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Plant Physiology|May 17, 2014
Genetic Control and Evolution of Anthocyanin MethylationSofia Provenzano, Cornelis Spelt, Satoko Hosokawa, et al.The Plant Journal : for Cell and Molecular Biology|May 25, 2019
The MYB5-driven MBW complex recruits a WRKY factor to enhance the expression of targets involved in vacuolar hyper-acidification and trafficking in grapevineAlessandra Amato, Erika Cavallini, Amanda R Walker, et al.Cell Reports|September 30, 2021
An ancient RAB5 governs the formation of additional vacuoles and cell shape in petunia petalsShuangjiang Li, Martina Cerri, Pamela Strazzer, et al.The Plant Journal : for Cell and Molecular Biology|June 1, 2011
Revealing impaired pathways in the an11 mutant by high-throughput characterization of Petunia axillaris and Petunia inflata transcriptomesSara Zenoni, Nunzio D'Agostino, Giovanni B Tornielli, et al.The New Phytologist|May 24, 2016
Evolution of tonoplast P-ATPase transporters involved in vacuolar acidificationYanbang Li, Sofia Provenzano, Mattijs Bliek, et al.Plant Direct|June 28, 2019
Identification and functional analysis of three new anthocyanin R2R3-MYB genes in <i>Petunia</i>Hechen Zhang, Ronald Koes, Hongquan Shang, et al.Cell Reports|January 7, 2014
Hyperacidification of vacuoles by the combined action of two different P-ATPases in the tonoplast determines flower colorMarianna Faraco, Cornelis Spelt, Mattijs Bliek, et al.Frontiers in Plant Science|March 14, 2022
Modifying Anthocyanins Biosynthesis in Tomato Hairy Roots: A Test Bed for Plant Resistance to Ionizing Radiation and Antioxidant Properties in SpaceSilvia Massa, Riccardo Pagliarello, Alessia Cemmi, et al.Nature Plants|June 4, 2016
Insight into the evolution of the Solanaceae from the parental genomes of Petunia hybridaAureliano Bombarely, Michel Moser, Avichai Amrad, et al.Pageof 4