
个人简介:
张蕊,浙江大学博士,特聘副教授,硕士生导师。
主要从事药用植物基于人工智能的多组学数据挖掘与合成生物学研究。
研究方向主要包括:
天然药物的合成生物学研究与生物制造;
中药资源开发与利用;
人工智能多组学数据挖掘与数据库搭建。
联系方式:ruizhang@zstu.edu.cn|
联系地址:下沙校区太阳成集团tyc151cc6#601
欢迎对药用植物学、生物信息学及分子生物学感兴趣、对科研与自然充满热情、踏实靠谱的年轻人报考本实验室的硕士研究生!
学习工作经历:
2025.10~至今 太阳成集团tyc151cc,特聘副教授
2020.09~2025.09 浙江大学,博士
项目情况:
1. 丹参关键免疫受体调控根腐病抗性与丹参酮合成的分子机理研究,2026.01~2029.01,在研,主持。
2. 颜百岁全灵芝孢子油和御寿堂灵芝多糖三萜精萃片工艺开发及抗肿瘤活性机制研究,2025.11~2026.05,在研,参与。
成果(论文/专利):
1. Zhang, R., Xi, X., Hu, X., Dan, X., Wang Y., Pan, Y., & Zhou, M*. (2025). Temporal transcriptomics reveal crucial networks underlying jasmonate-mediated diurnal floret opening and closure in rice. Science China-Life Sciences, 68(12), 3728-3743. (Q1, Research Article, Top 期刊)
2. Zhang, R., Chen, X., Wang, Y., Hu, X., Zhu, Q., Yang, L.*, & Zhou, M*. (2024). Genome-wide identification of hormone biosynthetic and metabolism genes in the 2OGD family of tobacco and JOX genes silencing enhances drought tolerance in plants. International Journal of Biological Macromolecules, 280, 135731. (Q1, Research Article, Top期刊)
3. Zhang, R., Xi, X., Chen, X., Wang, Y., & Zhou, M*. (2024). Comparing time-series transcriptomes between chilling-resistant and-susceptible rice reveals potential transcription factors responding to chilling stress. Frontiers in Plant Science, 15, 1451403. (Q1, Research Article)
4. Zhang, R., Ge, F., Li, H., Chen, Y., Zhao, Y., Gao, Y., Liu, Z., & Yang, L*. (2019). PCIR: A database of plant chloroplast inverted repeats. Database, 2019, baz127. (Q1, Research Article)
5. Zhang, R., Wang, Y., Li, S., Yang, L.*, & Liang, Z*. (2021). ABA signaling pathway genes and function during abiotic stress and berry ripening in Vitis vinifera. Gene, 769, 145226. (Q1, Research Article)
6. Wang, Y.#, Zhang, R.#, Liang, Z. *, & Li, S. (2020). Grape-RNA: a database for the collection, evaluation, treatment, and data sharing of grape RNA-Seq datasets. Genes, 11(3), 315. (Q2, Research Article, 共一)
7. Hu, X. # Chen, G. #, Zhang, R. #, Xu, M., Zhao, L., Tang, H., Ni J., & Zhou, M*. (2023). Multi-year QTL maping and RNA-seq reveal candidate genes for early floret-opening time in japonica rice. Agriculture, 13(4), 859. (Q1, Research Article, 共一)