管清美

管清美

管清美,女,博士,西北農林科技大學教授,入選第十一批國家青年人才項目、陝西省第八批“百人計畫”;獲批國家自然科學基金優秀青年科學基金項目、陝西省青年科技新星項目。

基本介紹

  • 中文名:管清美
  • 職業:教師
  • 畢業院校:美國馬里蘭大學 
  • 學位/學歷:博士
  • 專業方向:植物學
  • 任職院校:西北農林科技大學
主要經歷,研究方向,科研項目,學術論著,

主要經歷

2002年畢業於西北農林科技大學果樹專業,獲農學學士學位;
2005年畢業於西北農林科技大學果樹專業,獲碩士學位;
2005年-2008年在蚌埠學院任助教、講師;
2013年畢業於美國馬里蘭大學植物學專業,獲博士學位;
2013-2014年在美國馬里蘭大學進行博士後研究工作;
2014年到西北農林科技大學園藝學院工作。

研究方向

蘋果耐非生物逆境(乾旱、低溫)的分子機制;蘋果基因組學;蘋果基因組設計育種。

科研項目

“蘋果矮化自根砧抗逆的分子機理及抗性改良”, 西北農林科技大學引進人才科研啟動項目(2014-2019)
蘋果砧木耐旱關鍵小RNA的鑑定與分析,陝西省青年科技新星項目(2015-2017)
秦冠蘋果一個鋅指蛋白(MdZFP1)在乾旱脅迫下的功能分析,國家自然科學基金面上項目(31572106 ,2016-2019)
蘋果蛋白質降解相關蛋白在乾旱脅迫中的作用,西北農林科技大學優青培育專項(2015-2017)
蘋果耐旱的分子機制研究,國家青年人才計畫項目(2016-2018)
蘋果逆境分子生物學,國家自然科學基金優秀青年科學基金(2017-2019)

學術論著

1.Geng, D., Chen, P., Shen, X., Zhang, Y., Li, X., Jiang, L., Xie, Y., Niu, C., Zhang, J., Huang, X., Ma, F., Guan, Q*. (2018). MdMYB88 and MdMYB124 Enhance Drought Tolerance by Modulating Root Vessel and Cell Wall in Apple. Plant Physiology.
2.Xie, Y., Chen, P., Yan, Y., Bao, C., Li, X., Wang, L., Shen, X., Li, H.; Liu, X., Niu, C., Zhu, C., Fang, N., Shao, Y., Zhao, T., Yu, J., Zhu, J., Xu, L., van Nocker, S., Ma, F., Guan, Q*. (2018). An Atypical R2R3 MYB Transcription Factor Increases Cold Hardiness by CBF-Dependent and CBF-Independent Pathways in Apple. New Phytologist. 218(1):201-218.
3.Xu, J., Zhou, S., Gong, X., Song, Y., van Nocker, S., Ma, F.*, Guan, Q*. (2018). Single-base methylome analysis reveals dynamic epigenomic differences associated with water deficit in apple. Plant Biotechnology Journal. 16(2):672-687.
4.Li, X. #, Kui, L. #, Zhang, J., Xie, Y., Wang, L., Yan, Y., Wang, N., Xu, J., Li, C., Wang, W., van Nocker, S., Dong, Y. *, Ma, F. *, and Guan, Q*. (2016). Improved hybrid de novo genome assembly of domesticated apple (Malus x domestica). Gigascience. 5(1):35.
5.Zhou, S. #, Li, M. #, Guan, Q., Liu, F., Zhang F., Chen, W., Yin, L., Qin, Y., and Ma, F*. (2015) Physiological and proteome analysis suggest critical roles for the photosynthetic system for high water-use efficiency under drought stress in Malus. Plant Science. 236:44-60.
6.Zhan X*, Qian B, Cao F, Wu W, Yang L, Guan Q, Gu X, Wang P, Okusolubo TA, Dunn SL, Zhu JK, Zhu, J*. (2015). An Arabidopsis PWI and RRM motif-containing protein is critical for pre-mRNA splicing and ABA responses. Nature Communications. 6:8139.
7.Guan, Q., Yue, X., Zeng, H., and Zhu, J*. (2014). The protein phosphatase and its interacting partner NAC019 are required for heat stress-responsive gene regulation and thermotolerance in Arabidopsis. Plant Cell. 26(1):438-453.
8.Guan, Q., Wu, J., Yue, X., Zhang, Y., and Zhu, J*. (2013). A nuclear calcium-sensing pathway is critical for gene regulation and salt stress tolerance in Arabidopsis. PLoS Genetics. 9(8): e1003755.
9.Guan, Q., Wu, J., Zhang, Y., Jiang, C., Liu, R., Chai, C., and Zhu, J*. (2013). A DEAD box RNA helicase is critical for pre-mRNA splicing, cold-responsive gene regulation, and cold tolerance in Arabidopsis. Plant Cell. 25: 342-356.
10.Guan, Q., Lu, X., Zeng, H., Zhang, Y., and Zhu, J*. (2013). Heat stress induction of miR398 triggers a regulatory loop that is critical for thermotolerance in Arabidopsis. Plant Journal. 74: 840-851.
11.Guan, Q., Wen, C., Zeng, H., and Zhu, J*. (2013). A KH domain-containing putative RNA-binding protein is critical for heat stress-responsive gene regulation and thermotolerance in Arabidopsis. Molecular Plant. 6: 386-395.
12.Li, W.#, Guan, Q.# (co-first author), Wang, Z.-Y., Wang, Y., and Zhu, J*. (2013). A bi-functional xyloglucan galactosyltransferase is an indispensable salt stress tolerance determinant in Arabidopsis. Molecular Plant. 6: 1344-1354.
13.Lu, X., Guan, Q., and Zhu, J*. (2013). Downregulation of CSD2 by a heat-inducible miR398 is required for thermotolerance in Arabidopsis. Plant Signaling & Behavior. 8(8). pii: e24952.
14.Jeong, S.I., Fukudome, A., Aksoy, E., Bang, W.Y., Kim, S., Guan, Q., Bahk, J.D., May, A.K., Russell, W.K., Zhu, J., Koiwa, H*. (2013). Regulation of Abiotic Stress Signaling by Arabidopsis C-terminal Domain Phosphatase-like 1 Requires Interaction with a K-homology Domain-containing Protein. PLoS ONE. 8(11):e80509.

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