Paper Publications
- [17] 赵阳. AGLF provides C-function in floral organ identity through transcriptional regulation of AGAMOUS in Medicago truncatula. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 116, 5176, 2019.
- [18] 许艺滕. Developmental Analysis of the GATA Factor HANABA TARANU Mutants in Medicago truncatula Reveals Their Roles in Nodule Formation. Frontiers in plant science, 12, 2021.
- [19] 张雪. MtPIN1 and MtPIN3 Play Dual Roles in Regulation of Shade Avoidance Response under Different Environments in Medicago truncatula. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES , 21, 2020.
- [20] 周传恩. Interaction between the MtDELLA–MtGAF1 Complex and MtARF3 Mediates Transcriptional Control of MtGA3ox1 to Elaborate Leaf Margin Formation in Medicago truncatula. Plant Cell Physiology, 2021.
- [21] 周传恩. Bssinosteroid homeostasis is critical for the functionality of the Medicago truncatula pulvinus. Plant Physiology, 2020.
- [22] 王洪峰. From genes to networks: The genetic control of leaf development. Journal of integrative plant biology, 2021.
- [23] 孔一茗. The nodulation and nyctinastic leaf movement is orchestrated by clock gene LHY inMedicago truncatula. Journal of integrative plant biology, 62, 1880, 2020.
- [24] 汪敏敏. Phospho-Mutant Activity Assays Provide Evidence for the Negative Regulation of Transcriptional Regulator PRE1 by Phosphorylation. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES , 21, 2020.
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