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Horticulture Research|April 16, 2025
Co-silencing of <i>PhENO1</i> and <i>PhPPT</i> alters anthocyanin production by reducing phosphoenolpyruvate supply in petunia flowerXin Li, Jiahao Cao, Guiyun Jiang, et al.Plant Physiology|November 5, 2016
Proteomes and Ubiquitylomes Analysis Reveals the Involvement of Ubiquitination in Protein Degradation in PetuniasJianhang Guo, Juanxu Liu, Qian Wei, et al.Scientific Reports|February 3, 2017
PhCESA3 silencing inhibits elongation and stimulates radial expansion in petuniaWeiyuan Yang, Yuanping Cai, Li Hu, et al.Frontiers in Plant Science|August 14, 2023
Long non-coding RNA-mediated competing endogenous RNA regulatory network during flower development and color formation in <i>Melastoma candidum</i>Hui Li, Wei Wang, Rui Liu, et al.Journal of Experimental Botany|May 5, 2020
PaACL silencing accelerates flower senescence and changes the proteome to maintain metabolic homeostasis in Petunia hybridaHuina Zhao, Shiwei Zhong, Lina Sang, et al.The New Phytologist|November 1, 2025
A new small subunit of the mitochondrial F-ATPase, PhDC, determines flower color by acidifying vacuolesJunwei Yuan, Weiyuan Yang, Zhixia Zhao, et al.Physiologia Plantarum|November 26, 2024
PhAN2 regulated Ph3GT silencing changes the flower color and anthocyanin content in petuniasWenjie Yang, Yi Yao, Wenqi Deng, et al.Horticulture Research|December 24, 2025
Transketolase-mediated erythrose-4-phosphate provides an essential source for anthocyanin biosynthesis in petuniaXin Li, Wenjie Yang, Jiahao Cao, et al.The Plant Cell|January 1, 2013
The R2R3-MYB-like regulatory factor EOBI, acting downstream of EOBII, regulates scent production by activating ODO1 and structural scent-related genes in petuniaBen Spitzer-Rimon, Moran Farhi, Boaz Albo, et al.Pageof 3