利用纳米技术促进可持续农业:从播种到封装

Shivani Mahra , Sneha Tripathi , Kavita Tiwari , Samarth Sharma , Sobhitha Mathew , Vivek Kumar , Shivesh Sharma
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引用次数: 0

摘要

对可持续农业系统的追求激发了对创新方法的追求,以提高作物生产力,同时确保生态平衡。植物对周围环境的变化很敏感,必须进化出复杂的防御系统来应对这些变化,特别是在非生物胁迫的情况下,否则会降低植物的生产力。纳米胶囊化和种子纳米膜化是两种具有改变农业生态系统可持续性潜力的前沿方法。种子纳米制粒涉及到纳米颗粒(NPs)在种子中的战略性应用,用于作物改良。通过种子启动应用NPs是一种新颖而经济的方法,通过刺激植物的生理过程来促进种子萌发和植物生长。对不同的压力源提供弹性。另一方面,智能农业减少了对传统农用化学品的依赖,生物活性化合物的纳米封装提供了一种补充方法,通过使用不同类型的纳米载体,提供了必需农用化学品或化合物的持久和可控释放。这篇综述提供了对农业最新发展的见解,重点是与使用纳米技术进行种子纳米蒸煮相关的机会。此外,它还强调了用于将生物活性化合物与NPs包封的材料和技术。除了对每种技术的优缺点进行深入的回顾之外,本研究还探讨了纳米封装和纳米覆膜提高农业产量的潜力。它更详细地介绍了这些技术的经济价值,强调了它们如何提高作物产量和盈利能力。这篇论文讨论了潜在的风险,例如对生态系统的毒性和长期后果,以及环境效益,从而公平地描绘了纳米技术在农业中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harnessing nanotechnology for sustainable agriculture: From seed priming to encapsulation
The pursuit of sustainable agricultural system has ignited a quest for innovative approaches to enhance crop productivity while ensuring ecological equilibrium. Plants, being sensitive to alterations in their surroundings, must evolve complex defense systems against these changes, particularly in the case of abiotic stress, which would otherwise diminish plant productivity. Nano-encapsulation and seed nanopriming are two avant- garde approaches that have the potential to alter the sustainability of agroecosystems. Seed nanopriming involves the strategic application of nanoparticles (NPs) to seeds for crop improvement. Applying NPs through seed priming is a novel and economical method that enhances germination of seeds and plant growth by stimulating physiological processes in plants & offering resilience towards diverse stressors. While on the other hand smart agriculture has reduced reliance on conventional agrochemicals, nano-encapsulation of bioactive compounds offers a complementary approach by providing a long-lasting and controlled release of essential agrochemicals or compounds by using different types of nanocarrier. This review provides insights into recent developments in agriculture, focusing on the opportunities that are associated with the use of nanotechnology for seed nanopriming. In addition, it highlights the materials and technologies that are employed in encapsulating the bioactive compound with NPs. In addition to offering an in-depth review of the benefits and drawbacks of each technique, this study explores the potential of nano-encapsulation and nanopriming to increase agricultural output. It goes into more detail on the technologies' economic worth, emphasizing how they might raise crop yields and profitability. The paper addresses both the potential risks, such as toxicity and long-term consequences on ecosystems, as well as the environmental benefits to present a fair picture of the use of nanotechnology in agriculture.
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