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Comparative study of changes in composition and structure during sequential fungal pretreatment of non-sterile lignocellulosic feedstocks

机译:非无菌木质纤维素原料顺序真菌预处理过程中组成与结构变化的比较研究

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Fungal pretreatment with the white rot fungus Ceriporiopsis subvermispora was performed under non-sterile conditions for four different feedstocks, corn stover, miscanthus, softwood, and hardwood, using a sequential inoculation process that employed fungal-colonized feedstock as inoculum. Fungal pretreatment improved the enzymatic digestibility of unsterilized hardwood, softwood, and miscanthus after the first generation of the sequential process, increasing the glucose yield by 2-, 3- and 4.5- fold, and the xylose yield by 9-, 7- and 10- fold, respectively. However, the fungal pretreatment of unsterilized feedstocks was unsuccessful for corn stover throughout the sequential process and for all feedstocks for the second and third generation. Modifications in feedstock structure and composition were analyzed using microscopy, spectroscopy, and thermogravimetric analysis, and showed that the effects of fungal pretreatment with C. subvermispora were feedstock-dependent. A significant fungal colonization was observed in all the fungal pretreated feedstocks, but an extensive cell wall degradation was only detected in miscanthus and hardwood. Lignin-to-cellulose ratio decreased in all successful fungal pretreated feedstocks, but the lignin units (syringyl, guaiacyl, or p-hydroxyphenyl units) that were preferentially degraded varied with each feedstock. Interestingly, C. subvermispora was able to degrade terpenes from the pine resin during the fungal pretreatment of pine wood (softwood).
机译:使用序贯接种过程在四种不同原料,玉米秸秆,Miscanthus,软木和硬木的非无菌条件下进行真菌预处理亚血管孢子酰胺。真菌预处理改善了第一代顺序过程后烯醇化硬木,软木和MISCanthus的酶消化率,将葡萄糖产率提高2-,3-和4.5倍,木糖产率通过9-,7-和10 - 分别折叠。然而,在整个顺序过程中对玉米秸秆的真菌预处理是不成功的,并且用于第二代和第三代的所有原料。使用显微镜,光谱学和热重分析分析原料结构和组合物的修饰,并显示真菌预处理与C.亚血管孢子的影响依赖于原料。在所有真菌预处理原料中观察到显着的真菌殖民化,但在Miscanthus和硬木中仅检测到广泛的细胞壁降解。所有成功的真菌预处理原料中的木质素到纤维素比下降,但是优先降解的木质素单位(注射器,胍基或对羟基苯基单位)随着每个原料而变化。有趣的是,C. Subvermispora能够在松木(软木)的真菌预处理期间从松树树脂中降解萜烯。

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