Mapuranga Johannes, Zhang Na, Zhang Lirong, Chang Jiaying, Yang Wenxiang
College of Plant Protection, Technological Innovation Center for Biological Control of Plant Diseases and Insect Pests of Hebei Province, Hebei Agricultural University, Baoding, China.
Front Microbiol. 2022 Jun 2;13:799396. doi: 10.3389/fmicb.2022.799396. eCollection 2022.
Biotrophic plant pathogenic fungi are widely distributed and are among the most damaging pathogenic organisms of agriculturally important crops responsible for significant losses in quality and yield. However, the pathogenesis of obligate parasitic pathogenic microorganisms is still under investigation because they cannot reproduce and complete their life cycle on an artificial medium. The successful lifestyle of biotrophic fungal pathogens depends on their ability to secrete effector proteins to manipulate or evade plant defense response. By integrating genomics, transcriptomics, and effectoromics, insights into how the adaptation of biotrophic plant fungal pathogens adapt to their host populations can be gained. Efficient tools to decipher the precise molecular mechanisms of rust-plant interactions, and standardized routines in genomics and functional pipelines have been established and will pave the way for comparative studies. Deciphering fungal pathogenesis not only allows us to better understand how fungal pathogens infect host plants but also provides valuable information for plant diseases control, including new strategies to prevent, delay, or inhibit fungal development. Our review provides a comprehensive overview of the efforts that have been made to decipher the effector proteins of biotrophic fungal pathogens and demonstrates how rapidly research in the field of obligate biotrophy has progressed.
活体营养型植物病原真菌分布广泛,是对农业重要作物危害最大的病原生物之一,会导致作物品质和产量大幅损失。然而,专性寄生致病微生物的发病机制仍在研究中,因为它们无法在人工培养基上繁殖并完成其生命周期。活体营养型真菌病原体的成功生存方式取决于它们分泌效应蛋白以操纵或逃避植物防御反应的能力。通过整合基因组学、转录组学和效应子组学,可以深入了解活体营养型植物真菌病原体如何适应其宿主群体。已经建立了高效的工具来破译锈菌与植物相互作用的精确分子机制,以及基因组学和功能流程中的标准化程序,这将为比较研究铺平道路。破译真菌发病机制不仅能让我们更好地了解真菌病原体如何感染宿主植物,还能为植物病害控制提供有价值的信息,包括预防、延缓或抑制真菌发育的新策略。我们的综述全面概述了为破译活体营养型真菌病原体的效应蛋白所做的努力,并展示了专性活体营养领域的研究进展有多迅速。