首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Effect of Physical and Chemical Properties of Oil Palm Empty Fruit Bunch, Decanter Cake and Sago Pith Residue on Cellulases Production by Trichoderma asperellum UPM1 and Aspergillus fumigatus UPM2
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Effect of Physical and Chemical Properties of Oil Palm Empty Fruit Bunch, Decanter Cake and Sago Pith Residue on Cellulases Production by Trichoderma asperellum UPM1 and Aspergillus fumigatus UPM2

机译:油棕空果束,Dec析器滤饼和西米髓残渣的理化性质对曲霉木霉UPM1和烟曲霉UPM2生产纤维素酶的影响

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摘要

The effect of cultivation condition of two locally isolated ascomycetes strains namely Trichoderma asperellum UPM1 and Aspergillus fumigatus UPM2 were compared in submerged and solid state fermentation. Physical evaluation on water absorption index, solubility index and chemical properties of lignin, hemicellulose and cellulose content as well as the cellulose structure on crystallinity and amorphous region of treated oil palm empty fruit bunch (OPEFB) (resulted in partial removal of lignin), sago pith residues (SPR) and oil palm decanter cake towards cellulases production were determined. Submerged fermentation shows significant cellulases production for both strains in all types of substrates. Crystallinity of cellulose and its chemical composition mainly holocellulose components was found to significantly affect the total cellulase synthesis in submerged fermentation as the higher crystallinity index, and holocellulose composition will increase cellulase production. Treated OPEFB apparently induced the total cellulases from T. asperellum UPM1 and A. fumigatus UPM2 with 0.66 U/mg FPase, 53.79 U/mg CMCase, 0.92 U/mg β-glucosidase and 0.67 U/mg FPase, 47.56 U/mg and 0.14 U/mg β-glucosidase, respectively. Physical properties of water absorption and solubility for OPEFB and SPR also had shown significant correlation on the cellulases production.
机译:比较了在深水和固态发酵条件下,两种分离的灰霉菌UPM1和烟曲霉UPM2的培养条件的影响。对西米果木的吸水率,木质素,半纤维素和纤维素含量的溶解度指数和化学性质以及经处理的油棕空果束(OPEFB)(部分去除木质素)结晶度和非晶区的纤维素结构进行物理评估确定了用于纤维素酶生产的髓残渣(SPR)和油棕de水器滤饼。淹没式发酵显示在所有类型的底物中两种菌株均产生大量纤维素酶。发现纤维素的结晶度及其化学组成主要是全纤维素成分,因为较高的结晶度指数会显着影响深层发酵中的总纤维素酶合成,而全纤维素成分将增加纤维素酶的产量。经过处理的OPEFB明显诱导了曲霉UPM1和烟曲霉UPM2的总纤维素酶,分别为0.66 U / mg FPase,53.79 U / mg CMCase,0.92 U / mgβ-葡萄糖苷酶和0.67 U / mg FPase,47.56 U / mg和0.14 U / mgβ-葡萄糖苷酶。 OPEFB和SPR的吸水率和溶解度的物理性质也显示出与纤维素酶生产的显着相关性。

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