Bae Bin, Kim Minseek, Kim Sinil, Ro Hyeon-Su
Department of Bio and Medical Big Data (BK4 program) and Research Institute of Life Sciences, Gyeongsang National University, Jinju, Republic of Korea.
Mycobiology. 2021 Apr 26;49(3):280-284. doi: 10.1080/12298093.2021.1911401. eCollection 2021.
Mushroom strains of Polyporales from the genera , , , , and were explored in terms of mycelial growth characteristics for the application of mushroom mycelia as alternative sources of materials replacing fossil fuel-based materials. Among the 64 strains of Polyporales, LBS5496GL was selected as the best candidate because it showed fast mycelial growth with high mycelial strength in both the sawdust-based solid medium and the potato dextrose liquid plate medium. Some of the Polyporales in this study have shown good mycelial growth, however, they mostly formed mycelial mat of weak physical strength. The higher physical strength of mycelial mat by LBS5496GL was attributed to its thick hyphae with the diameter of 13 µm as revealed by scanning electron microscopic analysis whereas the hyphae of others exhibited less than 2 µm. Glycerol and skim milk supported the best mycelial growth of LBS5496GL as a carbon and a nitrogen source, respectively.
对来自、、、和属的多孔菌目蘑菇菌株进行了菌丝体生长特性研究,以探讨蘑菇菌丝体作为替代化石燃料基材料的材料来源的应用。在64株多孔菌目菌株中,LBS5496GL被选为最佳候选菌株,因为它在木屑固体培养基和马铃薯葡萄糖液体平板培养基中均表现出快速的菌丝体生长且菌丝体强度高。本研究中的一些多孔菌目菌株显示出良好的菌丝体生长,然而,它们大多形成了物理强度较弱的菌丝体垫。扫描电子显微镜分析显示,LBS5496GL的菌丝体垫具有较高的物理强度,这归因于其直径为13 µm的粗壮菌丝,而其他菌株的菌丝直径小于2 µm。甘油和脱脂奶分别作为碳源和氮源,对LBS5496GL的菌丝体生长支持效果最佳。