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吴高殷

文章来源:  发布时间:2021-10-19 10:59:20  浏览次数:[]

吴高殷,男,1990年3月出生,群众,农学博士,特岗副教授,硕士生导师, 研究方向:珍稀濒危植物繁育、保护及发育生物学研究 主讲课程:《植物组织培养》《森林植物资源开发与利用》 Email: wugaoyin1234@163.com


主持项目

1. 国家自然科学基金“多组学解析花榈木基因型“GZPT”和“AHQM”体胚发生差异的代谢物-基因共调控网络” 2026-2029年,主持

2. 贵州省科技厅青年项目“基于生理、转录和代谢组揭示花榈木体胚发生顽固机制” 2025-2028年,主持

3. 贵州省教育厅项目“贵州极小种群植物异形玉叶金花扩繁技术优化研究” 2023-2024年,主持

4. 贵州省林业局种苗站项目“贵州特色木本花卉玉叶金花属植物种质资源收集及繁育技术研究” 2024-2025,主持

5. 贵州省林业局种苗站项目“贵州特色木本花卉玉叶金花属植物的实生苗及无性系苗木扩繁” 2026-2027年,主持

6. 贵州师范大学学术新苗项目“红豆树体细胞胚胎发生机理及人工种子研究” 2022-2025年,主持

7. 贵州宽阔水国家级自然保护区项目“宽阔水保护区2025年珍稀濒危野生植物拯救保护” 2025年,主持 8. 赤水桫椤国家级自然保护区项目“赤水桫椤国家级自然保护区珍稀植物繁育项目” 2025-2026年,主持

近3年一作及通讯论文

[1] Gaoyin Wu; Xiaoli Wei; Xiao Wang; Yi Wei ; Changes and transcriptome regulation of endogenous hormones during somatic embryogenesis in Ormosia henryi Prain,Frontiers in Plant Science,2023,14: 1121259.

[2] Qiuying Li; Shuang Wang; Gaoyin Wu*; Ya Tan; Yingying Liu; Congjun Yuan; Shuanggui Geng; Yingliang Liu. Physiological and biochemical changes in leaf abscission of Cyclocarya paliurus stem segments in vitro. Plant Cell, Tissue Organ Culture, 2023, 155, 773-783.

[3] Gaoyin Wu,Yundou Pang, Ya Tan, Zhongcheng Peng, Shuanggui Geng, Guanglin Tao,Yingliang Liu. An Efficient Plant Regeneration System for Different Explants of Rare and Endangered Plants in Mussaenda anomala.Phyton-International Journal of Experimental Botany,2024,93(10),2597-2611.

[4] Gaoyin Wu; Qiuying Li; Wang Li; Wulan Huang; Shuang Wang; Shuanggui Geng; Zhongcheng Peng; Yingying Liu; Xiang Zhang; Enrong Lu; Yingliang Liu ; Endogenous hormone levels regulate the leaf abscission process of Cyclocarya paliurus stem segments in vitro,Scientia Horticulturae,2024,329: 113010.

[5] Gaoyin Wu; Qiuying Li; Ya Tan; Shuang Wang; Yingying Liu; Yingliang Liu* ; Advances in understanding the mechanisms of organ abscission in vivo and in vitro plants,Plant Growth Regulation,2024,103: 293-306.

[6] Weicheng Yang; Fen Liu; Gaoyin Wu*; Sheng Liang; Xiaojie Bai; Bangyou Liu; Bingcheng Zhang; Hangdan Chen; Jiao Yang ; Widely Targeted Metabolomics Analysis of the

Roots,Stems,Leaves,Flowers,and Fruits of Camellia luteoflora,a Species with an Extremely Small Population,Molecules,2024,29(19): 4754.

[7] Gaoyin Wu; Zhongcheng Peng; Qiuying Li; Xiang Zhang; Shuanggui Geng; Shuang Wang; Enrong Lu; Yingying Liu; Congjun Yuan; Xiaoli Wei; Yingliang Liu ; Transcriptome analyses for revealing leaf abscission of Cyclocarya paliurus stem segments in vitro,BMC Genomics,2025,26(1): 208.

[8] Shuang Wang, Shuanggui Geng, Xiaoshuang Wang, Li Wang, Qiuying Li, Enrong Lu,Xiang Zhang,Zhongcheng Peng,Gaoyin Wu*,Yingliang Liu. Comparative and phylogenetic analysis of Platycarya longipes and related species based on the complete chloroplast genomes. Genome,2025,68:1-12.

[9] Fen Liu ; Bangyou Liu; Weicheng Yang ; Yuehua Song; Sheng Liang; Hangdan Chen; Mengqing Zhou; Gaoyin Wu*. Study on the flower biology of Camellia luteoflora—a species with an extremely small population. Agronomy. 2025; 15(9):2098.

[10] Zhongcheng Peng,Yingliang Liu,Xuan Tan,Zhongwei He,Wulan Huang,Dayi Xie, Shiyi Mu, Qian Huang, Yunjie Hu, Lili Zhan, Ping Gui, Xiao Wang, Guanglin Tao, Yang Yang, Gaoyin Wu*. Integrated physiological, biochemical, and transcriptomic analysis of the cold-sensitive response in Mussaenda anomala. BMC Genomics,2025, 26(1),1023-1023.

[11] Meiru Xu, Zhangxu Pan, Guangxia Wang, Peiyun He, Gaoyin Wu*. Ex vitro adventitious root induction and physio-biochemical changes during adventitious root formation in early-sprouted Toona sinensis, Plant Cell, Tissue Organ Culture, 2025, 163: 115.

[12] Gaoyin Wu,Shuanggui Geng,Enrong Lu,Xiang Zhang,Fen Liu,Xianyu Li,Tianyu Liang,Mengqing Zhou,Qi Sun,Jiya Wu,Sheng Liang,Kaidi Lai, Bangyou Liu,Yingliang Liu,Weicheng Yang. Physiological and transcriptome analyses for revealing the mechanism of adventitious root formation in Camellia luteoflora. BMC plant biology, 2026.

[13] Shuanggui Geng,Xiaoyang Chen,Gaoyin Wu*,Yunjie Hu,Qian Huang,Guanglin Tao,Jing An,Fang Ming,Yingliang Liu. Physiological and transcriptome analyses for revealing the rooting mechanism of Mussaenda anomala, a species with an extremely small population. Scientia Horticulturae, 2026.

[14] 耿双贵,赵星星,谭娅,吴高殷*,陶光林,彭仲诚,陶光林,刘映良. 基本培养基及碳氮源对异形玉叶金花组织培养的影响. 种子,2025,44(02):236-245.

近5年专利及获奖情况:

授权发明专利10项,指导学生参加竞赛获国家级和省级奖8项。