副教授(按拼音排序)

刘卓林

刘卓林/Zhuolin LIU

博士、校聘副教授

Email: zlliu@hnust.edu.cn

ORCID: https://orcid.org/0000-0001-5417-8072

学习和工作经历:

2025.07至今 ray雷竞技 校聘副教授

2019.09-2025.06 中国科学院遗传与发育生物学研究院 遗传学 硕士/博士

2015.09-2019.06 湖南师范大学 生物科学 本科

主要研究领域与兴趣:

1)细胞壁多糖结构解析:以湘莲等植物为研究对象,挖掘不同组织器官中的细胞壁多糖结构差异。

2)天然多糖生物学活性:研究植物天然多糖包括代谢调节、抗炎、抗氧化以及肠道菌群调控(益生元)等生物学活性。

5年发表论文

1. Xu, R#., Liu, Z#., Wang, X., Zhou, Y., & Zhang, B.* (2023). Xylan clustering on the pollen surface is required for exine patterning. Plant Physiology, 194(1), 153–167.

2. Wen, Z., Xu, Z., Zhang, L., Xue, Y., Wang, H., Jian, L., Ma, J., Liu, Z., Yang, H., Huang, S., Kang, X., Zhou, Y., & Zhang, B.* (2025). XYLAN O-ACETYLTRANSFERASE 6 promotes xylan synthesis by forming a complex with IRX10 and governs wall formation in rice. The Plant Cell, 37(1), koae322.

3. Ge, F., Wei, H., Zhang, W., Mei, C., Gao, Y., Yang, H., Wang, X., Cao, J., Liu, Z., Shi, J., Xia, R., Zhao, K., Tang, S., Teng, K., Zhong, J., Yang, F., Zhang, B., Zhou, Y., Yu, F., Wu, Y., & Xie, Q.* (2025). Vascular-tissue-specific expression of an endo-1,4-β-xylanase enhances forage efficacy of sweet sorghum silage. Molecular Plant, 18(8), 1241-1244.

4. Liu, Z., Xie, J., Deng, Z., Wang, M., Dang, D., Luo, S., Wang, Y., Sun, Y., Xia, L., & Ding, X.* (2020). Enhancing the insecticidal activity of new Bacillus thuringiensis X023 by copper ions. Microbial Cell Factories, 19, 195.

5. Zhou, F., Zhou, P., Xie, J., Zeng, Y., Zhu, C., Huang, S., Xia, L., Zhang, T., Zhao, X., Yi, Z., Liu, Z., Lu, J., Quan, M., & Ding, X.* (2020). Effects of SpoIVA on the formation of spores and crystal protein in Bacillus thuringiensis. Microbiological Research, 239, 126523.

Brief introduction to Dr. Zhuolin LIU:

Dr. Zhuolin LIU works at Hunan University of Science and Technology, specializing in plant cell wall polysaccharide structure and the biological activities of natural polysaccharides. He earned his B.Sc. from Hunan Normal University in 2019 and his Ph.D. in Genetics from the Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, in 2025. His research focuses on elucidating structural differences of cell wall polysaccharides in various plant tissues, particularly in Nelumbo nucifera (sacred lotus), and exploring their roles in metabolic regulation, anti-inflammatory and antioxidant functions, and gut microbiota modulation.