opportunities and scientific challenges. Environ Sci: Nano 4
(4):767–781
Sabo-Attwood T, Unrine JM, Stone JW, Murphy CJ, Ghoshroy S,
Blom D, Newman LA (2012) Uptake, distribution and toxicity of
gold nanoparticles in tobacco (Nicotiana xanthi) seedlings. Nanotoxicology 6(4):353–360
Sankaran S, Mishra A, Ehsani R, Davis C (2010) A review of advanced
techniques for detecting plant diseases. Computers Electr Agric 72
(1):1–13
Sanzari I, Leone A, Ambrosone A (2019) Nanotechnology in plant
science: to make a long story short. Front Bioeng Biotechnol 7:120
Selivanov NY, Selivanova OG, Sokolov OI, Sokolova MK,
Sokolov AO, Bogatyrev VA, Dykman LA (2017) Effect of gold
and silver nanoparticles on the growth of the Arabidopsis thaliana
cell suspension culture. Nanotechnol Russia 12(1–2):116–124
Servin A, Elmer W, Mukherjee A, De la Torre-Roche R, Hamdi H,
White JC, Dimkpa C (2015) A review of the use of engineered
nanomaterials to suppress plant disease and enhance crop yield.
J Nanoparticle Res 17(2):92
Shelton AM, Badenes-Perez FR (2006) Concepts and applications of
trap cropping in pest management. Ann Rev Entomol 51:285–308
Shrader-Frechette K (2007) Nanotoxicology and ethical conditions for
informed consent. Nanoethics 1(1):47–56
Shrivastava M, Srivastav A, Gandhi S, Rao S, Roychoudhury A,
Kumar A, Singh SD (2019) Monitoring of engineered nanoparticles
in soil-plant system: A review. Environ Nanotechnol, Mon Manag
11:100218
Singh MV (2008) Micronutrient deficiencies in crops and soils in India.
In Micronutrient deficiencies in global crop production (pp. 93–
125). Springer, Dordrecht.
Singh R, Srivastava P, Singh P, Upadhyay S, Raghubanshi AS (2019)
Human overpopulation and food security: challenges for the
agriculture sustainability. In Urban agriculture and food systems:
breakthroughs in research and practice (pp. 439–467). IGI Global.
Su YH, Tu SL, Tseng SW, Chang YC, Chang SH, Zhang WM (2010)
Influence of surface plasmon resonance on the emission intermittency of photoluminescence from gold nano-sea-urchins. Nanoscale
2(12):2639–2646
Taylor A (2011) Gold uptake and tolerance in Arabidopsis .Doctoral
dissertation, University of York.
Taylor AF, Rylott EL, Anderson CW, Bruce NC (2014) Investigating
the toxicity, uptake, nanoparticle formation and genetic response of
plants to gold. PLoS One 9(4): : e93793.
Thwala M, Klaine SJ, Musee N (2016) Interactions of metal-based
engineered nanoparticles with aquatic higher plants: A review of the
state of current knowledge. Environ Toxicol Chem 35(7):1677–
1694
Tilman D, Cassman KG, Matson PA, Naylor R, Polasky S (2002)
Agricultural sustainability and intensive production practices.
Nature 418(6898):671–677
Torney F, Trewyn BG, Lin VSY, Wang K (2007) Mesoporous silica
nanoparticles deliver DNA and chemicals into plants. Nature
Nanotechnol 2(5):295–300
Wang WN, Tarafdar JC, Biswas P (2013) Nanoparticle synthesis and
delivery by an aerosol route for watermelon plant foliar uptake.
J Nanoparticle Res 15(1):1417
Nanotechnology: Advancement for Agricultural Sustainability
27
(4):767–781
Sabo-Attwood T, Unrine JM, Stone JW, Murphy CJ, Ghoshroy S,
Blom D, Newman LA (2012) Uptake, distribution and toxicity of
gold nanoparticles in tobacco (Nicotiana xanthi) seedlings. Nanotoxicology 6(4):353–360
Sankaran S, Mishra A, Ehsani R, Davis C (2010) A review of advanced
techniques for detecting plant diseases. Computers Electr Agric 72
(1):1–13
Sanzari I, Leone A, Ambrosone A (2019) Nanotechnology in plant
science: to make a long story short. Front Bioeng Biotechnol 7:120
Selivanov NY, Selivanova OG, Sokolov OI, Sokolova MK,
Sokolov AO, Bogatyrev VA, Dykman LA (2017) Effect of gold
and silver nanoparticles on the growth of the Arabidopsis thaliana
cell suspension culture. Nanotechnol Russia 12(1–2):116–124
Servin A, Elmer W, Mukherjee A, De la Torre-Roche R, Hamdi H,
White JC, Dimkpa C (2015) A review of the use of engineered
nanomaterials to suppress plant disease and enhance crop yield.
J Nanoparticle Res 17(2):92
Shelton AM, Badenes-Perez FR (2006) Concepts and applications of
trap cropping in pest management. Ann Rev Entomol 51:285–308
Shrader-Frechette K (2007) Nanotoxicology and ethical conditions for
informed consent. Nanoethics 1(1):47–56
Shrivastava M, Srivastav A, Gandhi S, Rao S, Roychoudhury A,
Kumar A, Singh SD (2019) Monitoring of engineered nanoparticles
in soil-plant system: A review. Environ Nanotechnol, Mon Manag
11:100218
Singh MV (2008) Micronutrient deficiencies in crops and soils in India.
In Micronutrient deficiencies in global crop production (pp. 93–
125). Springer, Dordrecht.
Singh R, Srivastava P, Singh P, Upadhyay S, Raghubanshi AS (2019)
Human overpopulation and food security: challenges for the
agriculture sustainability. In Urban agriculture and food systems:
breakthroughs in research and practice (pp. 439–467). IGI Global.
Su YH, Tu SL, Tseng SW, Chang YC, Chang SH, Zhang WM (2010)
Influence of surface plasmon resonance on the emission intermittency of photoluminescence from gold nano-sea-urchins. Nanoscale
2(12):2639–2646
Taylor A (2011) Gold uptake and tolerance in Arabidopsis .Doctoral
dissertation, University of York.
Taylor AF, Rylott EL, Anderson CW, Bruce NC (2014) Investigating
the toxicity, uptake, nanoparticle formation and genetic response of
plants to gold. PLoS One 9(4): : e93793.
Thwala M, Klaine SJ, Musee N (2016) Interactions of metal-based
engineered nanoparticles with aquatic higher plants: A review of the
state of current knowledge. Environ Toxicol Chem 35(7):1677–
1694
Tilman D, Cassman KG, Matson PA, Naylor R, Polasky S (2002)
Agricultural sustainability and intensive production practices.
Nature 418(6898):671–677
Torney F, Trewyn BG, Lin VSY, Wang K (2007) Mesoporous silica
nanoparticles deliver DNA and chemicals into plants. Nature
Nanotechnol 2(5):295–300
Wang WN, Tarafdar JC, Biswas P (2013) Nanoparticle synthesis and
delivery by an aerosol route for watermelon plant foliar uptake.
J Nanoparticle Res 15(1):1417
Nanotechnology: Advancement for Agricultural Sustainability
27
