Effects of metal nanoparticle-mediated treatment on seed quality parameters of different crops

被引:0
作者
Nirmal Singh
Axay Bhuker
Jaison Jeevanadam
机构
[1] Chaudhary Charan Singh Haryana Agricultural University,Department of Seed Science and Technology
[2] Universidade da Madeira,CQM
来源
Naunyn-Schmiedeberg's Archives of Pharmacology | 2021年 / 394卷
关键词
Nanotechnology; Nanoparticles; Seed quality parameters; Agricultural crops; Super-dispersive nanoparticles;
D O I
暂无
中图分类号
学科分类号
摘要
The increasing population of the world requires novel techniques to feed everyone, which can replace or work along with traditional methods to increase production of agricultural crops. In recent times, nanotechnology is considered as a promising and emerging approach to be incorporated in agriculture to improve productivity of different crops by the administration of nanoparticles through seed treatment, foliar spray on plants, nano-fertilizers for balanced crop nutrition, nano-herbicides for effective weed control, nanoinsecticides for plant protection, early detection of plant diseases and nutrient deficiencies using diagnostics kits, and nano-pheromones for effective monitoring of pests. Further, distinct nanoparticles with unique physicochemical and biological properties are used in agriculture to increase the percentage of seed germination, which is the initial step to increase the crop yield. In the context of agricultural crops, nanoparticles have both positive effects on seed quality parameters, such as germination percentage, seedling length, seedling dry weight and vigor indices, as well as negative impacts of causing toxicity toward the environment. Thus, the aim of this review article is to provide a comprehensive overview on the effects of super-dispersive metal powders, such as zinc, silver, and titanium nanoparticles on the seed quality parameters of different crops. In addition, the drawback of conventional seed growth enhancers, impact of metal nanoparticles toward seeds, and mechanism of nanoparticles to increase seed germination were also discussed.
引用
收藏
页码:1067 / 1089
页数:22
相关论文
共 1037 条
[51]  
Bagheri S(2014)Achieving global food security through sustainable development of agriculture and food systems with regard to nutrients, soil, land, and waste management Curr Sustain/Renew Energy Rep 1 57-4926
[52]  
Muhd Julkapli N(2013)Silver Nanoparticles Disrupt Wheat (Triticum aestivum L.) Growth in a Sand Matrix Environ Sci Technol 47 1082-49
[53]  
Juraimi AS(2015)ZnO nanoparticles and root colonization by a beneficial pseudomonad influence essential metal responses in bean (Phaseolus vulgaris) Nanotoxicology 9 271-1373
[54]  
Hashemi FSG(2019)Comparison study of zinc nanoparticles and zinc sulphate on wheat growth: From toxicity and zinc biofortification Chemosphere 227 109-200
[55]  
Baghdadi A(2017)Nanotechnology: The new perspective in precision agriculture Biotechnol Rep 15 11-332
[56]  
Aziz HMMA(1962)Electrostatic charges on insects due to contact with different substrates Can J Zool 40 579-512
[57]  
Hasaneen MNA(2014)Nanotechnologies: novel solutions for sustainable agriculture Adv Crop Sci Technol 2 8863-21751
[58]  
Omer AM(2001)Field assessment of nanoscale bimetallic particles for groundwater treatment Environ Sci Technol 35 4922-254
[59]  
Bao-Shan L(2012)Impact of Fe and Ag nanoparticles on seed germination and differences in bioavailability during exposure in aqueous suspension and soil Environ Toxicol 27 42-6
[60]  
Chun-hui L(2011)Antibacterial activity of ZnO nanoparticle on gram-positive and gram-negative bacteria Afr J Microbiol Res 5 1368-273