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纳米技术在植物基因工程中的应用。

Application of Nanotechnology in Plant Genetic Engineering.

机构信息

Collaborative Innovation Center for Efficient and Green Production of Agriculture in Mountainous Areas of Zhejiang Province, College of Horticulture Science, Zhejiang A&F University, Hangzhou 311300, China.

Key Laboratory of Quality and Safety Control for Subtropical Fruit and Vegetable, Ministry of Agriculture and Rural Affairs, Hangzhou 311300, China.

出版信息

Int J Mol Sci. 2023 Oct 2;24(19):14836. doi: 10.3390/ijms241914836.

Abstract

The ever-increasing food requirement with globally growing population demands advanced agricultural practices to improve grain yield, to gain crop resilience under unpredictable extreme weather, and to reduce production loss caused by insects and pathogens. To fulfill such requests, genome engineering technology has been applied to various plant species. To date, several generations of genome engineering methods have been developed. Among these methods, the new mainstream technology is clustered regularly interspaced short palindromic repeats (CRISPR) with nucleases. One of the most important processes in genome engineering is to deliver gene cassettes into plant cells. Conventionally used systems have several shortcomings, such as being labor- and time-consuming procedures, potential tissue damage, and low transformation efficiency. Taking advantage of nanotechnology, the nanoparticle-mediated gene delivery method presents technical superiority over conventional approaches due to its high efficiency and adaptability in different plant species. In this review, we summarize the evolution of plant biomolecular delivery methods and discussed their characteristics as well as limitations. We focused on the cutting-edge nanotechnology-based delivery system, and reviewed different types of nanoparticles, preparation of nanomaterials, mechanism of nanoparticle transport, and advanced application in plant genome engineering. On the basis of established methods, we concluded that the combination of genome editing, nanoparticle-mediated gene transformation and de novo regeneration technologies can accelerate crop improvement efficiently in the future.

摘要

随着全球人口的不断增长,对食物的需求也在不断增加,这就要求采用先进的农业实践来提高粮食产量,增强作物在不可预测的极端天气条件下的适应能力,并减少由昆虫和病原体引起的减产。为了满足这些需求,基因组工程技术已经被应用于各种植物物种。迄今为止,已经开发出了几代基因组工程方法。在这些方法中,新的主流技术是带有核酸酶的成簇规律间隔短回文重复(CRISPR)。基因组工程中最重要的过程之一是将基因盒递送到植物细胞中。传统上使用的系统有几个缺点,例如劳动强度大、时间长、潜在的组织损伤和转化效率低。利用纳米技术,纳米颗粒介导的基因传递方法具有高效性和对不同植物物种的适应性,在技术上优于传统方法。在这篇综述中,我们总结了植物生物分子传递方法的发展,并讨论了它们的特点和局限性。我们重点介绍了基于纳米技术的最新传递系统,回顾了不同类型的纳米颗粒、纳米材料的制备、纳米颗粒的运输机制,以及在植物基因组工程中的先进应用。在已建立的方法的基础上,我们得出结论,基因组编辑、纳米颗粒介导的基因转化和从头再生技术的结合可以在未来有效地加速作物改良。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c815/10573821/2a081979475a/ijms-24-14836-g001.jpg

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