
个人简介
王晓宇,理学博士,博士后。主要从事植物逆境生理与抗逆分子机制研究。综合运用分子生物学与生物信息学手段,系统发掘植物抗逆关键基因家族,重点解析LEA蛋白(脱水素/LEA Ⅲ) 在干旱、低温胁迫中的保护功能与调控网络。主持山东省自然科学基金青年基金及校级引进人才科研启动基金各1项,作为骨干成员参与国家自然科学基金面上及重大科研项目。发表SCI论文10余篇(含中科院一区2篇、二区6篇)。同时主讲多门本科生及研究生核心课程,涵盖《生物化学》《分子生物学》及《基因功能研究技术》等。
研究方向
植物抗逆分子生物学,重点关注植物在干旱、高盐、极端温度等非生物胁迫下的应答机制。
承担项目
1. 山东省自然科学基金青年项目,多身份蛋白TaWRAB18介导糖代谢稳态以增强小麦低温胁迫抗性的分子网络解析,主持。
2. 企业横向项目,细胞抗逆蛋白高效表达系统优化,主持。
3. 山东科技大学科研启动经费,主持。
4. 山东省高等学校青年创新团队发展计划,基于地热能梯度利用的膜集成耦合系统实现高矿化度矿井水脱盐低碳化及杂盐减量化处理研究,参与。
5. 国家自然科学基金重大项目,纤毛结构和功能异常在疾病发生发展过程中的作用,参与。
6. 国家自然科学基金面上项目,小麦不同亚型脱水蛋白WZY1-2、WZY2的干旱应答机制及其功能研究,参与。
个人成果
[1] Fan, Z., Sun, X., Ma, Y., Lu, X., Hong, X., Liu, X., Long, X., Cui, F., Liu, H.*, Wang, X.* (2026). Genome-wide analysis of Ariadne genes associated with drought and salt stress tolerance in wheat (Triticum aestivum L.). BMC Plant Biology. DOI: 10.1186/s12870-026-09416-7.
[2] Su, Y., Zhao, Y., Liu, X., Wang, X.* (2026). Comparative analysis of the PEBP gene family in two Medicago species, focusing on function of MsPEBP11 and MtPEBP3 in response to drought and cold stresses. Plant and soil. DOI: 10.1007/s11104-026-08510-x.
[3] Wang, X.*, Lan, Q., Li, X., Zhao, Y. (2026). Genomic analysis of TIFY genes in two Medicago and insight into MsTF2‑mediated abiotic stress tolerance. Plant Cell Reports. DOI:10.1007/s00299-025-03696-3.
[4] Li, Y., Chen, X., Wang, H., Wang, X.* (2025). Genome-wide analysis of KCS family in Medicago reveals MsKCS5’s crucial role in abiotic stress adaptation. Plant Cell Reports. DOI: 10.1007/s00299-025-03571-1.
[5] Wang, X., Hu, Y., Dong, Y., Zhang, L., Wang, B.* (2025). Abiotic stress-regulated LEA gene mediates the response to drought, salinity, and cold stress in Medicago sativa L. Plant and Cell Physiology. DOI:10.1093/pcp/pcaf020.
[6] Li, Y., Liu, H., Wang, X.*, Wang, B.* (2025). Genome-wide identification and comprehensive analysis of the FtsH gene family in wheat. Molecular Biology Reports. DOI:10.1007/s11033-025-10243-6.
[7] Wang, X., Li, Y., Zhang, L., Wang, B.* (2024). Comprehensive identification of LEA protein family genes and functional analysis of MdLEA60 involved in abiotic stress responses in apple (Malus domestica). International Journal of Biological Macromolecules. DOI: 10.1016/j.ijbiomac.2024.137641.
[8] Wang, X., Liu, H., Li, Y., Zhang, L., Wang, B.* (2024). Heterologous overexpression of Tawzy1-2 gene encoding an SK3 dehydrin enhances multiple abiotic stress tolerance in Escherichia coli and Nicotiania benthamiana. Planta. DOI:10.1007/s00425-023-04328-4.
[9] Wang, X., Liu, H., Yu, Z., Zhu, W., Zhang, L., Wang, B.* (2023). Characterization of wheat Wrab18 gene promoter and expression analysis under abiotic stress. Molecular Biology Reports. DOI:10.1007/s11033-023-08485-3.
[10] Wang, X., Wang, S., Meng, Z., Zhao, C.* (2020). Adrb1 and Adrb2b are the major β-adrenergic receptors regulating body axis straightening in zebrafish. Journal of Genetics and Genomics. DOI: 10.1016/j.jgg.2020.10.009.
招生专业:生物学
邮 箱:wangxiaoyukt69@163.com