
周爱民
博士,教授,博士生导师
电话:18686889630
邮箱:aiminzhou@neau.edu.cn
研究方向:观赏园艺作物育种
教育经历:
2010.9--2014.12 东北林业大学 生物化学与分子生物学 博士
2007.--92010.8 东北农业大学 园林植物与观赏园艺 硕士
2003.9--2007.7 东北农业大学 园林 学士
工作经历:
2025.9--至今 东北农业大学 教授
2019.9--2025.8 东北农业大学 副教授
2015.9--2019.8 东北农业大学 讲师
主持项目:
1) 黑龙江省龙江科技英才春雁支持计划(青年英才).寒地观赏园艺作物优异种质创制与分子育种.(CYQN24018).2025.02.14--2028.02.13.经费:200万元,主持(1/5).在研.
2) 国家自然科学基金(面上项目).尖叶石竹捕光复合物蛋白DsSep2参与叶绿素代谢与叶色调控的分子机制.(32172619).2022.01.01--2025.12.31.经费:59万元,主持(1/8).结题.
3) 国家自然科学基金(青年基金).尖叶石竹表皮蜡质合成基因的耐旱调控机理研究.(31902052).2020.01.01--2022.12.31.经费:24万元,主持(1/1).已结题.
4) 黑龙江省自然科学基金(优秀青年基金).表皮蜡质合成基因CER1调控尖叶石竹耐旱性的分子机制研究.(YQ2020C006).2020.07.01--2023.07.01.经费:10万元,主持(1/11).已结题.
5) 黑龙江省博士后落户科研启动基金.侧金盏花极端低温开花调控分子机制研究. (LBH-Q19004).2020.01.01--2021.12.31.经费:10万元,主持(1/1).已结题.
6) 东北农业大学东农学者计划“学术骨干”项目. 尖叶石竹抗逆功能基因克隆、鉴定及其对香石竹的遗传改良应用.(18XG08). 2019.01.01--2021.12.31. 经费: 10万元,主持(1/1).已结题.
7) 黑龙江省自然科学基金(面上项目). 液泡型H+-ATPase d亚基基因在植物生长中的功能研究.(C2016024). 2016.07.01--2019.07.01. 经费: 6万元,主持(1/6).已结题.
8) 中国博士后基金. 盐胁迫下V-H+-ATPase活性对植物根Na+外排的影响研究. (2016M601409).2016.09.01--2018.08.31. 经费: 5万元,主持(1/1).已结题.
9) 黑龙江省博士后经费资助.V-ATPase d亚基基因在植物生长及逆境胁迫中的功能分析.(LBH-Z16024).2017.01.01--2018.12.31. 经费: 7万元, 主持(1/1).已结题.
发表论文(通讯作者):
1) Fu WT#, Li ZM#, Zhai X, Zhang HZ, Feng S*, Zhou AM*. (2026). Golden leaf formation of Populus nigra is associated with the up-regulation of Stay-Green expression. Molecular Horticulture, 6: 22. https://doi.org/10.1186/s43897-025-00204-9. (SCI, IF:8.1, 二区)
2) Zhang HH#, Zhang HZ#, Qiao SY, Ren LL, Feng S, Wang JG*, Zhou AM*. (2026). The Dianthus spiculifolius chlorophyll-binding protein DsSep2 can be used as a genetic resource to create ‘golden leaf’ plants. Journal of Plant Physiology, 320: 154764. https://doi.org/10.1016/j.jplph.2026.154764. (SCI, IF:4.1, 二区)
3) Pang AQ, Liu YJ, Ma KM, Qiu YZ, Zhang HZ, Wang YK, Liu XL*, Wang Y*, Zhou AM*. (2025). The absorption, immobilization, and response mechanism of Leymus chinensis to microplastics and nanoplastics. Journal of Hazardous Materials, 499: 140335. https://doi.org/10.1016/j.jhazmat.2025.140335. (SCI, IF:11.3, 一区TOP)
4) Wu J, Sun MT, Pang AQ, Ma KM, Hu XF, Feng S, Wang Y*, Zhou AM*. (2025). Succinic acid synthesis regulated by succinyl-coenzyme A ligase (SUCLA) plays an important role in root response to alkaline salt stress in Leymus chinensis. Plant Physiology and Biochemistry, 220: 109485. https://doi.org/10.1016/j.plaphy.2025.109485. (SCI, IF:5.7, 二区TOP)
5) Jiang YH#, Li ZM#, Fu WT, An BJ, Nan GX, Zhang HZ, Feng S*, Zhou AM*. (2025). Plasma membrane H+-ATPase 4 plays an important role in Salix linearistipularis root response to alkaline salt stress. Plant Physiology and Biochemistry, 229: 110707. https://doi.org/10.1016/j.plaphy.2025.110707. (SCI, IF:5.7, 二区TOP)
6) Sun MT#, Tan GY#, Hu XF, Wu J, Wang HY, Feng S, Zhuang X, Wang Y*, Zhou AM*. An increase in the proportion of β-diketone epicuticular wax is a beneficial variant trait for drought tolerance in Leymus chinensis. Physiologia Plantarum, 177: e70496. https://doi.org/10.1111/ppl.70496. (SCI, IF:3.6, 二区)
7) Fu S#, Chen XW#, Jiang YH#, Dai SY, Zhang HZ, Feng S*, Zhou AM*. (2025). Characterization of the Na+-preferential transporter HKT1.1 from halophyte shrub Salix linearistipularis. Physiology and Molecular Biology of Plants,31:823-833.https://doi.org/10.1007/s12298-025-01605-2. (SCI, IF:3.3, 三区)
8) Wang D#, Zhang HF#, Hu XF, Zhang HZ, Feng S*, Zhou AM*. (2024). Cell number regulator 8 from Salix linearistipularis enhances cadmium tolerance in poplar by reducing cadmium uptake and accumulation. Plant Physiology and Biochemistry, 206: 108216. https://doi.org/10.1016/j.plaphy.2023.108216. (SCI, IF:5.7, 二区TOP)
9) Wang D#, Chen XW#, Hu XF, Wu J, Tan GY, Feng S, Zhou AM*. (2024). Overexpression of Leymus chinensis vacuole transporter NRAMP2 in rice increases Mn and Cd accumulation. Plant Stress,11:100344.https://doi.org/10.1016/j.stress.2023.100344. (ESCI, IF:6.9, 二区)
10) Chao DH, Zhai X, Ren LL, Fu S, Zhang J, Feng S, Zhang HZ*, Zhou AM*. (2024). Chlorophyll-binding protein AtSep2 overexpression causes leaf yellowing and enhances tolerance to high light stress in poplar. Ornamental Plant Research, 4: e018. https://doi.org/10.48130/opr-0024-0016. (ESCI, IF:2.5)
授权专利:
国家发明专利:一种拟南芥捕光色素结合蛋白AtSep2基因及其应用、蛋白质、重组载体和方法