李宏杰讲师

作者:时间:2025-11-02点击数:

基本信息

姓名:李宏杰

性别:女

职称:讲师

专业:林学

邮箱:lihj715@163.com


个人基本情况

李宏杰,博士,讲师。主要从事植物挥发性萜类化合物合成通路研究。参与吉林省科技厅创新平台(基地)和人才专项中青年科技创新创业卓越人才(团队)项目(创新类)1项;以第一作者发表SCI论文2篇,参与发表SCI论文6篇。


研究方向

围绕植物挥发性化合物形成机制研究,结合基因工程、分子生物学和生物化学技术,重点开展对植物挥发性萜类化合物合成通路的解析。


学习、工作经历

2025.09-至今 吉林农业大学林学与草学学院,讲师

2020.09-2024.12 东北师范大学 遗传学,博士

2017.09-2020.06 吉林农业大学 遗传学,硕士

2013.09-2017.06 吉林农业大学 生物技术,学士


主要讲授课程

本科生:分子生物学


科研项目

1.参与吉林省科技厅创新平台(基地)和人才专项中青年科技创新创业卓越人才(团队)项目(创新类)“花卉作物观赏性状形成机制解析”,项目编号:20220508112RC,时间:2022.07-024.06,结题.


发表文章

1. Hongjie Li†, Yueqing Li†, Huijun Yan†, Tingting Bao, Xiaotong Shan, Jean-Claude Caissard, Liangsheng Zhang, Huiyi Fang, Xue Bai, Jia Zhang, Zhaoxuan Wang, Min Wang, Qian Guan, Ming Cai, Guogui Ning, Xiujuan Jia, Benoît Boachon, Sylvie Baudino, Xiang Gao*, 2024. The Complexity of Volatile Terpene Biosynthesis in Roses: Particular Insights into β-Citronellol Production. Plant Physiology. (SCI, IF = 6.5).中科院一区TOP;Q1

2. Hongjie Li†, Jing Chen†, Qi Zhao, Yilai Han, Li Li, Chunyu Sun, Kangyu Wang, Yanfang Wang, Mingzhu Zhao, Ping Chen, Jun Lei, Yi Wang*, Meiping Zhang*, 2021. Basic leucine zipper (bZIP) transcription factor genes and their responses to drought stress in ginseng, Panax ginseng C.A. Meyer. BMC Genomics. (SCI, IF = 3.5).中科院二区TOP;Q2

3. Tingting Bao, Shadrack Kimani, Yueqing Li*, Hongjie Li, Song Yang, Jia Zhang, Qiuyue Wang, Zhaoxuan Wang, Guogui Ning, Li Wang, Xiang Gao*, 2023. Allelic Variation of Terpene Synthases Drives Terpene Diversity in the Wild Species of Freesia Genus. Plant Physiology. (SCI, IF = 6.5).中科院一区TOP;Q1

4. Yueqing Li, Tingting Bao, Jia Zhang, Hongjie Li, Xiaotong Shan, Huijun Yan, Shadrack Kimani, Liangsheng Zhang*, Xiang Gao*, 2024. The coordinated interaction or regulation between floral pigments and volatile organic compounds. Horticultural Plant Journal.(SCI, IF = 5.7).中科院一区;Q1

5. Song Yang, Yueqing Li, Ning Wang, Shadrack Kimani, Tingting Bao, Hongjie Li, Xiaotong Shan, Jia Zhang, Heyu Ji, Fengyue Cui, Ning Li, Xiang Gao*, 2025. Terpene synthase diversity reveals the inter- and intraspecific floral scent evolution in Aquilegia. Plant Physiology. (SCI, IF = 6.5).中科院一区TOP;Q1


版权所有:吉林农业大学   地       址:吉林省长春市新城大街2888号(130118)