Ostadi A, Javanmarda A, Machiani MA, Morshedloo MR, Nouraein M,
Rasouli F, Maggi F (2020) Effect of different fertilizer sources and
harvesting time on the growth characteristics, nutrient uptakes,
essential oil productivity and composition of Mentha x piperita L.
Ind Crops Prod 148:112290
Pascoli M, de Albuquerque FP, Calzavara AK, Tinoco-Nunes B,
Oliveira WHC, Gonçalves KC, Polanczyk RA, Vechia JFD, de
Matos STS, de Andrade DJ, Oliveira HC, Souza-Neto JA, de
Lima R, Fraceto LF (2020) The potential of nanobiopesticide based
on zein nanoparticles and neem oil for enhanced control of
agricultural pests. J Pest Sci 93:793–806
Pariona N, Martínez AI, Hernandez-Flores H, Clark-Tapia R (2017)
Effect of magnetite nanoparticles on the germination and early
growth of Quercus macdougallii. Sci Total Environ 575:869–875
Pandorf M, Pourzahedi L, Gilbertson L, Lowry GV, Herckes P,
Westerhoff P (2020) Graphite nanoparticle addition to fertilizers
reduces nitrate leaching in growth of lettuce (Lactuca sativa).
Environ. Sci.: Nano 7: 127–138
Pasquoto-Stigliani T, Campos EVR, Oliveira JL, Silva CMG,
Bilesky-Jose N, Guilger M, Troost J, Oliveira HC, Stolf-Moreira
R, Fraceto LF, de Lima R (2017) Nanocapsules containing neem
(Azadirachta indica) oil: development, characterization, and toxicity evaluation. Sci Rep 7:5929
Peng C, Tong H, Shen C, Sun L, Yuan P, He M, Shi J (2020)
Bioavailability and translocation of metal oxide nanoparticles in the
soil-rice plant system. Sci Total Environ 713:136662
Pradhan S, Durgam M, Mailapalli DR (2020) Urea loaded hydroxyapatite nanocarrier for efficient delivery of plant nutrients in rice.
Archives of Agronomy and Soil Science. https://doi.org/10.1080/
03650340.2020.1732940
Prajapati BJ, Patel SB, Patel RP, Ramani VP (2018) Effect of Zinc
nano-fertilizer on growth and yield of wheat (Triticum aestivum L.)
under saline irrigation condition. Agropedology 28(01): 31–37
Priester JH, Moritz SC, Espinosa K, Ge Y, Wang Y, Nisbet RM,
Schimel JP, Goggi AS, Torresdey JL, Holden PA (2017) Damage
assessment for soybean cultivated in soil with either CeO(2) or
ZnO manufactured nanomaterials. Sci Total Environ 579:1756–
1768
Rahman MS, Chakraborty A, Mazumdar S, Nandi NC, Bhuiyan MNI,
Alauddin SM, Khan IA, Hossain MJ (2020) Effects of poly
(vinylpyrrolidone) protected platinum nanoparticles on seed germination and growth performance of Pisum sativum. Nano-Structures
& Nano-Objects 21:100408
Rashidipour M, Maleki A, Kordi S, Birjandi M, Pajouhi N, Mohammadi E, Heydari R, Rezaee R, Rasoulian B, Davari B (2019)
Pectin/chitosan/tripolyphosphate nanoparticles: efficient carriers for
reducing soil sorption, cytotoxicity, and mutagenicity of paraquat
and enhancing its herbicide activity. J Agric Food Chem 67:5736–
5745
Rico CM, Wagner D, Abolade O, Lottes B, Coates K (2020)
Metabolomics of wheat grains generationally-exposed to cerium
oxide nanoparticles. Sci Total Environ 712:136487
Salehi H, Chehregani A, Lucini L, Majd A, Gholam M (2018)
Morphological, proteomic and metabolomic insight into the effect
of cerium dioxide nanoparticles to Phaseolus vulgaris L. under soil
or foliar application. Sci Total Environ 616–617:1540–1551
Stefanic PP, Cvjetko P, Biba R, Domijan A-M, Letofsky-Papst I,
Tkalec M, Sikic S, Cindric M, Balen B (2020) Physiological,
ultrastructural and proteomic responses of tobacco seedlings
exposed to silver nanoparticles and silver nitrate. Chemosphere
209:640–653
Sharifan H, Wang X, Ma X (2020) Impact of nanoparticle surface
charge and phosphate on the uptake of coexisting cerium oxide
nanoparticles and cadmium by soybean (Glycine max. (L.) merr.).
Int J Phytoremediation 22(3): 305–312
Shan Y, Cao L, Xu C, Zhao P, Cao C, Li F, Xu B, Huang Q (2019)
Sulfonate-functionalized mesoporous silica nanoparticles as carriers
for controlled herbicide diquat dibromide release through electrostatic interaction. Int J Mol Sci 20:1330
Sharma A, Sood K, Kaur J, Khatri M (2019) Agrochemical loaded
biocompatible chitosan nanoparticles for insect pest management.
Biocatal Agric Biotechnol 18:101079
Singh D, Kumar A (2020a) Binary mixture of nanoparticles in sewage
sludge: Impact on spinach growth. Chemosphere 254:126794
Schnoor B, Elhendawy A, Joseph S, Putman M, Chacon-Cerdas R,
Flores-Mora
D,
Bravo-Moraga
F,
Gonzalez-Nilo
F,
Salvador-Morales C (2018) Engineering Atrazine loaded poly
(lactic-co-glycolic Acid) nanoparticles to ameliorate environmental
challenges. J Agric Food Chem 66(30):7889–7898
Singh D, Kumar A (2020b) Quantification of metal uptake in Spinacia
oleracea irrigated with water containing a mixture of CuO and ZnO
nanoparticles. Chemosphere 243:125239
Song S, Wang Y, Xie J, Sun B, Zhou N, Shen H, Shen J (2019)
Carboxymethyl chitosan modified carbon nanoparticle for controlled emamectin benzoate delivery: improved solubility, pH
responsive release, and sustainable pest control. ACS Appl Mater
Interfaces 11(37):34258–34267
Sousa GFM, Gomes DG, Campos EVR, Oliveira JL, Fraceto LF,
Stolf-Moreira R, Oliveira HC (2018) Post-emergence herbicidal
activity of nanoatrazine against susceptible weeds. Front Environ
Sci 6:12
Sun D, Hussain HI, Yi Z, Rookes JE, Kong L, Cahill DM (2016)
Mesoporous silica nanoparticles enhance seedling growth and
photosynthesis in wheat and lupin. Chemosphere 152:81–91
Sun H, Du W, Peng Q, Lv Z, Mao H, Kopittke PM (2020)
Development of ZnO nanoparticles as an efficient Zn fertilizer:
using synchrotron-based techniques and laser ablation to examine
elemental distribution in wheat grain. J Agric Food Chem 68
(18):5068–5075
Tian L, Zhang H, Zhao X, Gu X, White JC, Zhao L, Ji R (2020) CdS
nanoparticles in soil induce metabolic reprogramming in broad bean
(Vicia faba L.) roots and leaves. Environ. Sci.: Nano 7: 93–104
Tombuloglu H, Anıl I, Akhtar S, Turumtay H, Sabit H, Slimani Y,
Almessiere M, Baykal A (2020) Iron oxide nanoparticles translocate
in pumpkin and alter the phloem sap metabolites related to oil
metabolism. Sci Hortic 265:109223
Tong Y, Wu Y, Zhao C, Xu Y, Lu J, Xiang S, Zong F, Wu X (2017)
Polymeric nanoparticles as a metolachlor carrier: water-based
formulation for hydrophobic pesticides and absorption by plants.
J Agric Food Chem 65:7371–7378
Tu Q, Yang T, Qu Y, Gao S, Zhang Z, Zhang Q, Wang Y, Wang J,
He L (2019) In situ colorimetric detection of glyphosate on plant
tissues using cysteamine-modified gold nanoparticles. Analyst 144
(6):2017–2025
Vitali F, Raio A, Sebastiani F, Cherubini P, Cavalieri D, Cocozza C
(2019) Environmental pollution effects on plant microbiota: the case
study of poplar bacterial-fungal response to silver nanoparticles.
Appl Microbiol Biotechnol 103(19):8215–8227
Wang Y, Deng C, Cota-Ruiz K, Peralta-Videa JR, Sun Y, Rawat S,
Tan W, Reyes A, Hernandez-Viezcas JA, Niu G, Li C,
Gardea-Torresdey JL (2020a) Improvement of nutrient elements
and allicin content in green onion (Allium fistulosum) plants
exposed to CuO nanoparticles. Sci Total Environ 725:138387
Wang A, Jin Q, Xu X, Miao A, White JC, Gardea-Torresdey JL, Ji R,
Zhao L (2020b) High-throughput screening for engineered nanoparticles that enhance photosynthesis using mesophyll protoplasts.
J Agric Food Chem 68(11):3382–3389
Wang X, Sun W, Ma X (2019) Differential impacts of copper oxide
nanoparticles and Copper (II) ions on the uptake and accumulation
of arsenic in rice (Oryza sativa). Environ Pollut 252:967–973
98
A. A. H. Khan
Rasouli F, Maggi F (2020) Effect of different fertilizer sources and
harvesting time on the growth characteristics, nutrient uptakes,
essential oil productivity and composition of Mentha x piperita L.
Ind Crops Prod 148:112290
Pascoli M, de Albuquerque FP, Calzavara AK, Tinoco-Nunes B,
Oliveira WHC, Gonçalves KC, Polanczyk RA, Vechia JFD, de
Matos STS, de Andrade DJ, Oliveira HC, Souza-Neto JA, de
Lima R, Fraceto LF (2020) The potential of nanobiopesticide based
on zein nanoparticles and neem oil for enhanced control of
agricultural pests. J Pest Sci 93:793–806
Pariona N, Martínez AI, Hernandez-Flores H, Clark-Tapia R (2017)
Effect of magnetite nanoparticles on the germination and early
growth of Quercus macdougallii. Sci Total Environ 575:869–875
Pandorf M, Pourzahedi L, Gilbertson L, Lowry GV, Herckes P,
Westerhoff P (2020) Graphite nanoparticle addition to fertilizers
reduces nitrate leaching in growth of lettuce (Lactuca sativa).
Environ. Sci.: Nano 7: 127–138
Pasquoto-Stigliani T, Campos EVR, Oliveira JL, Silva CMG,
Bilesky-Jose N, Guilger M, Troost J, Oliveira HC, Stolf-Moreira
R, Fraceto LF, de Lima R (2017) Nanocapsules containing neem
(Azadirachta indica) oil: development, characterization, and toxicity evaluation. Sci Rep 7:5929
Peng C, Tong H, Shen C, Sun L, Yuan P, He M, Shi J (2020)
Bioavailability and translocation of metal oxide nanoparticles in the
soil-rice plant system. Sci Total Environ 713:136662
Pradhan S, Durgam M, Mailapalli DR (2020) Urea loaded hydroxyapatite nanocarrier for efficient delivery of plant nutrients in rice.
Archives of Agronomy and Soil Science. https://doi.org/10.1080/
03650340.2020.1732940
Prajapati BJ, Patel SB, Patel RP, Ramani VP (2018) Effect of Zinc
nano-fertilizer on growth and yield of wheat (Triticum aestivum L.)
under saline irrigation condition. Agropedology 28(01): 31–37
Priester JH, Moritz SC, Espinosa K, Ge Y, Wang Y, Nisbet RM,
Schimel JP, Goggi AS, Torresdey JL, Holden PA (2017) Damage
assessment for soybean cultivated in soil with either CeO(2) or
ZnO manufactured nanomaterials. Sci Total Environ 579:1756–
1768
Rahman MS, Chakraborty A, Mazumdar S, Nandi NC, Bhuiyan MNI,
Alauddin SM, Khan IA, Hossain MJ (2020) Effects of poly
(vinylpyrrolidone) protected platinum nanoparticles on seed germination and growth performance of Pisum sativum. Nano-Structures
& Nano-Objects 21:100408
Rashidipour M, Maleki A, Kordi S, Birjandi M, Pajouhi N, Mohammadi E, Heydari R, Rezaee R, Rasoulian B, Davari B (2019)
Pectin/chitosan/tripolyphosphate nanoparticles: efficient carriers for
reducing soil sorption, cytotoxicity, and mutagenicity of paraquat
and enhancing its herbicide activity. J Agric Food Chem 67:5736–
5745
Rico CM, Wagner D, Abolade O, Lottes B, Coates K (2020)
Metabolomics of wheat grains generationally-exposed to cerium
oxide nanoparticles. Sci Total Environ 712:136487
Salehi H, Chehregani A, Lucini L, Majd A, Gholam M (2018)
Morphological, proteomic and metabolomic insight into the effect
of cerium dioxide nanoparticles to Phaseolus vulgaris L. under soil
or foliar application. Sci Total Environ 616–617:1540–1551
Stefanic PP, Cvjetko P, Biba R, Domijan A-M, Letofsky-Papst I,
Tkalec M, Sikic S, Cindric M, Balen B (2020) Physiological,
ultrastructural and proteomic responses of tobacco seedlings
exposed to silver nanoparticles and silver nitrate. Chemosphere
209:640–653
Sharifan H, Wang X, Ma X (2020) Impact of nanoparticle surface
charge and phosphate on the uptake of coexisting cerium oxide
nanoparticles and cadmium by soybean (Glycine max. (L.) merr.).
Int J Phytoremediation 22(3): 305–312
Shan Y, Cao L, Xu C, Zhao P, Cao C, Li F, Xu B, Huang Q (2019)
Sulfonate-functionalized mesoporous silica nanoparticles as carriers
for controlled herbicide diquat dibromide release through electrostatic interaction. Int J Mol Sci 20:1330
Sharma A, Sood K, Kaur J, Khatri M (2019) Agrochemical loaded
biocompatible chitosan nanoparticles for insect pest management.
Biocatal Agric Biotechnol 18:101079
Singh D, Kumar A (2020a) Binary mixture of nanoparticles in sewage
sludge: Impact on spinach growth. Chemosphere 254:126794
Schnoor B, Elhendawy A, Joseph S, Putman M, Chacon-Cerdas R,
Flores-Mora
D,
Bravo-Moraga
F,
Gonzalez-Nilo
F,
Salvador-Morales C (2018) Engineering Atrazine loaded poly
(lactic-co-glycolic Acid) nanoparticles to ameliorate environmental
challenges. J Agric Food Chem 66(30):7889–7898
Singh D, Kumar A (2020b) Quantification of metal uptake in Spinacia
oleracea irrigated with water containing a mixture of CuO and ZnO
nanoparticles. Chemosphere 243:125239
Song S, Wang Y, Xie J, Sun B, Zhou N, Shen H, Shen J (2019)
Carboxymethyl chitosan modified carbon nanoparticle for controlled emamectin benzoate delivery: improved solubility, pH
responsive release, and sustainable pest control. ACS Appl Mater
Interfaces 11(37):34258–34267
Sousa GFM, Gomes DG, Campos EVR, Oliveira JL, Fraceto LF,
Stolf-Moreira R, Oliveira HC (2018) Post-emergence herbicidal
activity of nanoatrazine against susceptible weeds. Front Environ
Sci 6:12
Sun D, Hussain HI, Yi Z, Rookes JE, Kong L, Cahill DM (2016)
Mesoporous silica nanoparticles enhance seedling growth and
photosynthesis in wheat and lupin. Chemosphere 152:81–91
Sun H, Du W, Peng Q, Lv Z, Mao H, Kopittke PM (2020)
Development of ZnO nanoparticles as an efficient Zn fertilizer:
using synchrotron-based techniques and laser ablation to examine
elemental distribution in wheat grain. J Agric Food Chem 68
(18):5068–5075
Tian L, Zhang H, Zhao X, Gu X, White JC, Zhao L, Ji R (2020) CdS
nanoparticles in soil induce metabolic reprogramming in broad bean
(Vicia faba L.) roots and leaves. Environ. Sci.: Nano 7: 93–104
Tombuloglu H, Anıl I, Akhtar S, Turumtay H, Sabit H, Slimani Y,
Almessiere M, Baykal A (2020) Iron oxide nanoparticles translocate
in pumpkin and alter the phloem sap metabolites related to oil
metabolism. Sci Hortic 265:109223
Tong Y, Wu Y, Zhao C, Xu Y, Lu J, Xiang S, Zong F, Wu X (2017)
Polymeric nanoparticles as a metolachlor carrier: water-based
formulation for hydrophobic pesticides and absorption by plants.
J Agric Food Chem 65:7371–7378
Tu Q, Yang T, Qu Y, Gao S, Zhang Z, Zhang Q, Wang Y, Wang J,
He L (2019) In situ colorimetric detection of glyphosate on plant
tissues using cysteamine-modified gold nanoparticles. Analyst 144
(6):2017–2025
Vitali F, Raio A, Sebastiani F, Cherubini P, Cavalieri D, Cocozza C
(2019) Environmental pollution effects on plant microbiota: the case
study of poplar bacterial-fungal response to silver nanoparticles.
Appl Microbiol Biotechnol 103(19):8215–8227
Wang Y, Deng C, Cota-Ruiz K, Peralta-Videa JR, Sun Y, Rawat S,
Tan W, Reyes A, Hernandez-Viezcas JA, Niu G, Li C,
Gardea-Torresdey JL (2020a) Improvement of nutrient elements
and allicin content in green onion (Allium fistulosum) plants
exposed to CuO nanoparticles. Sci Total Environ 725:138387
Wang A, Jin Q, Xu X, Miao A, White JC, Gardea-Torresdey JL, Ji R,
Zhao L (2020b) High-throughput screening for engineered nanoparticles that enhance photosynthesis using mesophyll protoplasts.
J Agric Food Chem 68(11):3382–3389
Wang X, Sun W, Ma X (2019) Differential impacts of copper oxide
nanoparticles and Copper (II) ions on the uptake and accumulation
of arsenic in rice (Oryza sativa). Environ Pollut 252:967–973
98
A. A. H. Khan
