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利用碳水化合物大分子的食品纳米技术未来:最新综述。

Nanotechnology future in food using carbohydrate macromolecules: A state-of-the-art review.

机构信息

College of Temperate Sericulture, Mirgund, SKUAST-Kashmir, Shalimar, Jammu & Kashmir 190025, India.

College of Temperate Sericulture, Mirgund, SKUAST-Kashmir, Shalimar, Jammu & Kashmir 190025, India.

出版信息

Int J Biol Macromol. 2023 Jun 1;239:124350. doi: 10.1016/j.ijbiomac.2023.124350. Epub 2023 Apr 5.

Abstract

It is commonly known that agricultural pest and disease management is achieved through the use of agricultural chemicals and other synthetic compounds, which can contaminate water, soil, and food. Using agrochemicals indiscriminately has negative effects on the environment and poor food quality. In contrast, the world's population is increasing rapidly, and arable land is diminishing daily. Traditional agricultural methods must be replaced by nanotechnology-based treatments that efficiently address both the demands of the present and the needs of the future. As a promising contributor to sustainable agriculture and food production worldwide, nanotechnology has been applied through innovative and resourceful tools. Recent advances in nanomaterial engineering have increased agricultural and food sector production and protected crops using nanoparticles (1000 nm). Agrochemicals, nutrients, and genes can now be distributed to plants in a precise and tailored manner through nanoencapsulation (nanofertilizers, nanopesticides, and genes). Despite the advancement of technology in agriculture, some areas remain unexplored. The various agricultural domains must therefore be updated in priority order. The development of long-lasting and efficient nanoparticle materials will be key to the development of future eco-friendly and nanoparticle-based technologies. We thoroughly covered the many types of nanoscale agro-materials and gave an overview of biological techniques in nano-enabled tactics that can effectively reduce plant biotic and abiotic challenges while potentially boosting plant nutritional values.

摘要

众所周知,农业病虫害防治是通过使用农药和其他合成化合物来实现的,这些化合物会污染水、土壤和食物。滥用农药会对环境和食品质量产生负面影响。相比之下,世界人口正在迅速增长,可耕地面积却在逐日减少。传统的农业方法必须被基于纳米技术的处理方法所取代,这种方法能够高效地满足当前的需求并满足未来的需要。作为对全球可持续农业和粮食生产的一种有前途的贡献,纳米技术已经通过创新和富有创意的工具得到了应用。最近在纳米材料工程方面的进展提高了农业和粮食部门的产量,并通过使用纳米颗粒(1000nm)保护了作物。现在可以通过纳米封装(纳米肥料、纳米农药和基因)以精确和定制的方式向植物分配农药、营养物质和基因。尽管农业技术取得了进步,但仍有一些领域尚未开发。因此,必须优先更新各种农业领域。开发持久和高效的纳米颗粒材料将是发展未来环保和基于纳米颗粒的技术的关键。我们全面介绍了许多类型的纳米级农用材料,并概述了纳米技术中有效的生物策略,这些策略可以有效减少植物的生物和非生物挑战,同时有可能提高植物的营养价值。

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