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Section D: Other Related Materials

Nanotechnology: A growing need for agriculture and food sectors

, &
Pages 73-81 | Received 07 Nov 2016, Accepted 22 Apr 2017, Published online: 12 Dec 2017

References

  • S. A. Mukhopadhyay, Nanotechnology in agriculture: prospects and constraints, Nanotech. Sci. Applications. 7, 63–71 (2014).
  • B. S. Sekhon, Nanotechnology in agri-food production: An overview, Nanotech. Sci. Applications. 7, 31–53 (2014).
  • N. A.Mlalila, D. M. Kadam, S. V.Swai, and A. Hilonga, Transformation of food packaging from passive to innovative via nanotechnology: concepts and critiques. J.Food Sci. Tech. 539), 3395–3407 (2016).
  • Z. D. Nadia, and M. H. Hany, Role of Nanotechnology in Agriculture with Special Reference to Pest Control, Int. J.Pharm. Tech. Res. 9, 121–144 (2016).
  • M. C. DeRosa, C. Monreal, M. Schnitzer, R. Walsh, and Y. Sultan, Nanotechnology in Fertilizers. Nature Nanotech. 52) 90–91 (2010).
  • C. N. Stewart Jr, Monitoring the presence and expression of transgenes in living plants. Trends Plant Sci.10, 390–396 (2005).
  • F. Torney, G. T. Braine, S. Y. Victor, and W. Kan, Mesoporous silica nanoparticles deliver DNA and chemicals in to plants. Nature Biotech. 2, 295–300 (2007).
  • S. A. Jackson, A. Iwata, S.H. Lee, J. Schmutz, and R. Shoemaker, Sequencing crop genomes: approaches and applications, New Phytologist. 191, 915–925 (2011).
  • M. Rai, S. Deshmukh, A. Gade, and K. Abd-Elsalam, Strategic nanoparticles mediated gene transfer in plants and animals – a novel approach. Curr Nanosci. 8, 170–179 (2012).
  • T. M. Taylor, P. M. Davidson, B. D. Bruce, and J. Weiss, Liposomal nanocapsules in food science and agriculture. Crit. Re. Food Sci. Nutr. 45, 587–605 (2005).
  • M. A. Khiyami, H. Almoammar, Y. M. Awad, M. A. Alghuthaymi, and K. A. Abd-Elsalam, Plant pathogen nanodiagnostic techniques: forthcoming changes? Biotechnol. Equip. 28, 775–785 (2014).
  • J. Kuzma, Moving forward responsibly: oversight for the nanotechnology-biology interface. J. Nanopart. Res. 9, 165–182 (2007).
  • D. Maysinger, Nanoparticles and cells: good companions and doomed partnerships. Org. Biomol. Chem. 5, 2335–2342 (2007).
  • F. Ahmed, N. Arshi, and S. Kumar, Nanobiotechnology: Scope and potential for crop improvement, Crop Improvement under Adverse Conditions. Springer, New York, (2013).
  • The Nanoscale Science, Engineering, and Technology Subcommittee of the Committee on Technology of the National Science and Technology Council. Nanotechnology-Enabled Sensing: Report of the National Nanotechnology Initiative Workshop, Arlington, VA, USA, May 5–7, (2009).
  • W. Day, Engineering precision into variable biological systems, Ann. Appl. Biol. 146,155–162 (2005).
  • C. Chau, S. Wu, and G. Yen, The development of regulations for food nanotechnology. Trends Food Sci. Technol. 18,269–280 (2007).
  • D. Shivendu, C. Nandita, S. Roy, and S. Rishi, Nanoscience and Nanotechnologies in Food Industries: Opportunities and Research Trends. J. Nanoparticle Res. 16, 6–10 (2014).
  • R. Ravichandran, Nanoparticles in drug delivery: Potential green nanobiomedicine applications, Int. J. Nanotechnol. Biomed.1, 108–130 (2009).
  • O. Degant, and D. Schwechten, Wheat flour with increased water binding capacity and process and equipment for its manufacture, German Patent DE10107885A1 (2002).
  • T. Shibata, Method for producing green tea in microfine powder. United States Patent US6416803B1 (2002).
  • C. Chau, S. Wu, and G. Yen, The development of regulations for food nanotechnology. Trends Food Sci.Technol. 18, 269–280 (2007).
  • R. Liu, and R. Lal, A laboratory study on improvement of mine soil quality for re-vegetation through various amendments, in Proceedings of the ASA-CSSA-SSSA International Annual Meetings, Cincinnati, Ohio, USA, (2012).
  • B. Bhushan, Springer Handbook of Nanotechnology, Springer, Berlin, (2009).
  • R. Ravichandran, Nanotechnology Applications in Food and Food Processing: Innovative Green Approaches, Opportunities and Uncertainties for Global Market. Int J Green Nanotechnology: Physics and Chemistry. 1, 72–96 (2010).
  • Report of Envigreen Biotech India (P) Ltd. www.envigreen.in.
  • C. Moraru, C. Panchapakesan, Q. Huang, P. Takhistov, and S. Liu, Nanotechnology: A New Frontier in Food Science. Food Technol. 57, 24–29 (2003).
  • D. Tillman, K. G. Cassman, P. A. Matson, R. Naylor, and S. Polasky, Agricultural sustainability and intensive production practices. Nature. 418, 671–677 (2002).
  • H. Sharanagouda, Application of Nanotechnology in Enhancing Quality of Agricultural Produce. Available online at http://www.isssonline.in/isss-2014/agri.html (2014).
  • T. Dhewa, Nanotechnology applications in agriculture: An update. Oct. Jour. Env. Res. 32), 204–211 (2015).
  • S. Madhuri, C. Ajoy, and K. Rohit, Nanotechnology in Agricultural Diseases and Food Safety. J. Phytol. 24), 83–92 (2010).

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