Role of Nanotechnology in the Field of Agriculture: A Review

M. Aslam
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Abstract

The techniques of nanotechnology are largely utilized in plant protection, food production, processing, packing and carriage of agricultural products and quality enhancement and environmental quality controlling management. It has a lot of capability to create agriculture more and more effective by utilizing nanoagricultural chemicals and nanosensors. Nanoceramic instruments, nanopore filters, nanofeeds, nanofiltrations, nanolaminations, nanodelivery system can accurately transfer the drugs or micro nutrients at the suitable time and to the right part of the materials. Researches in the field of nanobiotechnology are becoming more and more advanced towards the capability of sequencing DNA in the nanofabrication gel freed systems which would be best suitable to allow for significant fast DNA mapping of different crop germplasms can highly give useful knowledge about different molecular markers in association with agronomically along with economically important characters. So, nanobiotechnology can boost up the worth of progress in molecular markers assisted breeding programs for the crop improvement. By the use of these engineered nanoscale materials in agriculture sector, foods and environment can have problems for the human consumptions and environment. The deficiency of enough scientific information about major risk-assessment features i.e. nanoparticles toxicity facts, bioaccumulations, ingestion risks or exposure knowledge leads towards the most concerned scenes. After the great advancements in nanobiotechnological techniques will lead to success in applications of this that agriculture will pick up.
纳米技术在农业领域中的作用综述
纳米技术广泛应用于植物保护、食品生产、加工、农产品包装运输、质量提升和环境质量控制管理等领域。利用纳米农用化学品和纳米传感器,它有很大的能力来创造越来越有效的农业。纳米陶瓷仪器、纳米孔过滤器、纳米进料、纳米过滤、纳米层叠、纳米输送系统可以在合适的时间将药物或微量营养物质准确地转移到材料的合适部位。纳米生物技术领域的研究正朝着DNA测序能力的方向发展,纳米制备凝胶释放系统最适合实现不同作物种质的显著快速DNA定位,可以高度地提供与农学和经济重要性状相关的不同分子标记的有用知识。因此,纳米生物技术可以提高分子标记辅助育种项目在作物改良方面的价值。通过在农业部门使用这些工程纳米级材料,食品和环境可能对人类消费和环境产生问题。缺乏关于主要风险评估特征的足够科学信息,即纳米颗粒毒性事实、生物积累、摄入风险或暴露知识,导致最令人关注的场景。在纳米生物技术的巨大进步之后,这种技术将成功地应用于农业。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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