Department of Plant Pathology, University of Nebraska, Lincoln, NE 68583, U.S.A.
Phytopathology, School of Life Sciences Weihenstephan, Technical University Munich, Germany.
Phytopathology. 2021 Jan;111(1):12-22. doi: 10.1094/PHYTO-11-20-0527-FI. Epub 2020 Dec 18.
With ever-decreasing sequencing costs, research on the population biology of plant pathogens is transitioning from population genetics-using dozens of genetic markers or polymorphism data of several genes-to population genomics-using several hundred to tens of thousands of markers or whole-genome sequence data. The field of population genomics is characterized by rapid theoretical and methodological advances and by numerous steps and pitfalls in its technical and analytical workflow. In this article, we aim to provide a brief overview of topics relevant to the study of population genomics of filamentous plant pathogens and direct readers to more extensive reviews for in-depth understanding. We briefly discuss different types of population genomics-inspired research questions and give insights into the sampling strategies that can be used to answer such questions. We then consider different sequencing strategies, the various options available for data processing, and some of the currently available tools for population genomic data analysis. We conclude by highlighting some of the hurdles along the population genomic workflow, providing cautionary warnings relative to assumptions and technical challenges, and presenting our own future perspectives of the field of population genomics for filamentous plant pathogens.
随着测序成本的不断降低,植物病原菌群体生物学的研究正从使用数十个遗传标记或少数几个基因的多态性数据的群体遗传学,向使用数百到数万标记或全基因组序列数据的群体基因组学转变。群体基因组学领域的特点是理论和方法的快速发展,以及在技术和分析工作流程中有许多步骤和陷阱。在本文中,我们旨在简要概述丝状植物病原菌群体基因组学研究的相关主题,并为深入了解该主题提供更广泛的综述。我们简要讨论了不同类型的群体基因组学启发的研究问题,并深入了解了可用于回答这些问题的采样策略。然后,我们考虑了不同的测序策略、数据处理的各种选择以及一些现有的群体基因组数据分析工具。最后,我们强调了群体基因组学工作流程中的一些障碍,就假设和技术挑战提供了警示,并提出了我们自己对丝状植物病原菌群体基因组学领域的未来展望。