2019.09. – 至今,华中农业大学植物科学技术学院,教授 2015.12. – 2019.09.,美国加州大学河滨分校,博士后 2012.11. – 2015.11.,澳大利亚塔斯玛尼亚大学,哲学博士(农业科学) 2011.09. – 2012.11.,澳大利亚塔斯玛尼亚大学,助研 2008.09. – 2011.06.,南京农业大学,理学硕士 2004.09. – 2008.06.,江西农业大学,理学学士
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)
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
黄明, 沈文飚, 吴洪洪, 肖笑, 周兴虎, 何健, 周光宏. 与CP4-EPSPS蛋白发生特异性抗原抗体反应的多克隆抗体及其应用。专利号:ZL 201010225353.3
沈文飚, 黄明, 吴洪洪, 肖笑, 周兴虎, 何健, 周光宏. 检测转Cp4-epsps基因大豆及其深加工产品中转基因成份的方法及试剂盒。专利号:ZL 201010249480.7
学术获奖情况
2018年度美国加州大学河滨分校CEBCEP中心“年度最佳博士后”
2015年度“国家优秀自费留学生奖学金”奖励
Giraldo JP*, Wu H, Newkirk G, Kruss S. (2019) Nanobiotechnology approaches for engineering smart plant sensors. Nature Nanotechnology 14: 541-553. (主编特邀综述)
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.
Wu H*, Li Z*. (2019) The importance of Cl− exclusion and vacuolar Cl− sequestration: revisit the role of chloride transport in plant salt tolerance. Frontiers in Plant Science (doi: 10.3389/fpls.2019.01418)
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.
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.
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.
Wu H#,*, Zhang X#, Giraldo JP, Shabala S*. (2018) It is not all about the sodium: revealing tissue specificity and signaling role of potassium in plant responses to salt stress. Plant and Soil 431: 1–17.(特邀“Marschner”综述)
Wu H*. (2018) Plant salt tolerance and Na+ sensing and transport. The Crop Journal 6: 215–225.
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.
Wu H, Shabala L, Liu X, Azzarello E, Pandolfi, C, Zhou M, Chen, ZH, Bose J, Mancuso S, Shabala S*. (2015) Linking salinity stress tolerance tissue-specific Na+ sequestration in wheat roots. Frontiers in Plant Science 6: 71.
Wu H, Zhu M, Shabala L, Zhou M, Shabala S*. (2015) K+ retention in leaf mesophyll, an overlooked component of salinity tolerance mechanism: a case study for barley. Journal of Integrative and Plant Biology 57: 171–185.
Wu H, Shabala L, Zhou M, Shabala S*. (2014) Durum and bread wheat differ in their ability to retain potassium in leaf mesophyll: implications for salinity stress tolerance. Plant and Cell Physiology 55: 1749–1762.