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Grass Lignocellulose: Strategies to Overcome Recalcitrance

机译:草木素纤维素:克服顽固性的策略

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摘要

Grass lignocelluloses are limited in bioconversion by aromatic constituents, which include both lignins and phenolic acids esters. Histochemistry, ultraviolet absorption microspectrophotornetry, and response to microorganisms and specific enzymes have been used to determine the significance of aro-matics toward recalcitrance. Coniferyl lignin appears to be the most effective limitation to biodegradation, existing in xylem cells of vascular tissues; cell walls with syringyl lignin, for example, leaf sclerenchyma, are less recalcitrant. Esterified phenolic acids, i.e., ferulic and p-coumaric acids, often constitute a major chemical limitation in nonlignified cell walls to biodegradation in grasses, especially warm-season species. Methods to improve biodegrad-ability through modification of aromatics include: plant breeding, use of lignin-degrading white-rot fungi, and addition of esterases. Plant breeding for new cultivars has been especially effective for nutritionally improved forages, for example, bermudagrasses. In laboratory studies, selective white-rot fungi that lack cellulases delignified the lignocellulosic materials and improved fermentation of residual carbohydrates. Phenolic acid esterases released p-coumaric and ferulic acids for potential coproducts, improved the available sugars for fermentation, and improved biodegradation. The separation and removal of the aromatic components for coproducts, while enhancing the availability of sugars for bioconversion, could improve the economics of bioconversion.
机译:草木素纤维素的生物转化受到芳香成分的限制,芳香成分包括木质素和酚酸酯。组织化学,紫外线吸收显微分光光度法以及对微生物和特定酶的反应已被用来确定芳香族化合物对顽固性的重要性。针叶树木质素似乎是生物降解的最有效限制,存在于血管组织木质部细胞中。带有丁香基木质素的细胞壁(例如,叶片硬化)的顽固性较低。酯化的酚酸,即阿魏酸和对香豆酸,通常在非木质化的细胞壁中构成了主要的化学限制,导致草尤其是暖季物种生物降解。通过修饰芳香族化合物来提高生物降解能力的方法包括:植物育种,使用木质素降解白腐真菌和添加酯酶。新品种的植物育种对于营养改良的草料(例如百慕大草)尤其有效。在实验室研究中,缺乏纤维素酶的选择性白腐真菌使木质纤维素材料脱木质素,并改善了残留碳水化合物的发酵。苯酚酸酯酶释放了对香豆酸和阿魏酸用于潜在的副产物,改善了可用于发酵的糖类,并改善了生物降解性。分离和去除副产物的芳族成分,同时提高了用于生物转化的糖的利用率,可以提高生物转化的经济性。

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