承担课程
主要参与承担本科生课程《中药资源学》、《生物技术概论》、《药用植物栽培学》等。
科研及教学课题
1.国家自然科学基金面上项目,广藿香PcC3H蛋白作为合成酶互作蛋白介导新型广藿香醇合成调控机制研究,在研,主持
2.国家自然科学基金青年基金项目,广藿香PatTPS启动子功能及DREB转录因子介导的广藿香醇合成调控机制,结题,主持
3.广东省自然科学基金青年提升项目,广藿香JAZ/SWC蛋白互作参与调控PatPTS表达及广藿香油成分含量机制研究,在研,主持
4.广东省自然科学基金面上项目,广藿香采收加工过程次生代谢调控及其药材品质的影响,结题,主持
5.以农产品为单元的广东省现代农业产业技术体系创新团队建设项目(南药(广陈皮、化橘红等)产业技术体系),在研,参加
6.广东省乡村振兴战略专项种业振兴项目,广东省南药种业创新园,在研,参加
7.广东省乡村振兴战略专项省级项目,南药育种技术研发应用与省级良种繁育基地建设,结题,主持
8.广东省乡村振兴战略专项省级项目,广藿香生态种植关键技术示范及产业化应用,结题,主持
9.广东省乡村振兴战略专项种业振兴项目,广藿香的优质丰产品种培育与种业创新,在研,主持
10.广东省乡村振兴战略专项种业振兴项目,华南药用植物(南药)种质资源圃,在研,主持
11.广州市基础与应用基础研究项目,化橘红资源遗传多样性及柚皮苷合成基因等位变异挖掘,结题,主持
12.广东省科技厅省级农村科技特派员项目,广藿香等中药材规范化种植(GAP)技术指导与推广,结题,主持
13.广东省农业科技项目,广东省南药产业监测与区划研究,结题,参加
14.广东省教育厅青年创新人才类项目(自科),南药广藿香PatTPS基因的分子互作及广藿香醇合成调控研究,结题,主持
15.云浮市中医药(南药)创新团队项目,广藿香等南药种业及生态种植技术创新团队,在研,参加
16.委托项目,仙草(凉粉草)新品种选育研究,结题,参加
17.委托项目,黑老虎分子鉴别、良种筛选与种子种苗标准相关技术研究,在研,参加
18.委托项目,岭南道地药材保护品种广藿香、广佛手药材质量体系建设,结题,参加
19.委托项目,光伏+南药种植系统一体化研究,在研,参加
代表性研究论文
1.Ge X, Fang S, Chen L, et al. Profiling the dynamic alterations of metabolites and phytohormones in response to stress during the post-harvest processing of Pogostemon cablin leaves[J]. Industrial Crops and Products, 2025, 230: 121125.
2.Zhong, Ling'an; Zou, Xuan; Wu, Shuiqin; Chen, Lang; Fang, Siyu; Zhong, Wenxuan; Xie, Lili; Zhan, Ruoting; Chen, Likai, Volatilome and flavor analyses based on e-nose combined with HS-GC-MS provide new insights into ploidy germplasm diversity in Platostoma palustre, Food Research International, 2024, 183: 114180.
3.Wu Daidi, Chen Lang, Zhong Baiyang, et al. PcENO3 interacts with patchoulol synthase to positively affect the enzymatic activity and patchoulol biosynthesis in Pogostemon cablin[J]. Physiologia Plantarum. 2023,175,(6). e14055.
4.Wang X, Zhong L, Zou X, Gong L, Zhuang J, Zhang D, Zheng H, Wang X, Wu D, Zhan R and Chen L (2023) GC-MS and UHPLC-QTOFMS-assisted identification of the differential metabolites and metabolic pathways in key tissues of Pogostemon cablin. Frontiers in Plant Science. 14:1098280.
5.Chen, X., Wang, X., Wu, D., Li, J., Huang, H., Wang, X., ... & Chen, L. PatDREB Transcription Factor Activates Patchoulol Synthase Gene Promoter and Positively Regulates Jasmonate-Induced Patchoulol Biosynthesis. Journal of Agricultural and Food Chemistry. 2022, 70, 23, 7188–7201
6.Huang, H., Wu, D., Guo, T., Zhang, D., Wang, X., Zhuang, J., ... & Chen, L.* (2022). The PcbZIP44 transcription factor inhibits patchoulol synthase gene expression and negatively regulates patchoulol biosynthesis in Pogostemon cablin. Industrial Crops and Products, 188, 115561.
7.Wang, Xiaobing; Tang, Yun; Huang, Huiling; Wu, Daidi; Chen, Xiuzhen; Li, Junren; Zheng, Hai; Zhan, Ruoting; Chen, Likai*; Functional analysis of Pogostemon cablin farnesyl pyrophosphate synthase gene and its binding transcription factor PcWRKY44 in regulating biosynthesis of patchouli alcohol, Frontiers in Plant Science, 2022, 13(946629).
8.Li Junren, Chen Xiuzhen, Zhou Xuanxuan, Huang Huiling, Wu Daidi, Shao Jiaqi, Zhan Ruoting, Chen Likai*. Identification of trihelix transcription factors in Pogostemon cablin reveals PatGT-1 negatively regulates patchoulol biosynthesis[J]. Industrial Crops and Products,2021,161.
9.詹若挺,刘军民,陈立凯,韩正洲,卢扬扬,陈维东,陈蔚文.广东省中药资源区划及栽培类药材的生产规划[J].我院学报,2021,38(06):1298-1304
10.詹若挺,刘军民,陈立凯,韩正洲,卢扬扬,陈维东,陈蔚文.广东省南药生产发展现状调查[J].我院学报,2020,37(09):1836-1843.
11.Xiuzhen Chen, Junren Li, Yanting Liu, Daidi Wu, Huiling Huang, Ruoting Zhan, Weiwen Chen, Likai Chen*. PatSWC4, a methyl jasmonate-responsive MYB (v-myb avian myeloblastosis viral oncogene homolog)-related transcription factor, positively regulates patchoulol biosynthesis in Pogostemon cablin[J]. Industrial Crops and Products,2020,154.
12.Xiaobing Wang, Xiuzhen Chen, Junren Li, Xuanxuan Zhou, Yanting Liu, Liting Zhong, Yun Tang, Hai Zheng, Jiyun Liu, Ruoting Zhan, Likai Chen*. Global analysis of lysine succinylation in patchouli plant leaves[J]. Horticulture Research,2019,6(1).
13.Junren Li, Xiuzhen Chen, Liting Zhong, Xiaobing Wang, Xuanxuan Zhou, Yun Tang, Yanting Liu, Hai Zheng, Ruoting Zhan, Likai Chen*. Comparative iTRAQ-based proteomic analysis provides insight into a complex regulatory network of Pogostemon cablin in response to exogenous MeJA and Ethrel[J]. Industrial Crops and Products,2019,140.