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BMC Plant Biology|December 1, 2022
OrchidBase 5.0: updates of the orchid genome knowledgebaseYou-Yi Chen, Chung-I Li, Yu-Yun Hsiao, et al.Cancer Research|September 25, 2025
TRIM49 Deficiency Stabilizes a Galectin-3/EGR1 Transcriptional Complex that Drives Invasiveness of Gastric AdenocarcinomaZhong-Yi Qin, Lin-Rong Che, Shuoran Tian, et al.Heliyon|July 1, 2021
Corrigendum to "Comparative analysis of Phytophthora genomes reveals oomycete pathogenesis in crops" [Heliyon 7 (2) (February 2021) e06317]Rui-Fang Gao, Jie-Yu Wang, Ke-Wei Liu, et al.Heliyon|March 5, 2021
Comparative analysis of Phytophthora genomes reveals oomycete pathogenesis in cropsRui-Fang Gao, Jie-Yu Wang, Ke-Wei Liu, et al.Scientific Reports|January 13, 2016
The Dendrobium catenatum Lindl. genome sequence provides insights into polysaccharide synthase, floral development and adaptive evolutionGuo-Qiang Zhang, Qing Xu, Chao Bian, et al.Horticulture Research|December 1, 2021
The Cymbidium genome reveals the evolution of unique morphological traitsYe Ai, Zhen Li, Wei-Hong Sun, et al.Nature|September 14, 2017
The Apostasia genome and the evolution of orchidsGuo-Qiang Zhang, Ke-Wei Liu, Zhen Li, et al.Nature|July 19, 2020
Author Correction: The Apostasia genome and the evolution of orchidsGuo-Qiang Zhang, Ke-Wei Liu, Zhen Li, et al.Nature Genetics|November 25, 2014
The genome sequence of the orchid Phalaenopsis equestrisJing Cai, Xin Liu, Kevin Vanneste, et al.Nature Communications|June 20, 2023
Diploid and tetraploid genomes of Acorus and the evolution of monocotsLiang Ma, Ke-Wei Liu, Zhen Li, et al.Pageof 5