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新兴纳米壳聚糖在可持续农业中的应用。

Emerging Nanochitosan for Sustainable Agriculture.

机构信息

The Key Laboratory of Land Resources Evaluation and Monitoring in Southwest China, College of Geography and Resources, Sichuan Normal University, Chengdu 610066, China.

School of Nanoscience and Engineering, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Int J Mol Sci. 2024 Nov 15;25(22):12261. doi: 10.3390/ijms252212261.

Abstract

Chemical-intensive agriculture challenges environmental sustainability and biodiversity and must be changed. Minimizing the use of agrochemicals based on renewable resources can reduce or eliminate ecosystems and biodiversity threats. Nanochitosan as a sustainable alternative offers promising solutions for sustainable agricultural practices that work at multiple spatial and temporal scales throughout the plant growth cycle. This review focuses on the potential of nanochitosan in sustainable agricultural production and provides insights into the mechanisms of action and application options of nanochitosan throughout the plant growth cycle. We emphasize the role of nanochitosan in increasing crop yields, mitigating plant diseases, and reducing agrochemical accumulation. The paper discusses the sources of nanochitosan and its plant growth promotion, antimicrobial properties, and delivery capacity. Furthermore, we outline the challenges and prospects of research trends of nanochitosan in sustainable agricultural production practices and highlight the potential of nanochitosan as a sustainable alternative to traditional agrochemicals.

摘要

化学密集型农业对环境可持续性和生物多样性构成挑战,必须加以改变。基于可再生资源的农用化学品的使用最小化可以减少或消除对生态系统和生物多样性的威胁。纳米壳聚糖作为一种可持续的替代品,为可持续农业实践提供了有前途的解决方案,可以在整个植物生长周期的多个时空尺度上发挥作用。本文重点介绍了纳米壳聚糖在可持续农业生产中的潜力,并深入探讨了纳米壳聚糖在整个植物生长周期中的作用机制和应用选择。我们强调了纳米壳聚糖在提高作物产量、减轻植物病害和减少农用化学品积累方面的作用。本文还讨论了纳米壳聚糖的来源及其对植物生长的促进作用、抗菌特性和输送能力。此外,我们概述了纳米壳聚糖在可持续农业生产实践中的研究趋势所面临的挑战和前景,并强调了纳米壳聚糖作为传统农用化学品可持续替代品的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2f6/11594357/f60dc0d24c3a/ijms-25-12261-g001.jpg

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