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svcaemmerer.bsky.social

@svcaemmerer.bsky.social
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Nick Smith @nickgregsmith.bsky.social · 04/09/2026
New lab paper "Sensitization rather than acclimation to chronic atmospheric aridity in invasive and native dryland C4 grasses" in @jxbotany.bsky.social Former MS Rafael Frietas assessed plasticity of invasive buffelgrass versus native grasses academic.oup.com/jxb/advance-...
academic.oup.com
Sensitization rather than acclimation to chronic atmospheric aridity in invasive and native dryland C4 grasses
Abstract. Despite extreme heat and limited water availability, invasive plant species are rapidly expanding in arid ecosystems, threatening native biodiver
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Nick Smith @nickgregsmith.bsky.social · 04/09/2026
New commentary by me and PhD student Monika Kelley: "A new tool for fitting C4 gas exchange response curves" in @jxbotany.bsky.social . The new tool should make it easier to extract interesting parameters from C4 plants that make them easier to understand and model academic.oup.com/jxb/article/...
academic.oup.com
A new tool for fitting C4 gas exchange response curves
This article comments on:Woodford R, Ermakova M, Furbank RT, von Caemmerer S. 2026. Fitting photosynthetic carbon dioxide and irradiance response curves fo
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Journal of Experimental Botany @jxbotany.bsky.social · 04/09/2026
🌱☀️ INSIGHT ☀️🌱 "A new tool for fitting C4 gas exchange response curves". Smith & Kelley discuss recent findings published in JXB by Woodford et al. 📝 Insight: doi.org/10.1093/jxb/... 🔬 Research: doi.org/10.1093/jxb/... #PlantScience 🧪
Fig. 2 (shortened, full legend in paper): Overview of input (left panels; light green background) and output (right panels; dark green background) windows of the Excel tool developed by Woodford et al. (2026) for CO2 response curves. (A) Users first define measurement conditions, including leaf temperature (Tleaf), atmospheric pressure (Patm), irradiance, atmospheric O2 concentration, and the fraction of PSII active in the bundle sheath. (B) Users then input measured values of the CO2 assimilation rate (A) and intercellular CO2 (Ci) values obtained from gas exchange measurements. (C) The tool generates a plot of the measured A and Ci values (black squares). Overlaid on top of this are the estimated carboxylation rate-limited photosynthetic values (orange circles) and electron transport rate-limited photosynthetic values (red circles) at each measured Ci value. These numbers are also provided in a table (table not shown).
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Journal of Experimental Botany @jxbotany.bsky.social · 28/07/2026
We're delighted to be at the International Conference on Photosynthesis Research this week in Liverpool! 🌿 Visit the Journal of Experimental Botany stand to learn more about our internship programme (now open!), our special issues, and, of course, pick up some JXB merch! #ICPR26 #PlantScience 🧪
The JXB exhibitor table with a white table cloth and logo. The tabletop is covered in JXB merchandise at the #ICPR26 in Liverpool.
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Plants, People, Planet @plantspeopleplanet.bsky.social · 24/07/2026
We're very pleased to be at C4-60: From Kranz to Crops - Celebrating 60 Years of C4 Discovery! Chat to Managing Editor Bennett Young about publishing in Plants, People, Planet and @newphyt.bsky.social, and learn more about The New Phytologist Foundation's charitable mission. #PlantScience
Bennett Young stands behind an exhibition table at a conference.
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Plant Science Spotlight @plant-sci.bsky.social · 10/07/2026
🌿🦕 Early angiosperms produced blueberry-sized fruits millions of years earlier than thought, likely relying on herbivorous dinosaurs for seed dispersal. A new study in Science rewrites the timeline of fleshy fruit evolution #plantscience www.smithsonianmag.com/smart-news/e...
smithsonianmag.com
Early Flowering Plants May Have Relied on Dinosaurs to Eat Their Fleshy Fruits and Spread Their Seeds
According to fossils preserved by volcanic ash, the plants, known as angiosperms, began producing relatively large, blueberry-size fruits millions of years earlier than previously thought
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Plant Science Spotlight @plant-sci.bsky.social · 27/06/2026
🌿🧬Chloroplast genome editing of rbcL boosted photosynthetic rates & growth. M309I & D397N substitutions increased catalytic rate without reducing Rubisco content. Structural changes in catalytic loops underpin the improvement A non GMO path to enhanced photosynthesis www.nature.com/articles/s41...
nature.com
Chloroplast genome editing of Rubisco boosts photosynthesis and plant growth - Nature Communications
Rubisco has inherently low catalytic efficiency limiting crop productivity. Here the authors show that chloroplast genome editing can be used to generate substitutions in Arabidopsis rbcL that increas...
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Plant Physiology @plantphys.bsky.social · 18/06/2026
Xyloglucan endotransglucosylase/hydrolase family genes are required for the plant graft union formation through callus proliferation (Mu Xiong , Ting Zhang , Xin Qian et al) doi.org/10.1093/plph... #PlantScience @aspbofficial
doi.org
Xyloglucan endotransglucosylase/hydrolase family genes are required for the plant graft union formation through callus proliferation
XTH family genes, with conserved roles in graft union formation across species, cooperatively promote callus formation and graft survival, especially in le
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Liat Adler @noodlyscientist.bsky.social · 14/06/2026
So excited to see this amazing story out!
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MP Ziplies @carcharhinus.bsky.social · 29/05/2026
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NationCymru @nation.cymru · 25/05/2026
Welsh scientists have developed a new biodegradable plastic made from seaweed that could one day replace fossil fuel-based food packaging
wp.me
Welsh researchers create biodegradable plastic from seaweed
Mark Mansfield Welsh scientists have developed a new biodegradable plastic made from seaweed that could one day replace fossil fuel-based food packaging. Researchers at Aberystwyth University say the ...
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Australian Academy of Science @science.org.au · 21/05/2026
48 months. 1,460 days. 2,102,400 minutes Thank you, Professor Chennupati Jagadish AC, for leading the Australian Academy of Science with optimism and conviction.
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BASIC thinking @basicthinking.de · 22/05/2026
Fenster, die Strom erzeugen, ohne dass man es ihnen ansieht: Forscher der NTU Singapur haben genau das entwickelt. Ihre neue Perowskit-Solarzelle ist 10.000-mal dünner als ein menschliches Haar, lässt trotzdem 41 Prozent des Lichts durch und wandelt Sonnenlicht in Energie um.
basicthinking.de
Dünn und durchsichtig: Solarzelle macht Fenster zu Kraftwerken
Forscher aus Singapur haben eine Solarzelle entwickelt, die 41 Prozent Licht durchlässt und trotzdem Strom erzeugt – direkt im Fenster.
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Plant Science Spotlight @plant-sci.bsky.social · 17/05/2026
🌱🔬 Simplifying C4 photosynthesis modeling. An updated C4 model with Excel fitting tools for A/Ci and A/I curves estimates Vpmax, Vcmax, Jmax, and quantum yield. Designed to lower barriers for researchers at any level. #plantscience @jxbotany.bsky.social academic.oup.com/jxb/advance-...
academic.oup.com
Fitting photosynthetic carbon dioxide and irradiance response curves for C4 leaves
Abstract. Gas exchange measurements provide crucial insights into the complex mechanisms of photosynthesis. Responses of CO2 assimilation rate (A) to inter
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John Innes Centre @johninnescentre.bsky.social · 18/05/2026
NEWS - New group leader to shed light on supercharged photosynthesis We are pleased to announce that Dr Tina Schreier will join the John Innes Centre as a tenure-track Group Leader in July 2026: www.jic.ac.uk/news/new-gro...
Dr Tina Schreier
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Plant Science Spotlight @plant-sci.bsky.social · 16/05/2026
🌾🧬C4 photosynthesis needs tight cell connections New study shows C3 to C2 to C4 steps use different trait combos. Multiple paths to better photosynthesis #plantsci @marjorielundgren.bsky.social @tamara-hverdeja.bsky.social @lancasterplantbio.bsky.social nph.onlinelibrary.wiley.com/doi/10.1111/...
nph.onlinelibrary.wiley.com
Improved mesophyll–bundle sheath connectivity is achieved via different mechanisms in C2 vs C4 Alternanthera
Leaf anatomy and biochemistry of C3, C2, and C4 plants.
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Marcel Dickmanns | 🌿❄️🔬 @madic.bsky.social · 14/05/2026
It's out! 🥳 In situ architecture of #plasmodesmata - plant cytoplasmic bridges - by #cryoET. 📝 Paper: www.nature.com/articles/s41... 🧵 Thread: bsky.app/profile/madi... #teamtomo #proteomics #AlphaFold
nature.com
In situ architecture of plasmodesmata in Physcomitrium patens resolved by cryo-electron tomography - Nature Plants
Using cryo-electron tomography, the authors reveal how plasmodesmata (plant cytoplasmic bridges) are gated by cell wall remodelling and how helical protein assemblies scaffold internal membranes, with...
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The Royal Society @royalsociety.org · 20/04/2026
We're very happy to announce that the winner of this year's Royal Society Young People's Book Prize is 'The Wild Life of Dinosaurs and Other Prehistoric Animals' by award-winning author Mike Barfield, illustrated by Paula Bossio. #YoungSciBooks royalsociety.org/news/2026/04...
Young People's Book Prize winner getting his trophy
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Marjorie Lundgren @marjorielundgren.bsky.social · 09/04/2026
Registration *CLOSES SOON* for *C460- From Kranz to Crops: Celebrating 60 Years of C4 Discovery and Innovation* Generously funded by @annbot.bsky.social, @newphyt.bsky.social, @li-corenv.bsky.social, @gpsep.bsky.social, @westsyduhie.bsky.social, @ripeproject.bsky.social
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Ben Long @botbml.bsky.social · 01/04/2026
Update: carbonic anhydrases in plants, algae, and cyanobacteria Jim Moroney LSU. academic.oup.com/plphys/advan...
academic.oup.com
Update: carbonic anhydrases in plants, algae, and cyanobacteria
Abstract. This update discusses the physiological roles of carbonic anhydrase (CA) in plants and algae. It examines some new observations about the functio
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The Pallavi Singh Lab @thepallavisinghlab.bsky.social · 16/02/2026
We are thrilled to welcome Tingting to @thepallavisinghlab.bsky.social as our new Postdoctoral Researcher! 🌿Tingting joins us to explore the fascinating biology of mistletoe. We are excited to see her expertise in our group! 🌳 Welcome to the team, Tingting! #PlantScience
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The Pallavi Singh Lab @thepallavisinghlab.bsky.social · 24/03/2026
@crispus-mbaluto.bsky.social, now a visiting researcher from our group, is at #Monogram2026 today! He is presenting our work on pearl millet-rice intergrafts and how they perform under extreme drought through a molecular biology lens🌾💧 #PlantScience
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The Pallavi Singh Lab @thepallavisinghlab.bsky.social · 25/03/2026
Exciting to share that our Research Assistant, Mouesanao Kandjoze, is presenting a poster on how grafting different rice varieties can be used to improve photosynthetic efficiency in #Monogram2026 🌾 This research is a key part of our efforts to boost crop resilience and productivity. #PlantScience
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The Pallavi Singh Lab @thepallavisinghlab.bsky.social · 25/03/2026
We are proud to see our Master student, Ella Whiteley, presenting her research at #Monogram2026! 🌾 Her poster explores RNAi rice mutants for aquaporins and evaluates their photosynthetic performance. #PlantScience
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Ben Engel @cellarchlab.com · 19/03/2026
Here’s the link to Daniil’s thread 🧵 explaining why Stoic is so cool 😎🧪 #AI #ProteinPrediction bsky.app/profile/dani...
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Ryo Yokoyama @yokoyama-ryo.bsky.social · 08/03/2026
Simultaneous Overexpression of Three Enzymes of Chloroplast Metabolism Fails to Improve CO2 Assimilation or Biomass academic.oup.com/jxb/article/... @jxbotany.bsky.social
academic.oup.com
Simultaneous Overexpression of Three Enzymes of Chloroplast Metabolism Fails to Improve CO2 Assimilation or Biomass
Abstract. Ensuring an adequate food supply amidst a growing global population and climate change challenges, necessitates innovative strategies to enhance
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Marjorie Lundgren @marjorielundgren.bsky.social · 09/03/2026
C460- From Kranz to Crops: Celebrating 60 Years of C4 Discovery and Innovation 23-25 July 2026 at Lancaster University, UK Generously funded by @annbot.bsky.social , @newphyt.bsky.social, @plantspeopleplanet.bsky.social, @westsyduhie.bsky.social and others! 🧪🌱 registration.lancaster.ac.uk/C460
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💥Seriously🚀Scientific💥 @seriouslysci.bsky.social · 08/03/2026
Remembering Barbara McClintock on International Women's Day! She discovered that genes aren't static, they can actually "jump" around on a chromosome. Her discovery of transposons ("jumping genes") fundamentally changed how we understand evolution and the complexity of DNA! 🧬🌽 #WomenInScience
A detailed digital composite image based on the 1947 historical photograph of geneticist Barbara McClintock. McClintock, with her characteristic short hair and round glasses, is seated at a microscope, using tweezers in a Petri dish. While based on the original photo distributed for her AAUW award, this image presents a significantly expanded and fictionalized laboratory environment. The simple wooden workbench is now densely populated with a vast, colorized collection of complex glassware, numerous amber-colored reagent bottles, intricate distillation columns, and botanical specimens relevant to maize cytogenetics, creating a rich, illustrative narrative of her "jumping gene" research context that was not present in the original photo. The expanded background shows complex vintage laboratory cabinetry. This image explicitly states it is a composite: a digital recreation where Seriously Scientific has taken the historical figure and placed them into an augmented, complex fictionalized environment. Based on original source from Smithsonian Institution Archives. Digital composite by Seriously Scientific.
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Ben Long @botbml.bsky.social · 06/02/2026
www.pnas.org/doi/10.1073/...
pnas.org
Stephen P. Long: Visionary, teacher, and doer | PNAS
Stephen Long pioneered a multidisciplinary approach to advance our knowledge of photosynthesis, by integrating research at the molecular, cellular,...
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Journal of Experimental Botany @jxbotany.bsky.social · 06/02/2026
🔬🚪 SPECIAL ISSUE REVIEW 🚪🔬 The movement of molecules through plasmodesmata is dictated by physical principles at the nanoscale. Here, the available experimental methods to detect this flow, and applicable physical laws are evaluated - Vasina et al. 🔗 doi.org/10.1093/jxb/... #PlantScience 🧪
Fig. 1.Screening effect in porous membranes. While two molecules with different shapes (spheres, linear molecules) may have the same hydrodynamic radius and diffuse at the same velocity in water, diffusion through a porous membrane may lead to significant differences in movement up to complete separation.
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Journal of Experimental Botany @jxbotany.bsky.social · 07/02/2026
🧬📍 SPECIAL ISSUE EXPERT VIEW 📍🧬 📄 Implementation of proximity labeling technologies will advance our understanding of plasmodesmata. ✍️ Li & Aung 🔗 doi.org/10.1093/jxb/... #PlantScience 🧪
Fig. 1.Potential applications of diverse PL technologies in studying PD biology. Various PL technologies have been developed in recent years, offering promising avenues for advancing the study of PD biology. (A) Comprehensive PL assays using known PD-localized proteins as baits to map PD subdomain proteomes. (B) Tissue/cell type-specific PD-localized proteins tagged with TbID to identify PD protein complexes in specific tissues/cell types. (C) Stress-responsive PD-associated proteins tagged with TbID to identify PD protein complexes in response to stresses. (D) Split-TbID to identify proteins at PD-PM and PD-ER contact sites. (E) TransitID to map endogenous protein movement between cells through PD. (F) MS2-based TbID assay to identify RBPs of mobile RNAs.
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Journal of Experimental Botany @jxbotany.bsky.social · 08/02/2026
🌿🧭 SPECIAL ISSUE REVIEW 🧭🌿 Linh & Ueda present an in-depth investigation of the potential pathways - at the suborganelle level - provided by plasmodesmata for auxin signal movement in leaf vein patterning. 🔗 doi.org/10.1093/jxb/... #PlantScience 🧪
Fig. 1.Core structure of plasmodesmata (PDs) and movement routes through PDs. (A) Core structure of the PDs. CW, cell wall (yellow); ER, endoplasmic reticulum membrane (orange); LM, lumenal space of desmotubule (sky blue); PM, plasma membrane (orange); TE, tethering element (reddish purple). (B) Top: enlarged view of the structure depicted in (A); bottom: perpendicular view of the base of the enlarged structure; bluish green diamond, substance translocating along the PM route; vermillion polygon, substance translocating within the cytoplasmic sleeve; blue trapezoid, substance translocating along the ER membrane route; black star, substance translocating within the lumenal route. Bidirectional dashed arrows indicate potential directions of movement for translocating substances of the same color. Colors were selected according to the colorblind-friendly scheme presented in the JFly color tool (University of Cologne; https://jfly.uni-koeln.de/color/) to enhance visual accessibility.
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Ryo Yokoyama @yokoyama-ryo.bsky.social · 06/02/2026
Functional characterisation of bicarbonate transporters from the cyanobacterial SbtA2 family and subsequent expression in tobacco academic.oup.com/jxb/article/... @jxbotany.bsky.social
academic.oup.com
Functional characterisation of bicarbonate transporters from the cyanobacterial SbtA2 family and subsequent expression in tobacco
Abstract. Cyanobacteria rely on bicarbonate (HCO3-) as the primary inorganic carbon (Ci) source for photosynthesis in aquatic environments. To use this Ci
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University of Oxford @ox.ac.uk · 05/12/2025
Led by Professor Jane Langdale @biology.ox.ac.uk, the C4 Rice Project builds on decades of interdisciplinary research working to ensure global food security. Discover the incredible story of the multi-decade battle to make better rice ⬇️ www.youtube.com/watch?v=T3RY0vxzFpg
youtube.com
Making Better Rice: The quest to feed the world by hacking plant evolution
YouTube video by University of Oxford
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The British Academy @britishacademy.bsky.social · 15/01/2026
Together with the @royalsociety.org, we invite applications for the International Fellowships 2026. The scheme supports international early career researchers in advancing their expertise through collaborations with UK partners. Learn more: bit.ly/3LaMIBC
A colour block banner with the words 'International Fellowships 2026' written on the left-hand side.
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Journal of Experimental Botany @jxbotany.bsky.social · 16/01/2026
🛰️ TECHNICAL INNOVATION 🌡️ An automated thermal-imagery pipeline by Mayanja et al. calibrates stomatal conductance models and predicts across environments, replacing laborious manual measurements and achieving R²≈0.7 compared to porometer readings. 🔗 doi.org/10.1093/jxb/... #PlantScience 🧪
Fig. 2.Illustration of high and low-resolution thermal images before and after standardization, and their corresponding segmentation masks. Subplots (A, B) show the high-resolution thermal image in digital number (DN) units (original) (A) and standardized temperature (Tstdzd) units (B). Subplots (C, D) show the low-resolution thermal image in degrees Celsius units (original) (C) and standardized temperature (Tstdzd) units (D). Subplots (E, F) show the Leaf-ground-weed mask for the high-resolution (E) and low-resolution (F). An air temperature of 22 °C was used when standardizing the temperatures in subplots (B, D).
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Ben Engel @cellarchlab.com · 18/01/2026
One of the best #TeamTomo studies of phase-separated condensates I’ve seen. I am reminded of Rubisco condensates (pyrenoids) for the ability to make such quantitative measurements of molecular organization. It really helps to have intrinsic ~500 kDa fiducials. Awesome mechanistic stuff!! 🧪 🧶🧬 🔬
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Steven Burgess @sjb287.bsky.social · 12/01/2026
New paper from the Hanson lab - KO of all 11 rbcS genes (!!) in tobacco to create a null line for rubisco engineering, plus resurrection of ancestral forms www.pnas.org/doi/10.1073/...
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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Ben Engel @cellarchlab.com · 09/01/2026
The #ChlamyDataset is on the cover of @cp-molcell.bsky.social 🖼️🥰! Read @lifeonthewedge.bsky.social's great thread🧵 for the inside scoop🍨 on all the #TeamTomo developments already made possible since these 1829 tomos hit EMPIAR 🧪 🧶🧬 For more, here's the old preprint thread: bsky.app/profile/cell...
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Australian Academy of Science @science.org.au · 10/01/2026
📣 We're hiring: Science Adviser Do you have policy experience and the skill to translate complex science into actionable advice? Work with leading scientists to deliver evidence-based advice on national and global issues. 📍 Canberra ACT (Hybrid) ⏰ Apply by 27 Jan 2026 bit.ly/45B5oBf
Advertisement by the Australian Academy of Science showing 'NOW HIRING' for a Science Adviser position, with a backdrop of a sunset over a bridge leading to Parliament House, Canberra. Visit science.org.au/careers for details.
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American Society of Plant Biologists @aspbofficial.bsky.social · 15/12/2025
📣 Nominations are now being accepted for the 2026 ASPB Awards. It is important that ASPB honor the most notable achievements and contributions of plant scientists worldwide.🌱 👉 The deadline is Friday, February 13! buff.ly/ziJ3tAt. #plantscience
Image text. Call for 2026 ASPB Award Nomindations. Nomindation Deadline Friday, February 13, 2026. (11:59 p.m. ET). Featuring the ASPB logo and plant science-themed background.
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Australian Academy of Science @science.org.au · 09/01/2026
📚 Former Australian of the Year and renowned epidemiologist Professor Fiona Stanley AC FAA joins Barbara Miller on ABC Radio’s RN Breakfast to share what she's reading this summer – from Chimamanda Ngozi Adichie to Tim Winton. Listen: ab.co/4jwyuYr
Portrait of a smiling senior with curly white hair, wearing a light jacket and green turtleneck, standing with arms crossed in front of a white geometric-patterned background.
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Plant Physiology @plantphys.bsky.social · 22/12/2025
Thiamine triphosphate puts the brake on the activation state of chloroplast ATP synthase (Kai Wang , Jean Alric , Teresa B Fitzpatrick) doi.org/10.1093/plph... #PlantScience @aspbofficial
doi.org
Thiamine triphosphate puts the brake on the activation state of chloroplast ATP synthase
Thiamine triphosphate, derived from the coenzyme thiamine diphosphate and inorganic phosphate, slows the activation of chloroplast ATP synthase.
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Australian Academy of Science @science.org.au · 29/12/2025
Vale Prof Emma Johnston AO FAA FTSE The Academy is deeply saddened to hear of the passing of one of our Fellows, Prof Emma Johnston AO FAA FTSE. She was elected a Fellow of the Australian Academy of Science in 2022 recognising her leadership in the field of marine ecology, 🧵 vimeo.com/762105195
vimeo.com
Fellow Johnston
This is "Fellow Johnston" by Australian Academy of Science on Vimeo, the home for high quality videos and the people who love them.
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The Royal Society @royalsociety.org · 20/12/2025
Research into #AI has been happening in the UK long before the current explosion of LLMs. On our blog, Royal Society Modern Records Archivist Jon Bushell takes a look at the AI research of Christopher Longuet-Higgins FRS in the 1960s and 70s: royalsociety.org/blog/2025/12/brain…
royalsociety.org
Brain boxes | Royal Society
Jon Bushell looks at the Edinburgh University artificial intelligence research of Christopher Longuet-Higgins FRS, and the impact on AI of the 1973 Lighthill report.
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Australian Academy of Science @science.org.au · 19/12/2025
More recommendations from our summer reading and listening list … @svcaemmerer.bsky.social
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Australian Academy of Science @science.org.au · 14/12/2025
Want more book picks from Australia's leading scientists? Check out our Fellows' 2025 reading list: www.science.org.au/videos-and-publi…
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Australian Academy of Science @science.org.au · 11/12/2025
See more recommendations from Australia's top scientists in our annual reading and listening list: bit.ly/4pt7Xgm
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The Royal Society @royalsociety.org · 11/12/2025
Should we try to talk to aliens? Do they already know about us, and what are the risks of trying to make contact? Experts answer these questions and more in our new video made in partnership with #BBCIdeas: www.youtube.com/watch?v=SHHAhFzLuCA
youtube.com
Should we try to talk to aliens? | The Royal Society
YouTube video by The Royal Society
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