基本信息
植物納米生物學抗逆、轉基因與智能植物構建
電子郵件:honghong.wu@mail.hzau.edu.cn
學習及工作經曆
2019.09. – 至今,77779193永利官网,教授
2015.12. – 2019.09.,美國加州大學河濱分校,博士後
2012.11. – 2015.11.,澳大利亞塔斯瑪尼亞大學,哲學博士(農業科學)
2011.09. – 2012.11.,澳大利亞塔斯瑪尼亞大學,助研
2008.09. – 2011.06.,南京農業大學,理學碩士
2004.09. – 2008.06.,江西農業大學,理學學士
研究領域
植物納米生物學在作物抗逆上的應用及機理研究,納米生物學技術介導的作物轉基因,應用納米生物學技術構建智能植物。
學術任職
學術團體兼職
1. 中國化學會農業化學專業委員會青年工作委員會
2. 美國Sigma Xi學會 (Sigma Xi, The Scientific Research Honor Society) 全職會員 (Full membership)
3. 棉花高效種植技術協作研究聯盟議事人
4. 湖北省作物新品種選育與高效栽培技術創新團隊執行首席
SCI期刊編輯
1. Crop Journal (Associate Editor)
2. Functional Plant Biology (Associate Editor)
3. Frontiers in Plant Science (Associate Editor)
4. Journal of Chemistry (Academic Editor)
SCI期刊審稿人
擔任 ACS Nano,Environmental Science & Technology,Chemical Engineering Journal, Environmental Pollution, Plant, Cell & Environment等30多個SCI期刊的審稿人。https://publons.com/author/1323020/honghong-wu#profile
博後招聘
本課題組常年招聘具有納米技術或材料化學、植物分子生物學或生理生化等背景方向博士後, 薪酬22萬元人民币起(http:/info/1059/9817.htm)。應聘者請将材料發送至:honghong.wu@mail.hzau.edu.cn,郵件标題請注明“應聘博士後_姓名_最後學習或工作單位”。郵件中附件格式為PDF。
1. 國家青年人才項目,主持
2. 國家自然科學基金面上項目,主持
3. 國家自然科學基金青年基金,主持
4. 77779193永利官网-中國農業科學院深圳農業基因組所聯合項目,主持
5. 77779193永利官网優秀人才培育項目,主持
6. 77779193永利官网新進高層次人才科研啟動項目,主持
7. 茶學生物學與資源利用國家重點實驗室開放基金,主持
授權及申請專利
1. Giraldo J.P., Wu H, Tito N. Nanoceria augmentation of plant photosynthesis under abiotic stress. U.S. provisional patent (US Application patent, publication number: US20170367325A1) (citations, 1)
2. Giraldo JP, Hu P, Santana I, Newkirk G, Wu H. Compositions and methods for chloroplast genetic and biochemical bioengineering in planta. US provisional patent. Filed December11, 2017
3. 黃明, 沈文飚, 吳洪洪, 肖笑, 周興虎, 何健, 周光宏. 與CP4-EPSPS蛋白發生特異性抗原抗體反應的多克隆抗體及其應用。專利号:ZL 201010225353.3
4. 沈文飚, 黃明, 吳洪洪, 肖笑, 周興虎, 何健, 周光宏. 檢測轉Cp4-epsps基因大豆及其深加工産品中轉基因成份的方法及試劑盒。專利号:ZL 201010249480.7
學術獲獎情況
1. 第五屆中國科協優秀科技論文遴選計劃農林集群優秀論文三等獎
2. 2018年度美國加州大學河濱分校CEBCEP中心“年度最佳博士後”
3. 2015年度“國家優秀自費留學生獎學金”獎勵
近五年代表性論文及著作
1. Liu J, Li G, Chen L, Gu J, Wu H*, Li Z. (2021) Cerium oxide nanoparticles improve cotton salt tolerance by enabling better ability to maintain cytosolic K+/Na+ ratio. Journal of Nanobiotechnology 19:153
2. Khan MN, Li Y, Khan Z, Chen L, Liu J, Wu H*, Li Z*. (2021) Nanoceria seed priming enhanced salt tolerance in rapeseed through modulating ROS homeostasis and α-amylase activities. Journal of Nanobiotechnology 19: 276.
3. Wu H*, Li Z*. (2021) Recent advances in nano-enabled agriculture for improving plant performance. Crop Journal doi: 10.1016/j.cj.2021.06.002.
4. Zhou H#, Wu H#, Xie Y, Shen WB*, Giraldo JP*. (2021) Cerium oxide nanoparticles improve salinity tolerance in rice through nitrate reductase nia2 mediated production of nitric oxide. Environmental Science: Nano doi: 10.1039/D1EN00390A
5. Wu H#, Nißler R#, Morris V, Herrmann N, Hu P, Jeon SJ, Kruss S*, Giraldo JP*. (2020) Monitoring plant health with near infrared fluorescent H2O2 nanosensors. Nano Letters 20: 2432-2442.
6. Zhao L*, Lu L, Wang A, Zhang H, Huang M, Wu H*, Xing B, Wang Z, Ji R. (2020) Nano-biotechnology in agriculture: Use of nanomaterials to promote plant growth and stress tolerance. Journal of Agricultural and Food Chemistry 68: 1935-1947.
7. Giraldo JP*, Wu H, Newkirk G, Kruss S. (2019) Nanobiotechnology approaches for engineering smart plant sensors. Nature Nanotechnology 14: 541-553. (主編特邀綜述)
8. Wu H*, Shabala L, Zhou M, Su N, Wu Q, Ul-Haq T, Juan Zhu, Mancuso S, Azzarello E, Shabala S.* (2019) Root vacuolar Na+ sequestration but not exclusion from uptake is associated with salinity stress tolerance in barley. Plant Journal 100: 55-67.
9. Wu H, Shabala L, Shabala S, Giraldo JP*. (2018) Hydroxyl radical scavenging by cerium oxide nanoparticles improves Arabidopsis salinity tolerance by enhancing leaf mesophyll potassium retention. Environmental Science: Nano 5: 1567-1583.
10. Li J#, Wu H#, Santana I, Fahlgren M, Giraldo JP*. (2018) Standoff optical glucose sensing in photosynthetic organisms by a quantum dot fluorescent probe. ACS Applied Materials & Interfaces 10: 28279-28289.
11. Wu H, Shabala L, Azzarello E, Huang Y, Pandolfi C, Su N, Wu Q, Cai S, Bazihizina N, Wang Lu, Zhou M, Mancuso S, Chen Z, Shabala S*. (2018) Na+ extrusion from the cytosol and tissue-specific Na+ sequestration in roots confer differential salt stress tolerance between durum and bread wheat. Journal of Experimental Botany 69: 3987–4001.
12. Wu H*. (2018) Plant salt tolerance and Na+ sensing and transport. The Crop Journal 6: 215–225.
13. Wu H, Tito N, Giraldo JP*. (2017) Anionic cerium oxide nanoparticles protect plant photosynthesis from abiotic stress by scavenging reactive oxygen species. ACS Nano 11: 11283-11297.