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Comparative and Functional Genomics|May 22, 2012
The eIF4F and eIFiso4F Complexes of Plants: An Evolutionary PerspectiveRyan M Patrick, Karen S BrowningCommunications Biology|December 3, 2023
Organ-specific characteristics govern the relationship between histone code dynamics and transcriptional reprogramming during nitrogen response in tomatoRussell Julian, Ryan M Patrick, Ying LiJournal of Experimental Botany|February 19, 2021
Dynamic histone acetylation in floral volatile synthesis and emission in petunia flowersRyan M Patrick, Xing-Qi Huang, Natalia Dudareva, et al.The New Phytologist|December 7, 2023
Rhythmic histone acetylation acts in concert with day-night oscillation of the floral volatile metabolic networkRyan M Patrick, Xing-Qi Huang, Natalia Dudareva, et al.Frontiers in Plant Science|October 31, 2022
Histone methyltransferases SDG33 and SDG34 regulate organ-specific nitrogen responses in tomatoCarol Bvindi, Liang Tang, Sanghun Lee, et al.Translation (Austin, Tex.)|January 17, 2017
Fusion proteins of <i>Arabidopsis</i> cap-binding proteins: Cautionary "tails" of woeElizabeth Levins, Ching-Ying Tseng, Ryan M Patrick, et al.The Journal of Biological Chemistry|September 15, 2018
Discovery and characterization of conserved binding of eIF4E 1 (CBE1), a eukaryotic translation initiation factor 4E-binding plant proteinRyan M Patrick, Jessica C H Lee, Jade R J Teetsel, et al.The Plant Journal : for Cell and Molecular Biology|December 4, 2021
ODORANT1 targets multiple metabolic networks in petunia flowersMaaike R Boersma, Ryan M Patrick, Sonia L Jillings, et al.Plant Physiology|February 7, 2014
Two Arabidopsis loci encode novel eukaryotic initiation factor 4E isoforms that are functionally distinct from the conserved plant eukaryotic initiation factor 4ERyan M Patrick, Laura K Mayberry, Grace Choy, et al.Plant Physiology|October 24, 2019
SDG8-Mediated Histone Methylation and RNA Processing Function in the Response to Nitrate SignalingYing Li, Matthew Brooks, Jenny Yeoh-Wang, et al.Pageof 2