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https://www.sciencedirect.com/science/article/pii/S0168945210001226
Nanoparticulate material delivery to plants. ... No toxicity on plant growth had been detected thus suggesting the safe use of such nanoparticles for nanoparticulate delivery in plants. Magnetic nanoparticles could be used as capping agents for porous carriers of various chemicals so that their specific localization and uncapping process has ...Author: Remya Nair, Saino Hanna Varghese, Baiju G. Nair, T. Maekawa, Y. Yoshida, D. Sakthi Kumar
https://www.researchgate.net/publication/223383946_Nanoparticulate_material_delivery_to_plants
Nanoparticulate material delivery to plants Article in Plant Science 179(3):154-163 · September 2010 with 1,510 Reads How we measure 'reads'
https://www.researchgate.net/profile/Houda_Kawas/post/what_is_the_mode_of_action_of_nano_zinc_in_plant_and_insect_control/attachment/59d64d7379197b80779a7029/AS%3A488172682518529%401493400845839/download/Nanoparticulate_material_delivery_to_plants.pdf
Nanoparticulate material delivery to plants ... plants have also led to more investigations on the use of plants as source for nanoparticle synthesis. 3.2. Plants as nanofactories
https://www.cabdirect.org/cabdirect/abstract/20103256119
The successful application of various nanoplatforms in medicine under in vitro conditions has generated some interest in agri-nanotechnology. This technology holds the promise of controlled release of agrochemicals and site targeted delivery of various macromolecules needed for improved plant disease resistance, efficient nutrient utilization and enhanced plant growth.Author: Remya Nair, Saino Hanna Varghese, Baiju G. Nair, T. Maekawa, Y. Yoshida, D. Sakthi Kumar
http://agris.fao.org/agris-search/search.do?recordID=US201301864283
Nanoparticulate material delivery to plants [2010] Nair, Remya Varghese, Saino ... Herein we reviewed the delivery of nanoparticulate materials to plants and their ultimate effects which could provide some insights for the safe use of this novel technology for the improvement of crops.Author: Remya Nair, Saino Hanna Varghese, Baiju G. Nair, T. Maekawa, Y. Yoshida, D. Sakthi Kumar
https://www.deepdyve.com/lp/elsevier/nanoparticulate-material-delivery-to-plants-xB9MQarv1Y
Sep 01, 2010 · Nanoparticulate material delivery to plants This technology holds the promise of controlled release of agrochemicals and site targeted delivery of various macromolecules needed for improved plant disease resistance, efficient nutrient utilization and enhanced plant growth.
https://www.academia.edu/6326434/Nanoparticulate_material_delivery_to_plants
Nanoparticulate material delivery to plants
https://etasr.com/index.php/ETASR/article/view/1571
In this paper, a study of the effect of ZnO nanoparticles on safflower growth and physiology was performed. Each of these elements plays a particular role in the plant life, the presence of these elements is necessary for plant’s life cycle and growth. Zinc deficiency causes the biggest problems in safflower’s production. Considering the importance of nanoparticles in today's world, this ...Author: Z. Hafizi, N. Nasr
https://www.sciencedirect.com/science/article/pii/S0167779918300933
Current Biomolecule Delivery Methods for Genetic Engineering in Plants. Food security has been threatened with decreasing crop yields and increasing food consumption in the wake of population growth, climate change, increasing shortage of arable land, and crop usage as raw materials 1, 2.Classical plant breeding to obtain plants with preferred genotypes requires crossing and selection of ...Author: Francis J. Cunningham, Natalie S. Goh, Gozde S. Demirer, Juliana L. Matos, Markita P. Landry
https://www.cell.com/trends/plant-science/fulltext/S1360-1385(16)30007-3
Aug 01, 2016 · The agronomic application of nanotechnology in plants (phytonanotechnology) has the potential to alter conventional plant production systems, allowing for the controlled release of agrochemicals (e.g., fertilizers, pesticides, and herbicides) and target-specific delivery of biomolecules (e.g., nucleotides, proteins, and activators). An improved understanding of the interactions between ...Author: Peng Wang, Peng Wang, Enzo Lombi, Fang-Jie Zhao, Peter M. Kopittke
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