multi-copy, structurally complex T-DNA insertions associated with transgene silencing, u...
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Rodrigo Reis @rodrigoreislab.com · 10/06/2026
Cool new T-DNA plasmid! Let's see how it gets adopted and common tools become available -- hope those will happen to some level at least www.biorxiv.org/content/10.6...
biorxiv.org
Rational design of T-DNA vectors enables predictable, single-copy integration in Arabidopsis thaliana
Agrobacterium-mediated transformation is the dominant method for plant transgenesis, yet it frequently produces multi-copy, structurally complex T-DNA insertions associated with transgene silencing, u...
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The Custom-Lab Institute @custom-lab.bsky.social · 21/05/2026
One of the best parts of building Custom-Lab Institute is turning user feedback into new tools. Thanks to 3D printing and on-demand production, we can iterate fast and ship in no time! That’s exactly how this new Mag Rack for 8 or 16 tubes was born. It quickly became a bestseller! 🎉 custom-lab.de
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Joe Walker @evojfwalker.bsky.social · 19/05/2026
RNA from herbarium samples is more stable than previously thought and can be extracted for different uses genome.cshlp.org/content/earl.... Study led by @atyszka.org and in collaboration with @philcarella.bsky.social @khongsamchia.bsky.social @phylonatworks.bsky.social @sciencedrew.bsky.social
genome.cshlp.org
Herbaria provide a valuable resource for obtaining informative mRNA
Although DNA has built the framework for molecular insights from museum collections, the utility of archival RNA remains largely unexplored. Likely a consequence of the known instability of RNA relative to DNA, this has effectively precluded the use of herbaria for transcriptomics. Here, we challenge the assumption that herbaria cannot be used for transcriptomics by assembling transcriptomes from RNA extracted from herbarium specimens. Through systematic comparison of transcriptomes from fresh-collected, silica-dried, and archival specimens, we demonstrate the suitability of herbarium-derived RNA for transcriptomics. We show the practical applicability of archival mRNA by functionally validating a plant immune receptor synthesized from a specimen collected in 1956. These results contradict the community consensus regarding archival RNA and open the door to subsequent transcriptomic explorations of rare and extinct plant species. Our findings highlight the importance of preserving and utilizing the diversity embedded within herbarium collections.
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Marcus Stensmyr @marcusstensmyr.bsky.social · 05/05/2026
Here is a banger! Our new paper in @currentbiology.bsky.social is out! We have used museomics to sequence a 45yr old specimen of Drosophila enhydrobia, a rare and most unusual fly whose larvae are aquatic(!) and predatory(!). Very cool, big success. authors.elsevier.com/sd/article/S...
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 28/04/2026
Fantastic paper led by Matthew Davis from @grey-monroe.bsky.social, on genome degradation in long-term walnut tissue culture: Somatic embryogenesis increases mutation rates >30x, with aneuploidy, large deletions, somatic recombination, and elevated #TE activity. www.pnas.org/doi/10.1073/...
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MichaelMcMurray lab @mcmurraylab.bsky.social · 22/04/2026
Doing the periodic cleaning of used plasmid miniprep columns and realized in honor of Earth Day it may be worth reminding you molecular biologists: Plasmid miniprep columns can be cleaned and reused essentially indefinitely! Just add 1 M HCl, soak overnight and wash 3x w/ water. Save $ and plastic
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Devang Mehta🌱🧬 @mehta-lab.com · 21/04/2026
Someone in the Arabidopsis/clock community seems to deeply dislike my work on research culture. Just want to say: whoever you are, please write & debate me directly instead of cowering behind anonymous grant reviews that threaten my students’ work. (2nd year in a row)
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Ignacio_Rubio-Somoza @ignaciorubiosomoza.bsky.social · 15/04/2026
#PlantJob do you have experience in metabolomics and want to help us to get to the next level in our research @cragenomica.bsky.social , if so, please consider applying to this post to manage our facility!, please, help us spread the word! recruitment.cragenomica.es/jobs/genomic...
recruitment.cragenomica.es
Metabolomics Platform Scientific Lead (Ref. 20/2026) | CRAGJobs
CRAG is inviting applications for an Established Researcher (R3) position funded under the ESTAB 2024 programme (Modalitat C) of AGAUR.
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Marco Todesco @mtodesco.bsky.social · 16/04/2026
We are looking for a postdoc to help with a project on eelgrass genomics, in collaboration with the O'Connor and Rieseberg labs at UBC - see ad here tinyurl.com/2yd487p4! Come and join us in beautiful Vancouver 🌊🌾🏔️
tinyurl.com
Postdoc Position Eelgrass Population Genomics_UBC_2026.pdf
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 16/04/2026
1/8 🔥 New preprint dropped: Dynamic co-existence of bacteriophages and their hosts 🦠 in the Arabidopsis thaliana 🌱 phyllosphere Work led by the indomitable @sheilaroitman.bsky.social‬ #plantscience #microbiome #holobiont www.biorxiv.org/content/10.6...
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The Custom-Lab Institute @custom-lab.bsky.social · 14/04/2026
Upgrade your lab workflow with our new, fully customizable bead dispenser for 8 tubes. No more manual bead handling. Just load, dispense, and move on with your sampling. Fully customizable for bead size and count, and very affordable. Just like all our products. ➡️ custom-lab.de/products/asa...
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Institute of Experimental Botany of the CAS @iebcas.bsky.social · 14/04/2026
#newpaper: Combining promoter and induced intron 1 mutations of Vrn-A1a does not accelerate flowering in wheat @springernature.com: Wheat, Vernalization, Vrn-A1a, RIP3, Genome editing, Crops doi.org/10.1007/s110... @pecinka-grp.bsky.social
doi.org
Combining promoter and induced intron 1 mutations of Vrn-A1a does not accelerate flowering in wheat - Molecular Breeding
Molecular Breeding - In temperate cereals, vernalization regulates the transition from vegetative to reproductive growth in response to low temperatures. A central component of this pathway is...
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Amrei Bahr @amreibahr.bsky.social · 14/04/2026
Nach 14 Jahren fällt man den Entschluss, Academia zu verlassen, nicht mal eben so -- trotz all unserer Kritik ➡️ #IchBinHanna Warum ich dazu nicht bloß die Erkenntnis brauchte, was ich verliere, wenn ich bleibe, sondern auch eine Idee davon, was ich gewinne, wenn ich gehe: Heute in #ArbeitInDerWiss!
steady.page
Tschüss, Academia! Erpressbar war ich gestern
Was es gebraucht hat, um den Entschluss zu fällen, dass ich der Wissenschaft den Rücken kehre -- und was ich schon jetzt dadurch gewonnen habe.
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Patience Chatukuta @drpchronicles.bsky.social · 10/04/2026
Check out our paper on the diversity of crop wild relatives in Zimbabwe! #CropWildRelatives #PlantScience #Biodiversity #Conservation #ClimateResilience #Zimbabwe www.linkedin.com/posts/dr-pat...
linkedin.com
A national crop wild relative checklist for Zimbabwe reveals edible crop wild relative diversity of regional and global importance | Dr Patience Chatukuta
📢 Check out this checklist of crop wild relatives in Zimbabwe! 💡 Crop wild relatives are the untamed cousins of our cultivated crops. 📊 The checklist provides baseline data for crop improvement and...
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Derek Severi Lundberg @derekseveri.bsky.social · 07/04/2026
When organisms look similar, you can use a tag to tell them apart. We wanted to tag our collection of diverse Sphingomonas bacteria with DNA barcodes to distinguish them. We planned to use Tn7, until we saw new reports about CRISPR-associated transposons (CASTs).
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Pedro Brandão-Dias F Pinto @pedrobd.bsky.social · 13/02/2026
🧬 My haplotype paper is out! We show that deviations between within-sample and population-level haplotype frequencies can be used to estimate how many individuals contributed to an eDNA sample. No tissue references needed, just metabarcoding data and some population genetics. #eDNA #PopGen
onlinelibrary.wiley.com
Estimating Organism Abundance Using Within‐Sample Haplotype Frequencies of eDNA Data
Environmental DNA (eDNA) provides powerful insights into species presence and community composition but remains limited in its capacity to infer species abundance or population structure. Here, we sh...
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Russ Corbett-Detig @russcd.bsky.social · 31/03/2026
Alex Kramer, Alan Zhang and friends posted our preprint today. In it, we introduce Panmap, a tool for phylogenetic placement, assembly, lineage abundance estimation, and eDNA assignment using phylogenetic pangenomes. www.biorxiv.org/content/10.6...
biorxiv.org
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 31/03/2026
@forbes.com picking up the recent work by @carlbergstrom.com & Kevin Gross in @plosbiology.org on the future of peer review. www.forbes.com/sites/johndr...
forbes.com
The System That Decides What Science Gets Published Is Breaking Down
The peer review system that validates scientific research is trapped in a self-defeating cycle. A new mathematical model shows why—and what comes next.
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Moi Expósito-Alonso (MOILAB) @mexpositoalonso.bsky.social · 26/03/2026
Our new experimental evolution study across 30+ locations using the plant Arabidopsis thaliana —— we direct "see" adaptation and extinction to different climates at the genetic as it happens! Read it in Science dx.doi.org/10.1126/scie... @ucberkeleyofficial.bsky.social @hhmi-science.bsky.social
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Molecular Plant & Plant Communications @mplantpcom.bsky.social · 24/03/2026
FT Florigen proteins in photoperiodic signaling: conservation and diversity in their regulation, structure and function #review #MolecularPlant cell.com/molecular-pl...
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Genome Biology and Evolution @genomebiolevol.bsky.social · 16/03/2026
Bacot et al. investigated the genetic mechanisms underlying adaptation of tiger mosquito to deltamethrin in La Réunion Island; results indicate that multigenic metabolic resistance observed in this territory mainly results from local adaptation. 🔗 doi.org/10.1093/gbe/evag039 #genome #evolution
GBE | Metabolic resistance of the tiger mosquito to pyrethroid insecticides in La Réunion Island likely results from local adaptation
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apaulalm.bsky.social @apaulalm.bsky.social · 16/03/2026
Really happy to see this preprint out on bioRxiv! An exciting project and results, a huge amount of work, and many people involved along the way. Thanks to everyone in Team PATHOCOM. Special thanks to Wei Yuan, Kevin Murray @kdm9.bsky.social, Ilja Bezrukov and Detlef @plantevolution.bsky.social!
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 14/03/2026
1/11 🔥 New preprint alert 🔥 We wanted to know what plants in the wild really care about. So we asked them 🎤. Here is what we learned: “Biotic-response networks are an important organizer of the transcriptome in wild Arabidopsis thaliana populations” www.biorxiv.org/content/10.6...
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Amélie Allard @amelieallard.bsky.social · 11/03/2026
📌 New review out today from my colleague Aurore Johary and our PI @zoejolylopez.bsky.social! An overview of TE-based epigenome engineering in plants. 🧬🌿 #PlantScience cbgg.hapres.com/htmls/CBGG_1...
cbgg.hapres.com
Transposable Elements as Focal Points for Epigenome Engineering in Plants
Transposable elements are a major component of plant genomes and an important source of structural and regulatory variation. Because uncontrolled activity can be deleterious, plants rely on multilayer...
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PlantEvolution 🌱🌾 @plantevolution.bsky.social · 08/03/2026
Impressive work from @saschalaubinger.bsky.social and colleagues, describing molecular and phenotypic footprints of climate in transcriptomes of native Arabidopsis thaliana. #plantscience www.biorxiv.org/content/10.6...
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Páll Melsted @pmelsted.bsky.social · 06/03/2026
Excited to share this preprint that describes my latest work on using GPUs to accelerate processing of RNA-seq data. The title says it all: "RNA-seq analysis in seconds using GPUs" now on biorxiv www.biorxiv.org/content/10.6... and github github.com/pachterlab/k... Figure 1 shows they key result
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Jose M Jimenez-Gomez @jimenezgomez.bsky.social · 07/03/2026
🌱 New preprint out on bioRxiv! How do plants sense seasonal changes in day length? In our new study, we profiled high resolution (2h) RNA seq time courses in tomato across three photoperiods to uncover how light duration shapes gene expression dynamics. Summary in next post...
biorxiv.org
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MPI for Biology Tübingen & Friedrich Miescher Laboratory @mpi-bio-fml.bsky.social · 05/03/2026
Excited to see our FML Research Group Leader @luisapallares.bsky.social in the latest Max Planck Research! 🎉 The article follows her journey from Colombia to Germany and her work on how genes and environment shape complex traits using fruit flies. Read the full story: www.mpg.de/26180374/W00...
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New Phytologist @newphyt.bsky.social · 06/03/2026
'What I love about fundamental research is that even if you work on the same topic for years, your questions, your methods, and your understanding shift in ways you never expect.' In #Profile: @genezgi.bsky.social 👇 📖 nph.onlinelibrary.wiley.com/doi/10.1111/... #LatestIssue #PlantScience
Profile image of Ezgi Mehmetoğlu Boz
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