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Frontiers in Plant Science|June 17, 2021
Cytokinins Stimulate Plasmodesmatal Transport in LeavesWilson Horner, Jacob O BrunkardMethods in Molecular Biology (Clifton, N.J.)|March 29, 2022
Quantifying Plasmodesmatal Transport with an Improved GFP Movement AssayWilson Horner, Jacob O BrunkardPlant Biotechnology Journal|June 27, 2025
Seamless, modular binary vectors for plant cell and molecular biologyRory Greenhalgh, Wilson Horner, Katherine A Klimpel, et al.Developmental Cell|July 11, 2020
Exaptive Evolution of Target of Rapamycin Signaling in Multicellular EukaryotesJacob O BrunkardResults and Problems in Cell Differentiation|September 6, 2024
Communicating Across Cell Walls: Structure, Evolution, and Regulation of Plasmodesmatal Transport in PlantsJacob O BrunkardPlant Physiology|October 12, 2019
Plant Cell-Cell Transport via Plasmodesmata Is Regulated by Light and the Circadian ClockJacob O Brunkard, Patricia ZambryskiBiomolecules|March 25, 2022
Amino Acid Signaling for TOR in Eukaryotes: Sensors, Transducers, and a Sustainable Agricultural fuTOReNanticha Lutt, Jacob O BrunkardFrontiers in Plant Science|September 28, 2018
A Two-Headed Monster to Avert Disaster: HBS1/SKI7 Is Alternatively Spliced to Build Eukaryotic RNA Surveillance ComplexesJacob O Brunkard, Barbara BakerCurrent Opinion in Plant Biology|November 28, 2016
Plasmodesmata enable multicellularity: new insights into their evolution, biogenesis, and functions in development and immunityJacob O Brunkard, Patricia C ZambryskiGenetics|December 10, 2022
Terminal ear 1 and phytochromes B1/B2 regulate maize leaf initiation independentlyMichael Busche, Sarah Hake, Jacob O BrunkardPageof 4