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Frontiers in Plant Science|September 8, 2022
A high-efficiency trichome collection system by laser capture microdissectionWei Qin, Yongpeng Li, Bowen Peng, et al.Journal of Advanced Research|April 8, 2024
Unveiling the regulatory mechanisms of nodules development and quality formation in Panax notoginseng using multi-omics and MALDI-MSIMuyao Yu, Chunxia Ma, Badalahu Tai, et al.Journal of Integrative Plant Biology|July 9, 2024
The AaBBX21-AaHY5 module mediates light-regulated artemisinin biosynthesis in Artemisia annua LWeizhi He, Hang Liu, Zhangkuanyu Wu, et al.Plant Biotechnology Journal|October 28, 2025
Jasmonate-Activated AaWRKY9-AabHLH93/AabHLH93-AaMYB7 Complexes Balance Artemisinin Biosynthesis in Artemisia annuaXueqing Fu, Han Zheng, Yaojie Zhang, et al.Plant Science : an International Journal of Experimental Plant Biology|January 23, 2023
AaWIN1, an AP2/ERF protein, positively regulates glandular secretory trichome initiation in Artemisia annuaChen Wang, Tiantian Chen, Yongpeng Li, et al.Journal of Plant Physiology|June 1, 2022
The truncated AaActin1 promoter is a candidate tool for metabolic engineering of artemisinin biosynthesis in Artemisia annua LYongpeng Li, Tiantian Chen, Hang Liu, et al.Plant & Cell Physiology|May 12, 2019
Light-Induced Artemisinin Biosynthesis Is Regulated by the bZIP Transcription Factor AaHY5 in Artemisia annuaXiaolong Hao, Yijun Zhong, Hans-Wilhelm Nï Tzmann, et al.Biomed Research International|April 12, 2016
Overexpression of AaWRKY1 Leads to an Enhanced Content of Artemisinin in Artemisia annuaWeimin Jiang, Xueqing Fu, Qifang Pan, et al.The New Phytologist|January 30, 2018
A novel HD-ZIP IV/MIXTA complex promotes glandular trichome initiation and cuticle development in Artemisia annuaTingxiang Yan, Ling Li, Lihui Xie, et al.The New Phytologist|May 11, 2021
AaWRKY9 contributes to light- and jasmonate-mediated to regulate the biosynthesis of artemisinin in Artemisia annuaXueqing Fu, Bowen Peng, Danial Hassani, et al.Pageof 8