Fungal drops: a novel approach for macro- and microscopic analyses of fungal mycelial growth.

microLife Pub Date : 2023-10-18 eCollection Date: 2023-01-01 DOI:10.1093/femsml/uqad042
Matteo Buffi, Guillaume Cailleau, Thierry Kuhn, Xiang-Yi Li Richter, Claire E Stanley, Lukas Y Wick, Patrick S Chain, Saskia Bindschedler, Pilar Junier
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Abstract

This study presents an inexpensive approach for the macro- and microscopic observation of fungal mycelial growth. The 'fungal drops' method allows to investigate the development of a mycelial network in filamentous microorganisms at the colony and hyphal scales. A heterogeneous environment is created by depositing 15-20 µl drops on a hydrophobic surface at a fixed distance. This system is akin to a two-dimensional (2D) soil-like structure in which aqueous-pockets are intermixed with air-filled pores. The fungus (spores or mycelia) is inoculated into one of the drops, from which hyphal growth and exploration take place. Hyphal structures are assessed at different scales using stereoscopic and microscopic imaging. The former allows to evaluate the local response of regions within the colony (modular behaviour), while the latter can be used for fractal dimension analyses to describe the hyphal network architecture. The method was tested with several species to underpin the transferability to multiple species. In addition, two sets of experiments were carried out to demonstrate its use in fungal biology. First, mycelial reorganization of Fusarium oxysporum was assessed as a response to patches containing different nutrient concentrations. Second, the effect of interactions with the soil bacterium Pseudomonas putida on habitat colonization by the same fungus was assessed. This method appeared as fast and accessible, allowed for a high level of replication, and complements more complex experimental platforms. Coupled with image analysis, the fungal drops method provides new insights into the study of fungal modularity both macroscopically and at a single-hypha level.

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真菌滴剂:真菌菌丝生长的宏观和微观分析的新方法。
本研究为真菌菌丝生长的宏观和微观观察提供了一种廉价的方法。“真菌滴”方法允许在菌落和菌丝尺度上研究丝状微生物菌丝网络的发展。在疏水表面以固定距离沉积15-20µl液滴,形成异质环境。该系统类似于二维(2D)类土结构,其中水穴与充满空气的孔隙混合在一起。将真菌(孢子或菌丝)接种到其中一个液滴中,菌丝从液滴中生长和探索。菌丝结构在不同的尺度评估使用立体和显微成像。前者允许评估群体内区域的局部响应(模块化行为),而后者可以用于分形维数分析来描述菌丝网络结构。该方法在多个物种中进行了测试,以支持多物种的可移植性。此外,还进行了两组实验,以证明其在真菌生物学中的应用。首先,研究了尖孢镰刀菌菌丝重组对不同营养浓度斑块的反应。其次,评估了与土壤细菌恶臭假单胞菌相互作用对同一真菌定殖的影响。这种方法看起来快速且易于使用,允许高水平的复制,并补充了更复杂的实验平台。结合图像分析,真菌滴法为宏观和单菌丝水平的真菌模块化研究提供了新的见解。
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