Supmeeprom Surasak, Thammasittirong Anon, Jeennor Sukanya, Sopalun Kathawut, Thammasittirong Sutticha Na-Ranong
Department of Science and Bioinnovation, Faculty of Liberal Arts and Science, Kasetsart University, Nakhon Pathom, Thailand.
Microbial Biotechnology Unit, Faculty of Liberal Arts and Science, Kasetsart University, Nakhon Pathom, Thailand.
Mycology. 2024 Jan 31;15(4):651-664. doi: 10.1080/21501203.2024.2305719. eCollection 2024.
Spent mushroom substrate (SMS), a lignocellulosic waste after mushroom production is generally discarded without proper management. There is increasing interest in the sustainable transformation of lignocellulosic waste into high-value products. Within this context, the present study investigated the potential of the SMS from the cultivation of and on rubber tree wood sawdust as substrates for xylooligosaccharides (XOS) production. SMS samples from these two edible mushrooms were extracted using alkaline xylan extraction, producing maximum true recovery amounts of xylan in the range 34.61%-37.49% using 18% NaOH at 70 °C for 3 h. Production of XOS from alkaline-extracted xylan from the SMS samples of both mushroom species using economically crude xylanases from KUB2 resulted in XOS (X2-X5) production of 241.47-249.04 mg/g, with X3 as the predominant XOS product. The produced XOS had excellent prebiotic activity and 2,2'-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging activity and contained high total phenolic contents. The combined beneficial bioactivities in terms of prebiotic and antioxidant properties suggested that the XOS produced from sawdust-based SMS samples of and could be promising ingredients for both food and pharmaceutical applications.
废弃菌糠(SMS)是蘑菇生产后的木质纤维素废弃物,通常未经妥善管理就被丢弃。将木质纤维素废弃物可持续转化为高价值产品的兴趣与日俱增。在此背景下,本研究调查了以橡胶树木屑为底物栽培[两种蘑菇名称未给出]所产生的废弃菌糠作为木寡糖(XOS)生产底物的潜力。从这两种食用菌中提取的废弃菌糠样品采用碱性木聚糖提取法,在70℃下用18%的氢氧化钠处理3小时,木聚糖的最大真实回收率在34.61%-37.49%范围内。使用来自[KUB2相关信息未明确]的经济实惠的粗木聚糖酶,从这两种蘑菇的废弃菌糠样品的碱性提取木聚糖中生产木寡糖,木寡糖(X2-X5)的产量为241.47-249.04毫克/克,其中X3是主要的木寡糖产品。所生产的木寡糖具有优异的益生元活性和2,2'-二苯基-1-苦基肼基(DPPH)自由基清除活性,并且含有高总酚含量。在益生元和抗氧化特性方面的综合有益生物活性表明,从以木屑为基础的[两种蘑菇名称未给出]废弃菌糠样品中生产的木寡糖可能是食品和制药应用中有前景的成分。