Department of Plant Pathology and Environmental Microbiology, and the Huck Institute of the Life Sciences, the Pennsylvania State University, University Park, PA 16802.
Phytopathology. 2021 Jul;111(7):1080-1090. doi: 10.1094/PHYTO-08-20-0322-IA. Epub 2021 Aug 25.
New tools and advanced technologies have played key roles in facilitating basic research in plant pathology and practical approaches for disease management and crop health. Recently, the CRISPR/Cas (clustered regularly interspersed short palindromic repeats/CRISPR-associated) system has emerged as a powerful and versatile tool for genome editing and other molecular applications. This review aims to introduce and highlight the CRISPR/Cas toolkit and its current and future impact on plant pathology and disease management. We will cover the rapidly expanding horizon of various CRISPR/Cas applications in the basic study of plant-pathogen interactions, genome engineering of plant disease resistance, and molecular diagnosis of diverse pathogens. Using the citrus greening disease as an example, various CRISPR/Cas-enabled strategies are presented to precisely edit the host genome for disease resistance, to rapidly detect the pathogen for disease management, and to potentially use gene drive for insect population control. At the cutting edge of nucleic acid manipulation and detection, the CRISPR/Cas toolkit will accelerate plant breeding and reshape crop production and disease management as we face the challenges of 21st century agriculture.
新工具和先进技术在促进植物病理学基础研究以及疾病管理和作物健康的实用方法方面发挥了关键作用。最近,CRISPR/Cas(成簇规律间隔短回文重复/CRISPR 相关)系统已成为基因组编辑和其他分子应用的强大而通用的工具。本综述旨在介绍和强调 CRISPR/Cas 工具包及其对植物病理学和疾病管理的当前和未来影响。我们将涵盖各种 CRISPR/Cas 应用在植物-病原体相互作用的基础研究、植物抗病性的基因组工程以及各种病原体的分子诊断方面的快速扩展前景。以柑橘黄龙病为例,提出了各种基于 CRISPR/Cas 的策略,用于精确编辑宿主基因组以提高抗病性,快速检测病原体以进行疾病管理,并可能利用基因驱动来控制昆虫种群。在核酸操作和检测的前沿,CRISPR/Cas 工具包将加速植物育种并重塑作物生产和疾病管理,以应对 21 世纪农业的挑战。