Department of Food and Nutrition, P.O. Box 66, FI-00014, University of Helsinki, Finland.
Department of Microbiology, P.O. Box 56, FI-00014, University of Helsinki, Finland.
J Microbiol Methods. 2023 Sep;212:106794. doi: 10.1016/j.mimet.2023.106794. Epub 2023 Aug 3.
Mycelium-based materials have attracted growing interest, facilitating their development for various new applications. Finding for suitable fungal species and strains enables further technical breakthroughs in their development and quality control. Here, we developed a model solid-state culture system to screen fungal strains efficiently for mycelium-based materials production. A piece of silicone-coated paper set on the general agar plate allows for isolation of the mycelial mat from the substrate. The mycelial growth and density can be evaluated by weighing the mycelial mat. We used the paper substrate after fungal incubation to investigate the relationship between substrate degradation and the contact time with hyphae. It yielded further insights into the fungal decay. Ten basidiomycetes were assessed for their fungal growth and degradation behaviour of the substrate using this method. Pleurotus floridanus FBCC375 showed a dense and elastic mycelial mat and mild degradation of the substrate. A unique decay behaviour was found in Hypsizygus ulmarius FBCC573 and Trametes versicolor FBCC564. They indicated a positional imbalance in the decay activity within the colony. This simple method is helpful for screening fungal strains and facilitates the further development of mycelium-based materials.
基于菌丝体的材料引起了越来越多的关注,这促进了它们在各种新应用中的发展。寻找合适的真菌种类和菌株,可以在其开发和质量控制方面实现进一步的技术突破。在这里,我们开发了一种模型固态培养系统,以有效地筛选用于生产基于菌丝体的材料的真菌菌株。在普通琼脂平板上设置的一块涂有硅树脂的纸可以将菌丝体垫与基质分离。通过称重菌丝体垫,可以评估菌丝体的生长和密度。我们在真菌孵育后使用纸质基质来研究基质降解与菌丝体接触时间之间的关系。这进一步深入了解了真菌的腐烂情况。使用这种方法,评估了十种担子菌的真菌生长和基质降解行为。佛罗里达侧耳 FBCC375 表现出密集且有弹性的菌丝体垫和对基质的轻度降解。在榆生离褶伞 FBCC573 和彩绒革盖菌 FBCC564 中发现了一种独特的腐烂行为。它们表明在菌落内部的腐烂活性存在位置失衡。这种简单的方法有助于筛选真菌菌株,并促进基于菌丝体的材料的进一步开发。