McGaley Jennifer, Schneider Ben, Paszkowski Uta
Department of Plant Sciences, Crop Science Centre, University of Cambridge, Cambridge, UK.
Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.
J Microsc. 2025 Mar;297(3):289-303. doi: 10.1111/jmi.13313. Epub 2024 May 15.
Arbuscular mycorrhizal (AM) symbiosis, the nutritional partnership between AM fungi and most plant species, is globally ubiquitous and of great ecological and agricultural importance. Studying the processes of AM symbiosis is confounded by its highly spatiotemporally dynamic nature. While microscopy methods exist to probe the spatial side of this plant-fungal interaction, the temporal side remains more challenging, as reliable deep-tissue time-lapse imaging requires both symbiotic partners to remain undisturbed over prolonged time periods. Here, we introduce the AMSlide: a noninvasive, high-resolution, live-imaging system optimised for AM symbiosis research. We demonstrate the AMSlide's applications in confocal microscopy of mycorrhizal roots, from whole colonisation zones to subcellular structures, over timeframes from minutes to weeks. The AMSlide's versatility for different microscope set-ups, imaging techniques, and plant and fungal species is also outlined. It is hoped that the AMSlide will be applied in future research to fill in the temporal blanks in our understanding of AM symbiosis, as well as broader root and rhizosphere processes.
丛枝菌根(AM)共生是AM真菌与大多数植物物种之间的营养伙伴关系,在全球范围内普遍存在,具有重要的生态和农业意义。AM共生过程因其高度时空动态性而难以研究。虽然存在显微镜方法来探究这种植物-真菌相互作用的空间方面,但时间方面仍然更具挑战性,因为可靠的深层组织延时成像要求两个共生伙伴在较长时间内不受干扰。在此,我们介绍AM载玻片:一种针对AM共生研究优化的非侵入性、高分辨率实时成像系统。我们展示了AM载玻片在菌根根系共聚焦显微镜中的应用,从整个定殖区域到亚细胞结构,时间范围从几分钟到几周。还概述了AM载玻片在不同显微镜设置、成像技术以及植物和真菌物种方面的通用性。希望AM载玻片将在未来的研究中得到应用,以填补我们对AM共生以及更广泛的根系和根际过程理解中的时间空白。