Laboratory of Edible Fungi, Institute of Technology of Agricultural Products (ITAP), Hellenic Agricultural Organization-Demeter, 1 Sofokli Venizelou Street, 14123, Lykovryssi, Attiki, Greece.
Appl Microbiol Biotechnol. 2017 Jun;101(12):5213-5222. doi: 10.1007/s00253-017-8251-3. Epub 2017 Mar 30.
Spent mushroom substrate (SMS) of Pleurotus ostreatus was supplemented with wheat bran and soybean flour in various proportions to obtain C/N ratios of 10, 20, and 30, and their effect was evaluated in successive cultivation of Pleurotus ostreatus, Pleurotus pulmonarius, Ganoderma adspersum, Ganoderma resinaceum, and Lentinula edodes strains with respect to mycelium growth rate, biomass concentration, recovery of the enzyme laccase and crude exopolysaccharides, and also with additional fruiting body production. All fungi showed the highest growth rate on unamended SMS (C/N 30), with G. resinaceum being the fastest colonizer (Kr = 9.84 mm day), while biomass concentration maximized at C/N 10. Moreover, supplementation affected positively laccase activity, with P. pulmonarius furnishing the highest value (44,363.22 U g) at C/N 20. On the contrary, L. edodes growth, fruiting, and laccase secretion were not favored by SMS supplementation. Fruiting body formation was promoted at C/N 30 for Ganoderma and at C/N 20 for Pleurotus species. Exopolysaccharide production of further studied Pleurotus strains was favored at a C/N 20 ratio, at the initial stage of SMS colonization. The obtained results support the potential effective utilization of supplemented SMS for laccase production from Ganoderma spp. and for new fruiting body production of Pleurotus spp.
利用添加不同比例的废菌糠和豆粉的方法来调整 C/N 比,从而获得 10、20 和 30 这三种不同的 C/N 比,来评价其对糙皮侧耳、肺形侧耳、松乳菇、松口蘑和香菇菌株的菌丝生长速度、生物量浓度、漆酶和粗胞外多糖的回收率以及额外的子实体产量的影响。所有真菌在未调整的废菌糠(C/N 30)上均表现出最高的生长速度,其中松乳菇的生长速度最快(Kr=9.84mm/d),而生物量浓度在 C/N 10 时达到最大值。此外,补充物对漆酶活性有积极的影响,肺形侧耳的漆酶活性最高(44363.22U/g),C/N 比为 20。相反,废菌糠的添加并不利于香菇的生长、结实和漆酶的分泌。在 C/N 30 时有利于灵芝属和在 C/N 20 时有利于糙皮侧耳属的子实体形成。在废菌糠定植的初始阶段,进一步研究的香菇菌株的胞外多糖产量在 C/N 20 时得到了促进。研究结果支持了有效利用补充废菌糠来生产漆酶和获得新的糙皮侧耳属子实体的潜力。