ติดตาม
Honghong Wu
ชื่อ
อ้างโดย
อ้างโดย
ปี
Nanobiotechnology in Agriculture: Use of Nanomaterials To Promote Plant Growth and Stress Tolerance
L Zhao*, L Lu, A Wang, H Zhang, M Huang, H Wu*, B Xing, Z Wang, R Ji
Journal of Agricultural and Food Chemistry 68 (7), 1935-1947, 2020
5762020
Nanobiotechnology approaches for engineering smart plant sensors
Giraldo* JP, H Wu, Newkirk GM, Kruss S
Nature Nanotechnology 14 (6), 541-553, 2019
5042019
Anionic Cerium Oxide Nanoparticles Protect Plant Photosynthesis from Abiotic Stress by Scavenging Reactive Oxygen Species
H Wu, N Tito, JP Giraldo*
ACS Nano 11 (11), 11283-11297, 2017
3982017
Nanoparticle Charge and Size Control Foliar Delivery Efficiency to Plant Cells and Organelles
P Hu, J An, MM Faulkner, H Wu, Z Li, X Tian, JP Giraldo
ACS nano 14 (7), 7970-7986, 2020
3352020
It is not all about sodium: revealing tissue specificity and signalling roles of potassium in plant responses to salt stress
H Wu#*, X Zhang#, JP Giraldo, S Shabala*
Plant and Soil 431, 1-17, 2018
3282018
Plant salt tolerance and Na+ sensing and transport
H Wu*
The Crop Journal 6 (3), 215-225, 2018
2662018
Hydroxyl radical scavenging by cerium oxide nanoparticles improves Arabidopsis salinity tolerance by enhancing leaf mesophyll potassium retention
H Wu, L Shabala, S Shabala, JP Giraldo*
Environmental Science: Nano 5 (7), 1567-1583, 2018
2492018
Salt stress sensing and early signalling events in plant roots: current knowledge and hypothesis
S Shabala*, H Wu, J Bose
Plant Science 241 (12), 109-119, 2015
2242015
Monitoring Plant Health with Near Infrared Fluorescent H2O2 Nanosensors
H Wu#, R Nißler#, V Morris, N Herrmann, P Hu, SJ Jeon, S Kruss*, ...
Nano Letters 20 (4), 2432-2442, 2020
2052020
Cell-type specific H+-ATPase activity enables root K+ retention and mediates acclimation to salinity
Shabala L, Zhang J, Pottosin I, Bose J, Zhu M, Fuglsang AT, Velarde-Buendia ...
Plant Physiology 172 (4), 2445-2458, 2016
191*2016
Emerging Investigator Series: Molecular mechanisms of plant salinity stress tolerance improvement by seed priming with cerium oxide nanoparticles
J An, P Hu, F Li, H Wu, Y Shen, J White, X Tian, Z Li, JP Giraldo
Environmental Science: Nano, 2020
1792020
K+ retention in leaf mesophyll, an overlooked component of salinity tolerance mechanism: a case study for barley
H Wu, M Zhu, L Shabala, M Zhou, S Shabala*
Journal of integrative plant biology 57 (2), 171-185, 2015
1672015
Targeted delivery of nanomaterials with chemical cargoes in plants enabled by a biorecognition motif
I Santana, H Wu, P Hu, JP Giraldo
Nature Communications 11, 2045, 2020
1652020
Linking salinity stress tolerance with tissue-specific Na+ sequestration in wheat roots
Honghong Wu, Lana shabala, Xiaohui Liu, Elisa Azzarello, Camilla Pandolfi ...
Frontiers in Plant Science 6, 71, 1-13, 2015
1342015
Cerium oxide nanoparticles improve cotton salt tolerance by enabling better ability to maintain cytosolic K+/Na+ ratio
J Liu, G Li, L Chen, J Gu, H Wu*, Z Li
Journal of Nanobiotechnology 19 (1), 1-16, 2021
1292021
Nano-enabled agriculture: how do nanoparticles cross barriers in plants?
H Wu*, Z Li*
Plant Communications, 100346, 2022
1282022
Ability of leaf mesophyll to retain potassium correlates with salinity tolerance in wheat and barley
H Wu, L Shabala, K Barry, M Zhou, S Shabala*
Physiologia plantarum 149 (4), 515-527, 2013
1252013
Recent advances in nano-enabled agriculture for improving plant performance
H Wu*, Z Li*
The Crop Journal, 2022
1192022
Seed priming with gibberellic acid and melatonin in rapeseed: Consequences for improving yield and seed quality under drought and non-stress conditions
MN Khan, Z Khan, T Luo, J Liu, M Rizwan, J Zhang, Z Xu, H Wu, L Hu
Industrial Crops and Products 156, 112850, 2020
1042020
ROS Homeostasis and Plant Salt Tolerance: Plant Nanobiotechnology Updates
J Liu#, C Fu#, G Li, MN Khan, H Wu*
Sustainability 13 (6), 3552, 2021
1022021
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บทความ 1–20