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姓 名:
叶清
性    别:
男
职 务:
职    称:
研究员
学 历:
博士
通讯地址:
广州市天河区兴科路723号华南植物园
电 话:
020-85231022
邮政编码:
510650
传 真:
电子邮件:
qye@scbg.ac.cn
简历:

2010年4月加入华南植物园 入选中科院百人计划
2008年2月至2010年4月比利时鲁汶大学生物学院 欧盟项目科学家
2006年3月至2008年2月美国哈佛大学有机与进化生物系 博士后
2006年3月德国拜罗伊特大学植物生态系 博士学位
2001年7月中国农业大学生物学院 硕士学位
1997年7月江西农业大学林学院 学士学位
 
       

研究领域:
    探讨全球变化和退化生态系统植被恢复过程中植物水分关系对环境变化的应答和调控机制。 重点研究(1)植物水分吸收,  运输和利用的分子机理以及细胞膜水通道蛋白(aquaporins; AQPs)的调控作用; (2)不同演替/恢复阶段森林植物水分关系及其对全球变化的反馈作用;(3)基于植物水分关系的特点, 探讨森林植物群落演替的内在机制, 为退化生态系统的恢复和重建提供理论依据。
社会任职:

获奖及荣誉:
代表论著:
1. Heinen R.,* Ye Q.* and Chaumont F. (2009) Role of aquaporins in leaf physiology. Journal of Experimental Botany 60, 2971-2985 (*equal contribution authors).
2. Moshelion M., Hachez C., Ye Q., Cavez D., Bajji M., Jung R. and Chaumont F. (2009) Membrane water permeability and aquaporin expression increase during growth of maize suspension cultured cells. Plant Cell and Environment 32, 1334-1345.
3. Gorska A., Ye Q., Holbrook N.M. and Zwieniecki M.A. (2008) Nitrate control of root hydraulic properties in plants: translating local information to whole plant response. Plant Physiology 148, 1159–1167.
4. Ye Q., Holbrook N.M. and Zwieniecki M.A. (2008) Cell-to-cell pathway dominates the xylem-epidermis hydraulic connection in Tradescantia fluminensis (Vell. Conc.) leaves. Planta 227, 1311–1319.
5. Kim Y.M., Ye Q., Reinhardt H. and Steudle E. (2006) Further quantification of the role of internal unstirred layers during the measurement of transport coefficients in giant internodes of Chara by a new stop-flow technique. Journal of Experimental Botany 57, 4133–4144.
6. Ye Q., Kim Y.M. and Steudle E. (2006) A re-examination of the role of unstirred layers (USLs) during the measurement of transport coefficients in Chara with the cell pressure probe: minor role of USLs. Plant Cell and Environment 29, 964–980.
7. Ye Q. and Steudle E. (2006) Oxidative gating of water channels (aquaporins) in corn roots. Plant Cell and Environment 29, 459–470.
8. Ye Q., Muhr J. and Steudle E. (2005) A cohesion/tension model for gating of aquaporins allows estimation of water channel pore volumes in Chara. Plant Cell and Environment 28, 525–535.
9. Ye Q., Wiera B. and Steudle E. (2004) A cohesion/tension mechanism explains the gating of water channels (aquaporins) in Chara internodes by high concentration. Journal of Experimental Botany 55, 449–461.
10. Henzler T., Ye Q. and Steudle E. (2004) Oxidative gating of water channels (aquaporins) in Chara by hydroxyl radicals. Plant Cell and Environment 27, 1184–1195.
11. Zhao C.X., Deng X.P., Zhang S.Q., Ye Q., Steudle E. and Shan L. (2005) Advances in the studies on water uptake by plant roots. Acta Botanica Sinica 46, 505–514.
12. Zhao CX, Deng XP, Shan L, Steudle E, Zhang SQ, Ye Q. (2005). Changes in root hydraulic conductivity during wheat evolution. Journal of integrative plant biology.47: 302-310. 
13. Ye Q., Zhu G.L. and Lou C.H. (2003) Effects of the disaggregation of high-polymerized particles in guard cell vacuoles on osmoregulation of stomatal opening. Chinese Science Bulletin 48, 453–456.
14. Zhu G.L., Zhu M.J., Ye Q., Li S., Zhu R., Cao Y., Chen J. and Wang X.C. (2002) Linear relation   between cell growth and water channels conducted Lp in Nitellopsis. Plant Biology 4, 464–473.
15. Zhu G.L., Zhu R., Zhou W., Ye Q., Chen Z.L. and Yuan M. (2000) Both intact microfilaments and cortical microtubules are involved in the maintenance of the growth rate of internodal cells of Nitellopsis. Plant Biology 2, 195–203.

 

 

叶清

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