![A clip from a figure in the article not meant to convey any meaning. Full figure with meaning available in the article.](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2024-04/Diwakar_00054_web.png?itok=Buk8mYjp)
The Experimentalist’s Guide to Machine Learning for Small Molecule Design
Sarah Lindley, Yiyang Lu, Diwakar Shukla
Applied Bio Materials
DOI: 10.1021/acsabm.3c00054
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Quantifying Contributions of Different Factors to Canopy Photosynthesis in 2 Maize Varieties: Development of a Novel 3D Canopy Modeling Pipeline
Qingfeng Song. Fusang Liu, Hongyi Bu, Xinguang Zhu
Plant Phenomics
DOI: 10.34133/plantphenomics.0075
![Sunlight filtering through upper layers of the corn canopy.](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2023-06/Use_web_0.jpg?itok=LeeeuKVp)
Is chloroplast size optimal for photosynthetic efficiency?
Katarzyna Glowacka, Johannes Kromdijk, Coralie Salesse-Smith, Caitlin Smith, Steven M. Driever, Stephen Long
New Phytologist
DOI: 10.1111/nph.19091
![Color map of corn plants.](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2024-03/PlantPhenomics_web.png?itok=2tLldnsR)
Quantifying Contributions of Different Factors to Canopy Photosynthesis in 2 Maize Varieties: Development of a Novel 3D Canopy Modeling Pipeline
Qingfeng Song, Fusang Liu, Hongyi Bu, Xin-Guang Zhu
Plant Phenomics
10.34133/plantphenomics.0075
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Impact of pod and seed photosynthesis on seed filling and canopy carbon gain in soybean
Young B Cho, Samantha Stuttz, Sarah I Jones, Yu Wang, Elena A Pelech, & Don Ort
Plant Physiology
DOI: 10.1093/plphys/kiad324
![Clip from graph within article, full image and explanation available in article](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2024-04/CavanaghOrtReview_web.png?itok=renFFO2o)
Transgenic strategies to improve the thermotolerance of photosynthesis
Amanda Cavanagh & Don Ort
Photosynthesis Research
DOI: 10.1007/s11120-023-01024-y
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LCIB functions as a carbonic anhydrase: evidence from yeast and Arabidopsis carbonic anhydrase knockout mutants
Remmy W Kasili, Ashwani Rai, James Moroney
Photosynth Res.
DOI: 10.1007/s11120-023-01005-1
![Yield return due to improved photosynthesis is highly impacted by seasonal climate variability, graph proving it](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2023-05/Figure_for_RIPE_news_web_0.jpg?itok=4RqNT87h)
Seasonal climate conditions impact the effectiveness of improving photosynthesis to increase soybean yield
Yufeng He and Megan Matthews
Field Crops Research
10.1016/j.fcr.2023.108907
![RIPE Realizing Increased Photosynthetic Efficiency Logo](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2024-03/LogoForWebStories_webcut.png?itok=nKtao97H)
Dynamic responses of carbon assimilation and stomatal conductance in the future climate
Amanda De Souza
Journal of Experimental Botany
DOI: 10.1093/jxb/erad049
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The Chlamydomonas reinhardtii chloroplast envelope protein LCIA transports bicarbonate in planta
Britta Förster et. al, Full list of authors in summary
10.1093/jxb/erad116
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Towards engineering a hybrid carboxysome
Nghiem Dinh Nguyen, Sacha B. Pulsford, Wei Yi Hee, Benjamin D. Rae, Loraine M. Rourke, G. Dean Price, Benedict M. Long
Photosynthesis Research
DOI: 10.1007/s11120-023-01009-x
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Calvin cycle and guard cell metabolism impact stomatal function
Pauline Lemonnier, Tracy Lawson
Seminars in Cell and Developmental Biology
10.1016/j.semcbd.2023.03.001
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Escherichia coli expressing chloroplast chaperones as a proxy to test heterologous Rubisco production in leaves
Sally Buck, Tim Rhodes, Matteo Gionfriddo, Tanya Skinner, Ding Yuan, Rosemary Birch, Maxim V Kapralov, Spencer M Whitney
Journal of Experimental Botany
DOI:10.1093/jxb/erac435