
学习工作简历:
2006.09 -2010.07,中南民族大学,学士
2010.09-2012.07,武汉大学,硕士
2013.09-2017.07,中国科学院大学(中国科学院华南植物园),博士
2017.07-2019.11,中国科学院华南植物园,博士后
2019.12-2020.12,中国科学院华南植物园,陈焕镛副研究员
2021.01-至今,中国科学院华南植物园,副研究员
研究领域:
1. 茶叶重要经济性状形成机理及提质增效技术研发。
2. 拟南芥表观遗传因子介导光调控种子萌发的分子机制研究。
承担科研项目情况:
1. 广东省重点领域研发计划项目-课题3,主持,2023.01-2026.12。
2. 广东省自然科学基金面上项目,主持,2021.01-2023.12。
3. 广州市基础与应用基础研究项目,主持,2021.04-2023.03。
4. 国家自然科学基金青年科学基金项目,主持,2019.01-2021.12。
5. 中国博士后科学基金,主持,2017.11-2019.07。
社会任职:
1. BMC Plant Biology编委。
2. Scientific Reports编委。
3.《茶叶学报》青年编委。
4. The Plant Journal、Horticulture Research、 Plant, Cell & Environment、Journal of Agricultural and Food Chemistry等中科院一区SCI期刊审稿人。
5. 入选广东省驻镇帮镇扶村农村科技特派员和广州市、茂名市、清远市农村科技特派员。
获奖及荣誉:
1. 潮州市农业技术推广奖一等奖(第9完成人、共19人),2023年。
2. 潮州市农业技术推广奖一等奖(第9完成人、共15人),2022年。
3. “创新清远”科技进步奖一等奖(第6完成人、共15人),2022年。
4. “创新清远”科技进步奖二等奖(第7完成人、共15人),2021年。
5. 中国科学院院长优秀奖,2017年。
6. 中国科学院大学优秀毕业生,2017年。
7. 华南植物园BIOMIGA奖学金,2017年。
代表论著:
①在Nucleic Acids Research、Plant Communications、Horticulture Research、Plant, Cell & Environment、European Journal of Agronomy、Journal of Agricultural and Food Chemistry、Plant Science、Industrial Crops and Products等相关领域期刊发表学术论文共35篇;以第1作者(共同第1作者)或独立通讯作者在相关领域期刊发表17篇学术论文(SCI论文14篇,IF5years>10的论文2篇,10>IF5years>5的论文12篇)。②参编专著2本。③已获得授权发明专利4件(第1发明人2件)和实用新型专利3件;参与制定团体标准4项(第1起草人1项)和企业标准2项;参与研发广东省主推技术2项;开发计算机软件著作权2项(第1创作人1项)。
如下是代表性论文(#共同第一作者,*通讯作者):
[1] Gu, D.C. #, Wang, Y.H. #, Zhao, M.L. #, Chen, H.C., Wu, S.H., Jin, X., Deng, L., Ji, R.J., Xu, J.Y., Zheng, F., Liu, X.C. * (2025). Phytochrome B stabilizes the KNOX transcription factor BP/KNAT1 to promote light-initiated seed germination in Arabidopsis thaliana. Plant Communications, 6, 101517.
[2] Wang, Y.X.#, Li, J.L.#, Wu, S.H., Li, H.X., Gu, D.C.* (2025). The effects of exogenous gibberellic acid on the economic traits of tea plants. European Journal of Agronomy, 168: 127640.
[3] Gu, D.C.#, Wu, S.H.#, Wang, Y.X., Yang, Y.H., Chen, J.M., Mao, K.Q., Liao, Y.Y., Li, J.L., Zeng, L.T., Yang, Z.Y.* (2024). Tea green leafhopper infestations affect tea plant growth by altering the synthesis of brassinolide. Plant, Cell & Environment, 47, 3780-3796.
[4] Chen, J.M.#, Wu, S.H.#, Mao, K.Q., Li, J.L., Dong, F., Tang, J.C., Zeng, L.T., Gu, D.C.* (2023). Adverse effects of shading on the tea yield and the restorative effects of exogenously applied brassinolide. Industrial Crops and Products, 197, 116546.
[5] Mao, K.Q.#, Li, J.L.#, Wu, S.H., Qian, J.J., Liao, Y.Y., Zeng, L.T., Gu, D.C.* (2023). Melatonin treatment promotes cold adaptation and spring growth of tea plants. Industrial Crops and Products, 200, 116834.
[6] Wu, S.H.#, Yang, Y.H.#, Chen, J.M., Li, J.L., Jian, G.T., Yang, J., Mao, K.Q., Zeng, L.T., Gu, D.C.* (2023). Histone deacetylase CsHDA6 mediates the regulated formation of the anti-insect metabolite α-farnesene in tea (Camellia sinensis). Plant Science, 326, 111501.
[7] Wu, S.H.#, Gu, D.C.#, Chen, Y.Z., Wang, F., Qian, J.J., Zeng, L.T., Tang, J.C., Yan, Y., Chen, C.S.*, Li, J.L.* (2023). Variations in oolong tea key characteristic floral aroma compound contents among tea (Camellia sinensis) germplasms exposed to postharvest stress. Postharvest Biology and Technology, 197, 112201.
[8] Wang, Y.H.#, Gu, D.C.#, Deng, L., He, C.M., Zheng, F., Liu, X.C.* (2023). The histone H3K27 demethylase REF6 is a positive regulator of light-initiated seed germination in Arabidopsis. Cells, 12, 295.
[9] Gu, D.C.#, Wu, S.H.#, Yu, Z.M.#, Zeng, L.T., Qian, J.J., Zhou, X.C., Yang, Z.Y.* (2022). Involvement of histone deacetylase CsHDA2 in regulating (E)-nerolidol formation in tea (Camellia sinensis) exposed to tea green leafhopper infestation. Horticulture Research, 9, uhac158.
[10] Gu, D.C.#, Yang, J.#, Wu, S.H., Liao, Y.Y., Zeng, L.T., Yang, Z.Y.* (2021). Epigenetic regulation of the phytohormone abscisic acid accumulation under dehydration stress during postharvest processing of tea (Camellia sinensis). Journal of Agricultural and Food Chemistry, 69, 1039-1048.
[11] Chen, J.M.#, Wu, S.H.#, Dong, F., Li, J.L., Zeng, L.T., Tang, J.C., Gu, D.C.* (2021). Mechanism underlying the shading-induced chlorophyll accumulation in tea leaves. Frontiers in Plant Science, 12, 779819.
[12] Yang, J.#, Gu, D.C.#, Wu, S.H., Zhou, X.C., Chen, J.M., Liao, Y.Y., Zeng, L.T., Yang, Z.Y.* (2021). Feasible strategies for studying the involvement of DNA methylation and histone acetylation in the stress-induced formation of quality-related metabolites in tea (Camellia sinensis). Horticulture Research, 8, 253.
[13] Gu, D.C., Ji, R.J., He, C.M., Peng, T., Zhang, M.Y., Duan, J., Xiong, C.Y.*, Liu, X.C.* (2019). Arabidopsis histone methyltransferase SUVH5 is a positive regulator of light-mediated seed germination. Frontiers in Plant Science, 10, 841.
[14] Gu, D.C.#, Chen, C.Y.#, Zhao, M.L., Zhao, L.M., Duan, X.W., Duan, J.*, Wu, K.Q.*, Liu, X.C*. (2017). Identification of HDA15-PIF1 as a key repression module directing the transcriptional network of seed germination in the dark. Nucleic Acids Research, 45, 7137-7150.
[15] 吴淑华, 毛凯权, 陈家铭, 黎健龙, 薛璟花, 曾兰亭, 羊玉花, 辜大川*. (2023). 茶小绿叶蝉侵害对茶鲜叶持嫩性及其制成乌龙茶品质相关代谢物浸出速率的影响研究. 茶叶科学. 43, 806-822.
[16] 陈家铭,吴淑华,曾兰亭,东方,辜大川*. (2021). 遮阴对茶叶品质和产量影响研究进展. 中国茶叶. 43, 1-10.
[17] 辜大川,邱东峰,殷明珠,焦春海,杨金松,张再君*,刘春萍. (2012). 水稻优异资源分子身份证的建立. 湖北农业科学. 51, 5579-5583.