Dong Bo-Ran, Jiang Rui, Chen Jun-Feng, Xiao Ying, Lv Zong-You, Chen Wan-Sheng
Research and Development Center of Chinese Medicine Resources and Biotechnology, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Department of Pharmacy, Changzheng Hospital, Second Military Medical University, Shanghai, China.
Crit Rev Biotechnol. 2023 Feb;43(1):22-37. doi: 10.1080/07388551.2021.2007842. Epub 2022 Mar 13.
Nanotechnology is a promising means for development of sustainable agriculture while the study of nanoparticle-mediated plant disease resistance is still in its primary stage. Nanotechnology has shown great promise in regulating: the content of secondary metabolites, inducing disease resistance genes, delivering hormones, delivering biomolecules (such as: nucleotides, proteins, and activators), and obtaining transgenic plants to resist plant diseases. In this review, we conclude its versatility and applicability in disease management strategies and diagnostics and as molecular tools. With the advent of new biotechnologies (e.g. regeneration, CRISPR/Cas9, and GRF4-GIF1 fusion protein), we discuss the potential of nanoparticles as an optimal platform to deliver biomolecules to plants for genetic engineering. In order to ensure the safe use and social acceptance of plant nanoparticle technology, its adverse effects are discussed, including the risk of transferring nanoparticles through the food chain.
纳米技术是可持续农业发展的一种有前景的手段,而纳米颗粒介导的植物抗病性研究仍处于初级阶段。纳米技术在调节次生代谢物含量、诱导抗病基因、递送激素、递送生物分子(如核苷酸、蛋白质和激活剂)以及获得转基因植物以抵抗植物病害方面已显示出巨大潜力。在本综述中,我们总结了其在病害管理策略和诊断以及作为分子工具方面的多功能性和适用性。随着新生物技术(如再生、CRISPR/Cas9和GRF4-GIF1融合蛋白)的出现,我们讨论了纳米颗粒作为将生物分子递送至植物用于基因工程的最佳平台的潜力。为确保植物纳米颗粒技术的安全使用和社会接受度,我们讨论了其不利影响,包括纳米颗粒通过食物链转移的风险。