Sekhon Bhupinder Singh
Institute of Pharmaceutical Sciences, PCTE Group of Institutes, Ludhiana, India.
Nanotechnol Sci Appl. 2014 May 20;7:31-53. doi: 10.2147/NSA.S39406. eCollection 2014.
Nanotechnology is one of the most important tools in modern agriculture, and agri-food nanotechnology is anticipated to become a driving economic force in the near future. Agri-food themes focus on sustainability and protection of agriculturally produced foods, including crops for human consumption and animal feeding. Nanotechnology provides new agrochemical agents and new delivery mechanisms to improve crop productivity, and it promises to reduce pesticide use. Nanotechnology can boost agricultural production, and its applications include: 1) nanoformulations of agrochemicals for applying pesticides and fertilizers for crop improvement; 2) the application of nanosensors/nanobiosensors in crop protection for the identification of diseases and residues of agrochemicals; 3) nanodevices for the genetic manipulation of plants; 4) plant disease diagnostics; 5) animal health, animal breeding, poultry production; and 6) postharvest management. Precision farming techniques could be used to further improve crop yields but not damage soil and water, reduce nitrogen loss due to leaching and emissions, as well as enhance nutrients long-term incorporation by soil microorganisms. Nanotechnology uses include nanoparticle-mediated gene or DNA transfer in plants for the development of insect-resistant varieties, food processing and storage, nanofeed additives, and increased product shelf life. Nanotechnology promises to accelerate the development of biomass-to-fuels production technologies. Experts feel that the potential benefits of nanotechnology for agriculture, food, fisheries, and aquaculture need to be balanced against concerns for the soil, water, and environment and the occupational health of workers. Raising awareness of nanotechnology in the agri-food sector, including feed and food ingredients, intelligent packaging and quick-detection systems, is one of the keys to influencing consumer acceptance. On the basis of only a handful of toxicological studies, concerns have arisen regarding the safety of nanomaterials, and researchers and companies will need to prove that these nanotechnologies do not have more of a negative impact on the environment.
纳米技术是现代农业中最重要的工具之一,预计农业食品纳米技术将在不久的将来成为推动经济发展的一股力量。农业食品主题聚焦于农业生产食品的可持续性和保护,包括供人类消费和动物饲养的作物。纳米技术提供了新的农用化学品制剂和新的递送机制,以提高作物产量,并有望减少农药使用。纳米技术可以促进农业生产,其应用包括:1)用于施用农药和化肥以改善作物的农用化学品纳米制剂;2)纳米传感器/纳米生物传感器在作物保护中用于识别疾病和农用化学品残留;3)用于植物基因操作的纳米装置;4)植物病害诊断;5)动物健康、动物育种、家禽生产;6)收获后管理。精准农业技术可用于进一步提高作物产量,同时不损害土壤和水,减少因淋溶和排放造成的氮损失,以及增强土壤微生物对养分的长期吸收。纳米技术的用途包括在植物中进行纳米颗粒介导的基因或DNA转移以培育抗虫品种、食品加工和储存、纳米饲料添加剂以及延长产品保质期。纳米技术有望加速生物质转化为燃料生产技术的发展。专家认为,纳米技术给农业、食品、渔业和水产养殖带来的潜在益处需要与对土壤、水、环境以及工人职业健康的担忧相权衡。提高农业食品领域对纳米技术的认识,包括饲料和食品成分、智能包装和快速检测系统,是影响消费者接受度的关键之一。基于仅有的少数毒理学研究,人们对纳米材料的安全性产生了担忧,研究人员和企业需要证明这些纳米技术对环境的负面影响不会更大。