郭家选,女,博士(后),博士、硕士研究生导师,教授。生物与资源环境学院,资源与环境系。主讲《水资源利用与管理》、《普通生态学》、《环境监测》、《农业资源与有害生物调查及评价》等课程。完成国家基金项目、国家科技支撑、国家水专项、国家科研院所社会公益项目、生物多样性保护重大工程等课题20多项,发表学术论文60余篇,撰写专著1部。获得北京市科委自然科学二等奖1项。
研究方向:
主要从事作物水肥高效利用、农田生态系统土壤-植物-大气连续体水碳热量交换传输过程及生物多样性资源调查与保护领域研究。
1、主持国家自然科学基金面上项目:草莓干旱响应中ABA参与Put向Spd/Spm转化的分子机制
2、主持国家自然科学基金面上项目:多胺与脱落酸协同调控草莓节水和果实品质形成的机制研究(32072516)
3、主持国家自然科学基金重点项目子课题:非呼吸跃变型果实成熟的信号转导机制及品质调控
4、主持北京市自然基金-市教委联合资助科技项目:多胺调控草莓节水及果实品质形成的生理与分子机制
5、主持国家基金项目面上项目:水分调控草莓果实品质与产量的生理及分子机制(31471837)
6、主持生态环境部生物多样性保护专项:延庆区野生高等植物物种多样性本底调查与评估
7、主持生态环境部生物多样性保护专项:北京市门头沟区野生高等植物物种多样性本底调查与评估
8、主持生态环境部生物多样性保护专项:北京百花山珍稀濒危植物调查与观测
9、主持国家“十一五”水专项:“典型村镇饮用水安全保障适用技术研究与示范”
10、主持国家“十二五”科技支撑项目子课题:华北地区小麦-玉米两熟作物及马铃薯抗旱集成技术研究
11、主持国家自然科学基金项目:定量评价气孔调节大田作物的节水潜力(31040006)
1、2020年获北京市科委自然科学二等奖(3/8):脱落酸调控非呼吸跃变型果实成熟的生理及分子机制
1、Gao F, LI JY, Li WJ, Shi S, Song SH, Shen YY,Guo JX*.Abscisic acid and polyamines coordinately regulate strawberry drought responses[J]. Plant Stress, 2024, 11:100387. ( SCI,IF=6.28;)
2、Gao F,Guo JX*, Shen YY*. Advances from chlorophyll biosynthesis to photosynthetic adaptation, evolution and signaling[J]. Plant Stress, 2024, 12:100470.(SCI,IF=6.28)
3、Chen XX, Gu XJ, Gao F,Guo JX*,Shen YY*. The protein kinase FvRIPK1 regulates plant morphogenesis by ABA signaling using seed genetic transformation in strawberry[J]. Frontiers in Plant Science, 2022, 13:1026571.( SCI,IF=5.753)
4、Wang QH﹟, Gao F﹟, Chen XX, Wu WJ, Wang L, Shi JL, Huang Y, Shen YY, Wu GL,Guo JX*. Characterization of key aroma compounds and regulation mechanism of aroma formation in local Binzi (Malus pumila× Malus asiatica) fruit[J]. BMC Plant Biology, 2022, 22(1): 532.( SCI, IF=5. 3)
5、Gao F, Mei XR, Li YZ,Guo JX*and Shen YY. Update on the roles of polyamines in fleshy fruit ripening, senescence, and quality[J]. Frontiers in Plant Science, 2021, 12:610313.
6、Mo A, Xu T, Bai Q, Shen Y Y, Gao F*,Guo J X*. FaPAO5 regulates Spm/Spd levels as a signaling during strawberry fruit ripening.Plant Direct. 2020, 4(5): e00217
7、Gao F, Mei XR, Li YZ,Guo JX*, Shen Y Y*. Update on the roles of polyamines in fleshy fruit ripening, senescence, and quality.Front Plant Sci. 2021, 12:610313.
8、Guo J X#*, Wang S F#, Yu X Y, Dong R, Li Y Z, Mei X R, Shen Y Y*. Polyamines Regulate Strawberry Fruit Ripening by Abscisic Acid, Auxin, and Ethylene.Plant Physiology, 2018, 177(1): 339-351.(SCI,IF=6.456)
9、Wang SF#, Song MY#,Guo JX#,Huang Y, Zhang F, Xu C, Xiao YH, Zhang LS*. The potassium channel FaTPK1 plays a critical role in fruit quality formation in strawberry (Fragaria×ananassa).Plant Biotechnology Journal, 2017, 16(3):737-748.(SCI,IF=7.773)
10、Wang Q H#, Zhao C#, Zhang M#, Li YZ, Shen YY*,Guo JX*. Transcriptome analysis around the onset of strawberry fruit ripening uncovers an important role of oxidative phosphorylation in ripening.Scientific Reports, 2017, 7: 41477.(SCI,IF= 4.122)
11、Zhao C#, Hua L N#, Liu XF#, Li Y Z, Shen Y Y *,Guo J X*. Sucrose synthase FaSS1 plays an important role in the regulation of strawberry fruit ripening.Plant Growth Regulation, 2017, 81:175–181.(SCI,IF=2.081)
12、Hua L N#, Zang M#, Wang SF#, Li Y Z, Shen Y Y,Guo J X*. Cloning, silencing, and prokaryotic expression of strawberry sucrose synthase gene FaSus1.The Journal of Horticultural Science and Biotechnology, 2016, 92:1-6.(SCI,IF=0.715)
13、Ouyang, Z. P., Mei, X. R., Li, Y. Z., & Guo, J. X (通讯作者) . Measurements of water dissipation and water use efficiency at the canopy level in a peach orchard. Agricultural Water Management, 2013, 129(6), 80–86. (SCI,IF=2.203)