Gangwar Jaya, Kadanthottu Sebastian Joseph, Puthukulangara Jaison Juhi, Kurian Jissa Theresa
Department of Life Sciences, Christ University, Bangalore, Karnataka 560029 India.
Physiol Mol Biol Plants. 2023 Jan;29(1):93-107. doi: 10.1007/s12298-022-01274-5. Epub 2023 Jan 4.
Agricultural industry is facing huge crisis due to fast changing climate, decreased soil fertility, macro and micronutrient insufficiency, misuse of chemical fertilizers and pesticides, and heavy metal presence in soil. With exponential increase in world's population, food consumption has increased significantly. Maintaining the production to consumption ratio is a significant challenge due to shortage caused by various issues faced by agricultural industry even with the improved agricultural practices. Recent scientific evidence suggests that nanotechnology can positively impact the agriculture sector by reducing the harmful effects of farming operations on human health and nature, as well as improving food productivity and security. Farmers are combining improved agricultural practices like usage of fertilizers, pesticides etc. with nano-based materials to improve the efficiency and productivity of crops. Nano technology is also playing a significant role improving animal health products, food packaging materials, and nanosensors for detecting pathogens, toxins, and heavy metals in soil among others. The nanobased materials have improved the productivity twice with half the resources being utilized. Nanoparticles that are currently in use include titanium dioxide, zinc oxide, silicon oxide, magnesium oxide, gold, and silver used for increasing soil fertility and plant growth. Crop growth, yield, and productivity are improved by controlled release nanofertilizers. In this review we elaborate on the recent developments in the agricultural sector by the usage of nanomaterial based composites which has significantly improved the agricultural sector especially how nanoparticles play an important role in plant growth and soil fertility, in controlling plant diseases by the use of nanopesticides, nanoinsecticides, nanofertilizers, Nanoherbicides, nanobionics, nanobiosensors. The review also highlights the mechanism of migration of nanoparticles in plants and most importantly the effects of nanoparticles in causing plant and soil toxicity.
由于气候变化迅速、土壤肥力下降、大量和微量营养素不足、化肥和农药的滥用以及土壤中重金属的存在,农业产业正面临巨大危机。随着世界人口呈指数增长,食物消费量显著增加。即便农业生产方式有所改进,但由于农业产业面临的各种问题导致产量短缺,维持生产与消费的比例仍是一项重大挑战。最近的科学证据表明,纳米技术可以通过减少农业生产活动对人类健康和自然的有害影响,以及提高粮食生产力和安全性,对农业部门产生积极影响。农民们正在将使用化肥、农药等改良农业做法与纳米材料相结合,以提高作物的效率和产量。纳米技术在改善动物健康产品、食品包装材料以及用于检测土壤中的病原体、毒素和重金属的纳米传感器等方面也发挥着重要作用。纳米材料在资源利用减半的情况下使生产力提高了两倍。目前使用的纳米颗粒包括用于提高土壤肥力和促进植物生长的二氧化钛、氧化锌、氧化硅、氧化镁、金和银。控释纳米肥料提高了作物生长、产量和生产力。在本综述中,我们阐述了基于纳米材料的复合材料在农业领域的最新进展,这些进展显著改善了农业领域,特别是纳米颗粒在植物生长和土壤肥力方面如何发挥重要作用,通过使用纳米农药、纳米杀虫剂、纳米肥料、纳米除草剂、纳米仿生学和纳米生物传感器来控制植物病害。本综述还强调了纳米颗粒在植物中的迁移机制,以及最重要的是纳米颗粒导致植物和土壤毒性的影响。