Zhang Wei-Rui, Liu Sheng-Rong, Kuang Yun-Bo, Zheng Shi-Zhong
College of Life Science, Ningde Normal University, Ningde, PR China.
Fujian Higher Education Research Center for Local Biological Resources, Ningde, PR China.
Mycobiology. 2019 Mar 20;47(1):97-104. doi: 10.1080/12298093.2018.1552648. eCollection 2019 Mar.
Mushroom cultivation has gained increased attention in recent years. Currently, only four types of spawn, including sawdust spawn, grain spawn, liquid spawn, and stick spawn, are commonly available for mushroom cultivation. This limited spawn diversity has led to difficulty in selecting suitable inoculum materials in some cultivation. In this study, three small blocks of lignocellulosic agro-wastes and one block of a synthetic matrix were prepared as support for growing in liquid medium. Mycelium-adsorbed blocks were then evaluated for their potential as block spawn for fructification. Our results indicated that the edible fungus was adsorbed and abundantly grew internally and externally on loofah sponge and synthetic polyurethane foam (PUF) supports and also has the ability to attach and grow on the surface of sugarcane bagasse and corncob supports. The mycelia of . adhered on corncob exhibited the highest metabolic activity, while those on the PUF showed the least activity. Mycelial extension rates of block spawns made of agro-waste materials were comparable to that of sawdust spawn, but the block spawn of PUF showed a significantly lower rate. No significant differences in cropping time and yield were observed among cultivations between experimental block spawns and sawdust spawns. Moreover, the corncob block spawn maintained its fruiting potential during an examined period of 6-month storage. The developed block spawn could be practically applied in mushroom cultivation.
近年来,蘑菇栽培越来越受到关注。目前,蘑菇栽培常用的菌种只有四种,包括木屑菌种、谷粒菌种、液体菌种和枝条菌种。这种有限的菌种多样性导致在一些栽培中难以选择合适的接种材料。在本研究中,制备了三块木质纤维素农业废弃物和一块合成基质作为在液体培养基中生长的支撑物。然后评估菌丝吸附块作为结实用块状菌种的潜力。我们的结果表明,食用菌吸附在丝瓜海绵和合成聚氨酯泡沫(PUF)支撑物上,并在其内部和外部大量生长,并且也有能力附着在甘蔗渣和玉米芯支撑物表面并生长。附着在玉米芯上的菌丝表现出最高的代谢活性,而在PUF上的菌丝活性最低。由农业废弃物材料制成的块状菌种的菌丝延伸率与木屑菌种相当,但PUF块状菌种的延伸率明显较低。在实验块状菌种和木屑菌种的栽培之间,未观察到出菇时间和产量的显著差异。此外,玉米芯块状菌种在6个月的储存期内保持了其结实潜力。所开发的块状菌种可实际应用于蘑菇栽培。