#PlantSynthBio
📜 Synthetic gene circuits in plants: recent advances and challenges

🧑‍🔬 @adil-khan.bsky.social, @ryanlister.bsky.social

📔 Quantitative Plant Biology

🔗 www.cambridge.org/core/product...

#️⃣ #PlantScience #PlantSynBio #PlantSynthBio #SynBio
Synthetic gene circuits in plants: recent advances and challenges | Quantitative Plant Biology | Cambridge Core
Synthetic gene circuits in plants: recent advances and challenges - Volume 6
www.cambridge.org
February 28, 2025 at 6:01 AM
📜 CRISPRi-based circuits to control gene expression in plants

🧑‍🔬 Muhammad Adil Khan, Brendan N. Kidd, Ryan Lister, et al.

📔 @natureportfolio.bsky.social Biotechnology

🔗 www.nature.com/articles/s41...

🔊 www.nature.com/articles/s41...

#️⃣ #PlantScience #PlantSynthBio #PlantBiotechnology #CRISPR
CRISPRi-based circuits to control gene expression in plants - Nature Biotechnology
Programmable and reversible CRISPRi-based genetic circuits function in a variety of plants.
www.nature.com
May 23, 2024 at 7:48 AM
📜 A scaffold protein manages the biosynthesis of steroidal defense metabolites in plants

🧑‍🔬 Marianna Boccia, @oconnorlab.bsky.social, Prashant D. Sonawane, et al.

📔 @science.org

🔗 www.science.org/doi/10.1126/...

#️⃣ #PlantScience #PlantImmunity #PlantMetabolites #PlantSynthBio #Tomato #Saponins
A scaffold protein manages the biosynthesis of steroidal defense metabolites in plants
Solanaceae plants produce two major classes of valuable sterol-derived natural products—steroidal glycoalkaloids and steroidal saponins—from a common cholesterol precursor. Attempts to heterologously ...
www.science.org
December 20, 2024 at 7:41 AM
📜 A history-dependent integrase recorder of plant gene expression with single-cell resolution

🧑‍🔬 Cassandra J. Maranas, Sarah Guiziou, et al.

📔 Nature Communications

🔗 www.nature.com/articles/s41...

#️⃣ #PlantScience #PlantSynthBio #PlantSynBio #PlantCellBiology #PlantMethods
A history-dependent integrase recorder of plant gene expression with single-cell resolution - Nature Communications
Understanding gene expression patterns that underlie developmental programs can inform engineering efforts for new or optimized forms. Here, the authors engineer a four-state history-dependent integra...
www.nature.com
November 5, 2024 at 8:04 AM
📜 MultiGreen: A multiplexing architecture for GreenGate cloning

🧑‍🔬 Vincent J. Pennetti, Peter R. LaFayette, Wayne Allen Parrott

📔 PLOS ONE

🔗 dx.plos.org/10.1371/jour...

#️⃣ #PlantScience #Cloning #PlantSynthBio #SyntheticBiology #CloningSystems #GreenGate #PlantGoldenGate #PlantMolecularBiology
MultiGreen: A multiplexing architecture for GreenGate cloning
Genetic modification of plants fundamentally relies upon customized vector designs. The ever-increasing complexity of transgenic constructs has led to increased adoption of modular cloning systems for...
dx.plos.org
September 27, 2024 at 2:45 PM
📜 Cooperativity and additivity in plant enhancers

🧑‍🔬 Tobias Jores, Jackson Tonnies, Christine Queitsch, et al.

📔 @biorxiv-plants.bsky.social

🔗 www.biorxiv.org/content/10.1...

#️⃣ (Feeds) #PlantScience #PlantGenetics #PlantGenomics #PlantSynthBio
Cooperativity and additivity in plant enhancers
bioRxiv - the preprint server for biology, operated by Cold Spring Harbor Laboratory, a research and educational institution
www.biorxiv.org
November 24, 2023 at 6:43 AM
📜 An improved pathway for autonomous bioluminescence imaging in eukaryotes

🧑‍🔬 E. Shakhova, T. Karataeva, N. Markina, T. Mitiouchkina, K. Palkina, M. Perfilov, K. Sarkisyan, A. Mishin, et al.

📔 @natureportfolio.bsky.social Methods

🔗 www.nature.com/articles/s41...

#️⃣ #PlantScience #PlantSynthBio
An improved pathway for autonomous bioluminescence imaging in eukaryotes - Nature Methods
Improvements to the fully genetically encoded Neonothopanus nambi bioluminescence pathway enhance autobioluminescence by up to two orders of magnitude in plants and other species, enabling novel appli...
www.nature.com
January 23, 2024 at 7:57 AM