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The New Phytologist|April 18, 2025
Holo-omics disentangle drought response and biotic interactions among plant, endophyte and pathogenPeilin Chen, Qingyi Yu, Cong Wang, et al.Nature|April 25, 2008
The draft genome of the transgenic tropical fruit tree papaya (Carica papaya Linnaeus)Ray Ming, Shaobin Hou, Yun Feng, et al.Nature Plants|May 7, 2021
The reference genome of Miscanthus floridulus illuminates the evolution of SaccharinaeGuobin Zhang, Chunxia Ge, Pingping Xu, et al.Plant Biotechnology Journal|June 25, 2021
Reference genomes of the two cultivated jute speciesLilan Zhang, Xiaokai Ma, Xingtan Zhang, et al.The Plant Journal : for Cell and Molecular Biology|September 14, 2021
Rambutan genome revealed gene networks for spine formation and aril developmentWenping Zhang, Jishan Lin, Jianguo Li, et al.Cell|October 9, 2020
Genomes of the Banyan Tree and Pollinator Wasp Provide Insights into Fig-Wasp CoevolutionXingtan Zhang, Gang Wang, Shengcheng Zhang, et al.Plant Physiology|September 14, 2024
Regulatory network of the late-recruited primary decarboxylase C4NADP-ME in sugarcaneXiuting Hua, Huihong Shi, Gui Zhuang, et al.Nature Genetics|October 10, 2018
Allele-defined genome of the autopolyploid sugarcane Saccharum spontaneum LJisen Zhang, Xingtan Zhang, Haibao Tang, et al.Nature Genetics|November 15, 2018
Publisher Correction: Allele-defined genome of the autopolyploid sugarcane Saccharum spontaneum LJisen Zhang, Xingtan Zhang, Haibao Tang, et al.Nature Plants|March 30, 2023
A complete gap-free diploid genome in Saccharum complex and the genomic footprints of evolution in the highly polyploid Saccharum genusTianyou Wang, Baiyu Wang, Xiuting Hua, et al.Pageof 28