Jurak Edita, Punt Arjen M, Arts Wim, Kabel Mirjam A, Gruppen Harry
Wageningen University, Laboratory of Food Chemistry, Bornse Weilanden 9, 6708 WG, Wageningen, The Netherlands.
C4C Grondstoffen B.V. Driekronenstraat 6, 6596 MA, Milsbeek, The Netherlands.
PLoS One. 2015 Oct 5;10(10):e0138909. doi: 10.1371/journal.pone.0138909. eCollection 2015.
In wheat straw based composting, enabling growth of Agaricus bisporus mushrooms, it is unknown to which extent the carbohydrate-lignin matrix changes and how much is metabolized. In this paper we report yields and remaining structures of the major components. During the Phase II of composting 50% of both xylan and cellulose were metabolized by microbial activity, while lignin structures were unaltered. During A. bisporus' mycelium growth (Phase III) carbohydrates were only slightly consumed and xylan was found to be partially degraded. At the same time, lignin was metabolized for 45% based on pyrolysis GC/MS. Remaining lignin was found to be modified by an increase in the ratio of syringyl (S) to guaiacyl (G) units from 0.5 to 0.7 during mycelium growth, while fewer decorations on the phenolic skeleton of both S and G units remained.
在以小麦秸秆为原料的堆肥过程中,双孢蘑菇得以生长,但目前尚不清楚碳水化合物-木质素基质在多大程度上发生了变化以及有多少被代谢。在本文中,我们报告了主要成分的产量和剩余结构。在堆肥的第二阶段,50%的木聚糖和纤维素通过微生物活动被代谢,而木质素结构未发生改变。在双孢蘑菇菌丝体生长阶段(第三阶段),碳水化合物仅被少量消耗,且发现木聚糖有部分降解。与此同时,基于热解气相色谱/质谱分析,45%的木质素被代谢。在菌丝体生长过程中,剩余木质素被修饰,紫丁香基(S)与愈创木基(G)单元的比例从0.5增加到0.7,而S和G单元酚骨架上的修饰则减少。