nanomaterials may be integrated with existing wheat crop production and protection technologies to have better impact and in a cropping system per se.
References
Abdel-Aziz HMM, Hasaneen MNA, Omer AM (2016) Nano chitosan-NPK fertilizer enhances the
growth and productivity of wheat plants grown in sandy soil. Span J Agric Res 14(1):e0902.
https://doi.org/10.5424/sjar/2016141-8205
Abeysingha NS, Singh M, Islam A, Sehgal VK (2016) Climate change impacts on irrigated rice and
wheat production in Gomti River basin of India: a case study. Springerplus 5(1):1250. https://
doi.org/10.1186/s40064-016-2905-y
Abid M, Shao Y, Liu S, Wang F, Gao J, Jiang D, Tian Z, Dai T (2017) Pre-drought priming sustains
grain development under post-anthesis drought stress by regulating the growth hormones in
winter wheat (Triticum aestivum L.). Planta 246(3):509–524. https://doi.org/10.1007/s00425017-2698-4
Agarwal S, Grover A (2006) Molecular biology, biotechnology and genomics of floodingassociated low O 2 stress response in plants. Crit Rev Plant Sci 25:1–21. https://doi.org/10.
1080/07352680500365232
Aliabadi T, Afshar AS, Nematpour FS (2016) The effects of Nano TiO 2 and Nano aluminium on the
growth and some physiological parameters of wheat (Triticum aestivum). Iran J Plant Physiol 6
(2):1627–1635
Araus JL, Slafer GA, Reynolds MP, Royo C (2002) Plant breeding and water relations in C 3 cereals:
what to breed for? Ann Bot 89:925–940. https://doi.org/10.1093/aob/mcf049
Asseng S, Ewert F, Martre P, Rötter RP, Lobell DB, Cammarano D, Kimball BA et al (2014) Rising
temperatures reduce global wheat production. Nat Clim Chang 5(2):143. https://doi.org/10.
1038/nclimate2470
Bailey-Serres J, Voesenek LA (2008) Flooding stress: acclimations and genetic diversity. Annu Rev
Plant Biol 59:313–339. https://doi.org/10.1146/annurev.arplant.59.032607.092752
Barik TK, Sahu B, Swain V (2008) Nanosilica-from medicine to pest control. Parasitol Res 103
(2):253–258. https://doi.org/10.1007/s00436-008-0975-7
Bhati-Kushwaha H, Kaur A, Malik CP (2013) The synthesis and role of biogenic nanoparticles in
overcoming chilling stress. Indian J Plant Sci 2(4):54–62. ISSN: 2319-3824
Bockus WW, Appel JA, Bowden RL, Fritz AK, Gill BS, Martin TJ, Sears RG, Seifers DL, BrownGuedira GL, Eversmeyer MG (2001) Success stories: breeding for wheat disease resistance in
Kansas. Plant Dis 85:453–461. https://doi.org/10.1094/PDIS.2001.85.5.453
Campagnoli A, Cheli F, Polidori C, Zaninelli M, Zecca O et al (2011) Use of the electronic nose as a
screening tool for the recognition of durum wheat naturally contaminated by Deoxynivalenol: a
preliminary approach. Sensors 11:4899–4916. https://doi.org/10.3390/s110504899
Chaves MS, Martinelli JA, Wesp-Guterres C, Graichen FAS, Brammer S, Scagliusi SM, Da Silva
PR, Wiethölter P, Torres GAM, Lau EY et al (2013) The importance for food security of
maintaining rust resistance in wheat. Food Secur 5:157–176. https://doi.org/10.1007/s12571013-0248-x
Chenu K, Porter JR, Martre P, Basso B, Chapman SC, Ewert F, Bindi M, Asseng S (2017)
Contribution of crop models to adaptation in wheat. Trends Plant Sci 22(6):472–490. https://
doi.org/10.1016/j.tplants.2017.02.003
Chichiriccò G, Poma A (2015) Penetration and toxicity of nanomaterials in higher plants. Nano 5
(2):851–873. https://doi.org/10.3390/nano5020851
Cifuentes Z, Custardoy L, de la Fuente JM, Marquina C, Ibarra MR, Rubiales D, Alejandro Pérezde-Luque A (2010) Absorption and translocation to the aerial part of magnetic carbon-coated
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