Hongning Tong
Affiliations: | Institute of Crop Sciences, Chinese Academy of Agricultural Sciences |
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Zhang X, Meng W, Liu D, et al. (2024) Enhancing rice panicle branching and grain yield through tissue-specific brassinosteroid inhibition. Science (New York, N.Y.). 383: eadk8838 |
Zhang G, Wang H, Ren X, et al. (2024) Brassinosteroid-dependent phosphorylation of PHOSPHATE STARVATION RESPONSE2 reduces its DNA-binding ability in rice. The Plant Cell |
Yang Y, Chu C, Qian Q, et al. (2023) Leveraging brassinosteroids towards the next Green Revolution. Trends in Plant Science |
Tong H, Chu C. (2023) Coordinating GA and BR signaling beyond Green Revolution. Journal of Genetics and Genomics = Yi Chuan Xue Bao |
Zhang G, Liu Y, Xie Q, et al. (2023) Crosstalk between brassinosteroid signaling and variable nutrient environments. Science China. Life Sciences |
Liu Y, Wang H, Jiang Z, et al. (2022) Author Correction: Genomic basis of geographical adaptation to soil nitrogen in rice. Nature |
Liu D, Zhang X, Li Q, et al. (2022) The U-box Ubiquitin Ligase TUD1 Promotes Brassinosteroid-Induced GSK2 Degradation in Rice. Plant Communications. 100450 |
Niu M, Wang H, Yin W, et al. (2022) Rice DWARF AND LOW-TILLERING and the homeodomain protein OSH15 interact to regulate internode elongation via orchestrating brassinosteroid signaling and metabolism. The Plant Cell |
Yin W, Li L, Yu Z, et al. (2022) The divergence of brassinosteroid sensitivity between rice subspecies involves natural variation conferring altered internal auto-binding of OsBSK2. Journal of Integrative Plant Biology |
Che R, Hu B, Wang W, et al. (2021) POLLEN STERILITY, a novel suppressor of cell division, is required for timely tapetal programmed cell death in rice. Science China. Life Sciences |