Salcedo Andres F, Purayannur Savithri, Standish Jeffrey R, Miles Timothy, Thiessen Lindsey, Quesada-Ocampo Lina M
Department of Entomology and Plant Pathology, North Carolina State University, Raleigh, NC 27695-7613, USA.
Department of Plant, Soil and Microbial Sciences, Michigan State University, East Lansing, MI 48824, USA.
Plants (Basel). 2021 Feb 25;10(3):435. doi: 10.3390/plants10030435.
Downy mildews affect important crops and cause severe losses in production worldwide. Accurate identification and monitoring of these plant pathogens, especially at early stages of the disease, is fundamental in achieving effective disease control. The rapid development of molecular methods for diagnosis has provided more specific, fast, reliable, sensitive, and portable alternatives for plant pathogen detection and quantification than traditional approaches. In this review, we provide information on the use of molecular markers, serological techniques, and nucleic acid amplification technologies for downy mildew diagnosis, highlighting the benefits and disadvantages of the technologies and target selection. We emphasize the importance of incorporating information on pathogen variability in virulence and fungicide resistance for disease management and how the development and application of diagnostic assays based on standard and promising technologies, including high-throughput sequencing and genomics, are revolutionizing the development of species-specific assays suitable for in-field diagnosis. Our review provides an overview of molecular detection technologies and a practical guide for selecting the best approaches for diagnosis.
霜霉病影响重要农作物,并在全球范围内造成严重的产量损失。准确识别和监测这些植物病原体,尤其是在疾病的早期阶段,是实现有效病害控制的基础。与传统方法相比,诊断分子方法的快速发展为植物病原体的检测和定量提供了更特异、快速、可靠、灵敏和便携的替代方法。在本综述中,我们提供了有关使用分子标记、血清学技术和核酸扩增技术进行霜霉病诊断的信息,突出了这些技术和靶标选择的优缺点。我们强调将病原体在毒力和抗药性方面的变异性信息纳入病害管理的重要性,以及基于标准和有前景的技术(包括高通量测序和基因组学)开发和应用诊断检测方法如何正在彻底改变适用于现场诊断的物种特异性检测方法的发展。我们的综述概述了分子检测技术,并为选择最佳诊断方法提供了实用指南。