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ARC Centre of Excellence for Plant Success

@coeplantsuccess.bsky.social
1.5K followers 216 following 247 posts

Australian Research Council funded research centre bringing together #plant scientists, mathematical modellers, crop breeders, and legal experts to achieve #PlantSuccess 🌱🧬📈🌾 www.plantsuccess.org

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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 5h
📢 New publication 'Linking #drought strategy to climate-of-origin in a widespread #C4 grass: hydraulic traits, #xylem anatomy and stomatal behaviour in Themeda triandra' by @vin-jacob.bsky.social et al. in @newphyt.bsky.social 🧪 doi.org/10.1111/nph....
doi.org
Linking drought strategy to climate‐of‐origin in a widespread <fc>C4</fc> grass: hydraulic traits, xylem anatomy and stomatal behaviour in <fi>Themeda triandra</fi>
Climate-of-origin of Themeda triandra populations used in this study.
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Reposted by ARC Centre of Excellence for Plant Success
in silico Plants @insilicoplants.bsky.social · 14h
NEW! Optimising the specific adaptation of #sorghum in variable water-limited environments in Australia buff.ly/FCcJu3y #PlantScience #drought @coeplantsuccess.bsky.social
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https://doi.org/10.1093/insilicoplants/diag02
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 30/09/2026
#PlantSuccess September 2026 #newsletter is out now! 👀 Read it here: bit.ly/PS-newslette... 📨 Subscribe here: bit.ly/PS-News-Subs... 🧪
Presenting Four Years of Mycorrhizal Research on the International Stage
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 28/09/2026
📢 New publication 'Single-molecule long-read sequencing reveals #transcriptome complexity and enhances annotation in wild #rice' by Nurmansyah, Agnelo Furtado and Robert Henry in Genome Biology 🧪🌾 doi.org/10.1186/s130...
doi.org
Client Challenge
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in silico Plants @insilicoplants.bsky.social · 25/09/2026
🌽 Optimisation of Weighted Ensembles of #Genomic Prediction Models in #Maize by Shunichiro Tomura, Owen Powell, Melanie J Wilkinson, James Lefvre, and Mark Cooper @coeplantsuccess.bsky.social @qaafi.bsky.social buff.ly/wdm6aAa #PlantScience
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Optimization of weighted ensembles of genomic prediction models in maize
Abstract. Ensembles of multiple genomic prediction models have demonstrated improved prediction performance over the individual models contributing to the
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 24/09/2026
📢 New publication 'Mutant Characterisation Reveals Two Candidate Sensors for the Rapid High Vapour Pressure Deficit (VPD) Response Pathway' by Hanh Vo, Timothy Brodribb and Frances Sussmilch in Plant, Cell & Environment 🧪 doi.org/10.1111/pce....
doi.org
Mutant Characterisation Reveals Two Candidate Sensors for the Rapid High Vapour Pressure Deficit (VPD) Response Pathway
We investigated the rapid high VPD response pathway by characterising Arabidopsis thaliana mutants for five candidate genes: ATX2, HVR, ILK1, MSL2, and OSCA1.2, and identified HVR and MSL2 as critica....
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in silico Plants @insilicoplants.bsky.social · 19/09/2026
All of the entries are outstanding! Here's my favorite. See them all: www.plantsuccess.org/21-ways-to-c...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 21/09/2026
📢 New publication 'Evaluating #crop models for future climate scenarios: #wheat yield predictions using #APSIM and #STICS under combined CO2, warming, and water deficit conditions' by Alan Severini et al. in @insilicoplants.bsky.social 🧪 doi.org/10.1093/insi...
doi.org
Evaluating crop models for future climate scenarios: wheat yield predictions using APSIM and STICS under combined CO2, warming, and water deficit conditions
Abstract. Crop models are essential for predicting climate change impacts on agriculture, yet their validation under multi-stress conditions remains limite
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Reposted by ARC Centre of Excellence for Plant Success
New Phytologist @newphyt.bsky.social · 18/09/2026
Linking drought strategy to climate of origin in a widespread C4 grass: hydraulic traits, xylem anatomy and stomatal behaviour in Themeda triandra Jacob et al. @vin-jacob.bsky.social @ianjwright.bsky.social @coeplantsuccess.bsky.social nph.onlinelibrary.wiley.com/doi/10.1111/...
Figure 1. Three-panel figure showing summer climate across the eight Australian Themeda triandra study populations. (A) Map of mean summer temperature (°C), with cooler areas shown in blue and warmer areas in yellow to red; study populations are marked by open circles and labelled. (B) Map of mean summer precipitation (mm), with lower precipitation shown in brown/orange and higher precipitation in blue; the same population locations are marked. (C) Scatterplot of mean summer precipitation against mean summer temperature for the eight populations, with points labelled by population. Populations span broad climatic gradients, ranging from approximately 16–32 °C in temperature and 70–430 mm in precipitation; mean summer temperature and precipitation were not significantly related.
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 17/09/2026
📢 New publication ' #Nodulation does not alter #root hydraulic conductance in #pea' by Jiacan Sun, Timothy Brodribb, Ibrahim Bourbia and Eloise Foo in @newphyt.bsky.social 🧪 doi.org/10.1111/nph....
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 13/09/2026
📢 New publication 'Genetic dissection of CLE12 and CLE13 small peptide-mediated autoregulation of nodulation in #pea' by Tiana Scott, Kate Wulf, Alejandro Correa-Lozano, Karen Velandia, James Reid and Eloise Foo in Journal of Experimental Botany 🧪 doi.org/10.1093/jxb/... #nodulation #CLE
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TranSpread @transpread.bsky.social · 06/09/2026
In Horticulture Research, researchers generated a fully phased genome for ‘Smooth Cayenne’ pineapple. Using PacBio HiFi and Hi‑C, they resolved both 25-chromosome haplotypes, identifying 50 centromeres and 44 telomeres. #Collapsed genome #Pineapple Details: doi.org/10.1093/hr/u...
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bioRxivpreprint @biorxivpreprint.bsky.social · 04/09/2026
Poly Pipeline: A Polyvalent Spatial Transcriptomics Workflow Validated Across Polyploid and Diploid Organisms www.biorxiv.org/content/10.64898/20…
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 10/09/2026
📢 New publication 'Global variation in the ratio of #sapwood to #leaf area explained by optimality principles' by Huiying Xu et al. in @newphyt.bsky.social 🧪 doi.org/10.1111/nph....
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Global variation in the ratio of sapwood to leaf area explained by optimality principles
The sapwood area supporting a given leaf area (Huber value, vH) reflects the coupling between carbon uptake and water transport and loss at a whole-plant level. Geographic variation in vH presumably...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 07/09/2026
📢 New publication 'New components in genetic regulation of age-dependent compound leaf architecture in pea' by Jacqueline Vander Schoor, Chantelle Beagley, Warwick Gill, Grégoire Aubert, Judith Burstin, Robert Wiltshire, Valérie Hecht & James Weller in @newphyt.bsky.social 🧪 doi.org/10.1111/nph....
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New components in genetic regulation of age‐dependent compound leaf architecture in pea
Compound leaf development in pea (Pisum sativum).
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 02/09/2026
📢 New publication 'Predictive evolutionary genomics: principles, validation, and practice' by Daniel Ortiz-Barrientos, Maddie James, Yang Liu, Dan Bock, Moisés Exposito-Alonso and Loren Rieseberg in @newphyt.bsky.social 🧪 doi.org/10.1111/nph.... #ClimateChange #evolution #agriculture
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Predictive evolutionary genomics: principles, validation, and practice
Climate change and habitat loss are driving rapid evolutionary responses in populations world-wide, which creates an urgent need for evolutionary forecasting in conservation and agriculture. Such for...
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Reposted by ARC Centre of Excellence for Plant Success
in silico Plants @insilicoplants.bsky.social · 01/09/2026
💧🌾🌡️ Evaluating crop models for future climate scenarios: #wheat yield predictions using #APSIM and #STICS under combined CO2, warming, and water deficit conditions buff.ly/efqLjQE #PlantScience #drought
doi.org
Evaluating crop models for future climate scenarios: wheat yield predictions using APSIM and STICS under combined CO2, warming, and water deficit conditions
Abstract. Crop models are essential for predicting climate change impacts on agriculture, yet their validation under multi-stress conditions remains limite
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Reposted by ARC Centre of Excellence for Plant Success
uncited @uncited.org · 26/08/2026
Ranawaka et al. in the de Felippes Lab at Queensland University of Technology demonstrate that the combination of terminators and introns significantly enhances transgene expression levels and stability in stably transformed plants.
biorxiv.org
bioRxiv (Evolutionary Biology)
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 01/09/2026
📢 New publication 'Species intraspecific variation drives tropical #forest #drought resistance' by Chris Smith-Martin, Robert Muscarella, Timothy Brodribb and María Uriarte in @natureportfolio.nature.com 🧪 doi.org/10.1038/s415...
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Species intraspecific variation drives tropical forest drought resistance - Nature
Substantial intraspecific variation, together with species turnover, drives coordinated shifts in drought resistance such as increased embolism resistance and wider stomatal safety margins in drier fo...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 31/08/2026
#PlantSuccess August 2026 #newsletter is out now! 👀 Read it here: bit.ly/PS-newslette... 📨 Subscribe here: bit.ly/PS-News-Subs...
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MACSYS @macsys.bsky.social · 28/08/2026
MACSYS was proud to join four other ARC Centres of Excellence for a communications & professional development workshop at UNSW Sydney this week. Researchers built skills in communicating across disciplines, research impact & translation, and the responsible use of AI tools. @arc-gov-au.bsky.social
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 27/08/2026
📢 New publication 'microRNA-mediated control of cell fate specification and patterning in #Marchantia polymorpha' by Adolfo Aguilar-Cruz et al. in @newphyt.bsky.social 🧪 doi.org/10.1111/nph.... #auxin #microRNA
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microRNA‐mediated control of cell fate specification and patterning in <fi>Marchantia polymorpha</fi>
The gemma developmental program in Marchantia polymorpha is coordinated by MpMIR166-mediated repression of MpC3HDZ and auxin homeostasis.
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 24/08/2026
📢 New publication 'Sizing up #phylogenetic testing in geometric morphometrics: a case study of #allometry' by D. Rex Mitchell, Ben Halliwell, Luke Yates, Sally Potter, Mark Eldridge and Vera Weisbecker in Contributions to Zoology. doi.org/10.1163/1875...
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Sizing up phylogenetic testing in geometric morphometrics: a case study of allometry
Abstract Accounting for phylogenetic relatedness in the analysis of shape is generally deemed necessary to acknowledge the non-independence between species due to common ancestry. However, some respon...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 23/08/2026
Congratulations to our 2 winners in the Meme category of the Creative Communication Competition! 🏆 Judges’ 2nd Prize: Thomas Crow 'Genomic Prediction' 🏆 People's Choice: Hamza Ramzan 'PhD Student Life' Sometimes the best way to communicate is with humour! See all the entries: scienceart.com.au
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 20/08/2026
📢 New publication 'Extreme #Polyploidy Reveals Functional Trade-Offs in #Plant #Drought Responses' by Javier López-Jurado, Enrique Mateos-Naranjo, Francisco Balao, Ajaree Thonglim, Frederic Lens and Timothy Brodribb in Plant, Cell & Environment 🧪 doi.org/10.1111/pce....
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Extreme Polyploidy Reveals Functional Trade‐Offs in Plant Drought Responses
Polyploidy shapes drought strategies in Dianthus broteri, with cytotypes spanning a tolerance–avoidance continuum. Lower ploidies conserve water and maintain canopies, whereas the highest ploidy shed...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 18/08/2026
We're thrilled to have two winners in the Photography category of the Creative Communication Competition! 🏆 Judges’ Choice First Prize: Chaitanya Purushothama 'Stomata – The breathing pores of Life.' 🏆 People's Choice Prize: Hamza Ramzan 'Listening to my mungbean plants.' scienceart.com.au
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 18/08/2026
We're excited to announce that Md. Shohel Rana has won the People's Choice Prize in the Creative Communication Competition 1-minute video category for 'An empirical experiment.' Watch Shohel's video below, and explore all the incredible entries here: scienceart.com.au
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in silico Plants @insilicoplants.bsky.social · 17/08/2026
🌾☀️ CropVision: A Multiscale EO-AI-Climate-Biophysical modelling framework for predicting crop performance in Australian wheat and sorghum systems  buff.ly/of6aFQC #PlantScience #drought
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Validate User
Abstract. Australian dryland grain production systems are under increasing pressure from climate variability, extremes, and market uncertainty, driving the
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 17/08/2026
📢 New publication 'Genetic interactions among #flowering loci influence phenology, #vigour, and yield in #chickpea' by Raul Ortega Martinez, L. Lake, J. E. Hayes, J. L. Weller, R. French & V. O. Sadras in Molecular Breeding 🧪 doi.org/10.1007/s110...
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Client Challenge
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 14/08/2026
The Genotype x Environment x Management ( #GxExM ) Symposium IV will bring together researchers, industry, modellers and agricultural innovators to explore the critical role of GxExM interactions in #crop improvement. 📆 5 & 6 November 📍 Online or Brisbane 🔗 Register for free: bit.ly/GxExM-IV
5 & 6 November 2026
Brisbane, Australia and online
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 13/08/2026
📢 New publication 'Trait–climate relationships of #Sorghum #crop wild relatives grown in a common environment' by Emma Sumner, Vinod Jacob, Graeme Hammer, @sorgguy.bsky.social, Wil Harris and @ianjwright.bsky.social in Annals of Botany 🧪 doi.org/10.1093/aob/...
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Trait–climate relationships of Sorghum crop wild relatives grown in a common environment
AbstractBackground and Aims. The C4 Andropogoneae grass Sorghum bicolor is an important crop for food, forage and biofuel in tropical and subtropical, arid
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in silico Plants @insilicoplants.bsky.social · 12/08/2026
Statistical modeling of wheat and barley growth stages using high-resolution satellite imagery for precision agriculture by Yan Zhao, Ruizhu Jiang, Jason Brider, Scott Chapman, Andries Potgieter buff.ly/H08FowD #PlantScience #APSIM @coeplantsuccess.bsky.social @qaafi.bsky.social
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Characterizing wheat and barley growth and phenology using multi-spectral remote sensing for site-specific precision agriculture
Abstract. Crop phenology informs in-season management practices such as fertilizer and pest and disease controls to optimize final yield. However, tracking
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Reposted by ARC Centre of Excellence for Plant Success
in silico Plants @insilicoplants.bsky.social · 10/08/2026
Technical Advance: Optimizing sorghum crop design through crop growth modeling and multi-objective optimization by Genevieve Durrington, Joseph Saddigh, Jason Brider, Graeme Hammer, Alex Wu buff.ly/P6WkzRi #PlantScience #APSIM @coeplantsuccess.bsky.social
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Enhancing sorghum yield and risk management via optimizing crop design
Abstract. Globally, the need to intensify food production and accelerate crop yield gains requires new strategies for crop improvement. Agricultural produc
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 10/08/2026
📢 New publication 'Biology-driven genebank #pangenetics meet #AI -powered predictions to transform #crop breeding' by Ragavendran Abbai, Thorsten Schnurbusch, Mark Cooper and Manish Pandey in Molecular Plant 🌾 doi.org/10.1016/j.mo...
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Redirecting
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in silico Plants @insilicoplants.bsky.social · 07/08/2026
📢The Call for Papers for in silico Plant’s Special Issue “Advances in Plant and Crop Modelling in the Era of Big Data and AI” is now open. 📅 Deadline: 31 August 2026 👩‍🔬 Guest Editors: Junqi Zhu, Karine Chenu, Bangyou Zheng, and Xinguang Zhu 📝 Find out more: buff.ly/NuXOA30
academic.oup.com
Calls for Papers: Virtual Special Issues
Increase the visibility of your research by submitting to one of our calls for papers listed below. Submissions to open calls are made via our regular submissi
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 03/08/2026
We partnered with 8 other @arc-gov-au.bsky.social CoEs to participate in a friendly competition about creatively communicating research! People's Choice award voting is open now: scienceart.com.au/voting/ Winners will be announced during National Science Week!
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 31/07/2026
#PlantSuccess July 2026 #newsletter is out now! 👀 Read it here: bit.ly/PS-newslette... 📨 Subscribe here: bit.ly/PS-News-Subs...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 30/07/2026
📢 New publication ' #MicroRNA networks integrate development and metabolism to control spikelet fate: implications for #cereal #yield improvement' by Ahmad Alqudah, Rajiv Sharma, Samar Thabet, Asad Riaz, Mashael Alqahtani and Asif Ali in npj Science of Plants 🧪 doi.org/10.1038/s443...
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MicroRNA networks integrate development and metabolism to control spikelet fate: implications for cereal yield improvement - npj Science of Plants
npj Science of Plants - MicroRNA networks integrate development and metabolism to control spikelet fate: implications for cereal yield improvement
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Reposted by ARC Centre of Excellence for Plant Success
Plant Science Spotlight @plant-sci.bsky.social · 24/07/2026
🌱🧬 Climate change is making crop performance harder to predict. The solution? Feed more plant biology into breeding models. Hierarchical genome–phenome frameworks can sharpen predictions, boost genetic gain, and help crops keep pace with a shifting world. #plantscience www.cell.com/trends/plant...
cell.com
Better breeding leveraging more biology
Climate change is creating increasingly severe and unpredictable conditions for agriculture, leading to diverse future scenarios. This poses a challenge for modern plant breeding, which has relied hea...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 27/07/2026
📢 New publication 'Genetic basis of temporal variation in phenology in a woody perennial plant' by Yang Liu in npj Systems Biology and Applications 🧪 doi.org/10.1038/s415... #PhenotypicPlasticity #GeneticVariation
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Genetic basis of temporal variation in phenology in a woody perennial plant - npj Systems Biology and Applications
npj Systems Biology and Applications - Genetic basis of temporal variation in phenology in a woody perennial plant
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 23/07/2026
📢 New publication 'The hidden geometry of breeding constraints' by Daniel Ortiz-Barrientos, David Jordan and Mark Cooper in Nature Plants 🧪🧬 #PlantBreeding #AgriculturalGenetics doi.org/10.1038/s414...
doi.org
The hidden geometry of breeding constraints - Nature Plants
Plant breeding programmes based on additive models have performed well, but their gains are plateauing. This framework integrates commercial breeding experience, mathematical rigour and evolutionary g...
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Reposted by ARC Centre of Excellence for Plant Success
Plant Science Spotlight @plant-sci.bsky.social · 19/07/2026
🌱🧬 Climate change is breaking our ability to predict crop performance. The fix? More biology in breeding models. Hierarchical genome–phenome frameworks can boost accuracy, genetic gain, and climate readiness. #plantscience @cp-trendsplantsci.bsky.social www.cell.com/trends/plant...
cell.com
Better breeding leveraging more biology
Climate change is creating increasingly severe and unpredictable conditions for agriculture, leading to diverse future scenarios. This poses a challenge for modern plant breeding, which has relied hea...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 20/07/2026
📢 New publication ' #Clustering compresses attractors in #Watts–Strogatz threshold #Boolean networks' by Maram Alqarni, Mark Cooper, Diane Donovan and James Lefevre in Journal of Complex Networks 🧪 doi.org/10.1093/comn...
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Clustering compresses attractors in Watts–Strogatz threshold Boolean networks
Abstract. Does higher clustering shorten attractor periods? We examine whether the global clustering coefficient $ \symbf{C} $, a direct measure of triangl
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 16/07/2026
Next week A/Prof Yi Guo will present recent advances in digital phenotyping for protected cropping, focusing on computer vision and machine learning approaches for plant monitoring and analysis. Register to join live or receive the recording: bit.ly/TPS-YG
bit.ly
Welcome! You are invited to join a meeting: Digital Phenotyping in Protected Cropping. After registering, you will receive a confirmation email about joining the meeting.
Presented by Associate Professor Yi Guo This talk will present recent advances in digital phenotyping for protected cropping, focusing on computer vision and machine learning approaches for plant mon...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 16/07/2026
📢 New publication ' #Seed function in space and time: how spatial #transcriptomics completes the picture' by Tori Millsteed and Robert Henry in @frontiersin.bsky.social Plant Science 🌱🧪 doi.org/10.3389/fpls...
doi.org
Frontiers | Seed function in space and time: how spatial transcriptomics completes the picture
Spatiotemporal gene expression is the underlying determinant of how living things grow and function, including the processes of seed development and germinat...
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Reposted by ARC Centre of Excellence for Plant Success
Adam Frew @frewecologist.bsky.social · 16/07/2026
We composited soil cores and lost 49 AM fungal taxa doing it. Sequencing individual subsamples found them. The ones that vanish are rare, patchy, and phylogenetically clustered. Also drying vs freezing made no difference really. Sample at the scale your question lives at. doi.org/10.1016/j.so...
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Redirecting
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 13/07/2026
The Winter School in AI and Predictive Agriculture has kicked off today at The University of Queensland! It has been great to see the large number of attendees, who are enthusiastic about exploring how AI can help make agricultural technologies more accessible and impactful 🌾🖥️
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 13/07/2026
📢 New publication 'Leaf Size in #Conifers: Global Associations With Climate and Evolutionary History' by Katya Bandow, Timothy Brodribb, Benjamin Halliwell, Matilda Brown, Kate Johnson and Gregory Jordan in Global Change Biology 🧪🍃 doi.org/10.1111/gcb.... #LeafSize #Phylogenetics
doi.org
Leaf Size in Conifers: Global Associations With Climate and Evolutionary History
Global patterns in leaf size are linked to climatic trade-offs, so we explore these relationships in a major group of plants, the conifers. Using contemporary phylogenetic methods, we show that conif...
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 09/07/2026
Join us for 'Digital Phenotyping in Protected Cropping' with Yi Guo from Western Sydney University 🧪 🗓️ Tuesday 21 July 🕙 2-3pm (AEST) 📍 Zoom, register here: bit.ly/TPS-YG #event #webinar #phenotyping
Digital Phenotyping in Protected Cropping webinar on 21 July
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ARC Centre of Excellence for Plant Success @coeplantsuccess.bsky.social · 09/07/2026
📢 New publication 'Better breeding leveraging more biology' by Owen Powell, Lee Hickey, Shunichiro Tomura and Mark Cooper in Trends in Plant Science 🧪 doi.org/10.1016/j.tp... #GeneticGain #CropBreeding
doi.org
Redirecting
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