نتایج جستجو برای: total cellulase

تعداد نتایج: 803889  

Journal: :Biomass Conversion and Biorefinery 2021

The efficient conversion of hemicellulose and cellulose into reducing sugars remains as one major challenge for biorefinery lignocellulosic biomass. In this work, saccharification corncob in the aqueous phase was effectively realized via pretreatment by magnetic carbon-based solid acid (MMCSA) catalyst, combined with subsequent situ enzymatic hydrolysis (occurring same system after separation M...

ژورنال: Medical Laboratory Journal 2017
Naseri Poor, Tabassom, Nasrollahnejad, saeed, Rahnama, Kamran, Shahbazi, Samira,

ABSTRACT        Background and Objectives: Cellulose is a major component of plant biomass, which can be converted into biofuels and valuable chemicals. The key step in utilization of this organic material is its hydrolysis into soluble sugars. This study evaluated cellulase production by Trichoderma harzianum under different pH values, temperatures and incubation...

2016
Shuai Zhao Yu-Si Yan Qi-Peng He Lin Yang Xin Yin Cheng-Xi Li Li-Chun Mao Lu-Sheng Liao Jin-Qun Huang Shang-Bo Xie Qing-Dong Nong Zheng Zhang Lei Jing Ya-Ru Xiong Cheng-Jie Duan Jun-Liang Liu Jia-Xun Feng

BACKGROUND The filamentous fungus Penicillium oxalicum is a potential alternative to Trichoderma reesei for industrial production of a complete cellulolytic enzyme system for a bio-refinery. Comparative omics approaches can support rational genetic engineering and/or breeding of filamentous fungi with improved cellulase production capacity. In this study, comparative genomic, transcriptomic and...

Journal: :Nucleic acids research 1990
C Cheng N Tsukagoshi S Udaka

The filamentous fungus, Trichoderma viride, secretes large amounts of several cellulolytic enzymes (1). We report here the nucleotide sequence of the gene coding for exo-cellobiohydrolase (CBH), which accounts for more than 65% of the total cellulase content. This gene was isolated from a T. viride genomic library using a 30mer oligonucleotide based on the sequence of the reported CBHI gene of ...

2017
Preethi Jampala Satish Tadikamalla M Preethi Swathy Ramanujam Kiran Babu Uppuluri

Application of multiple response optimizations using desirability function in the production of microbial metabolites improves economy and efficiency. Concurrent production of cellulase and xylanase in Trichoderma reesei NCIM 1186 using an agricultural weed, Prosopis juliflora pods, was studied. The main aim of the study was to optimize significant medium nutrient parameters for maximization of...

Journal: :Molecules 2017
Junqi Jia Weiwei Zhang Zengjie Yang Xianling Yang Na Wang Xiaoqi Yu

The utilization of renewable biomass resources to produce high-value chemicals by enzymatic processes is beneficial for alternative energy production, due to the accelerating depletion of fossil fuels. As immobilization techniques can improve enzyme stability and reusability, a novel magnetic cross-linked cellulase aggregate has been developed and applied for biomass bioconversion. The crosslin...

Journal: :Bioresource technology 2011
Qing Qing Charles E Wyman

Commercial cellulase complexes produced by cellulolytic fungi contain enzyme activities that are capable of hydrolyzing non-cellulosic polysaccharides in biomass, primarily hemicellulose and pectins, in addition to cellulose. However, xylanase activities detected in most commercial enzyme preparations have been shown to be insufficient to completely hydrolyze xylan, resulting in high xylooligom...

2015
Aliyu Salihu Olagunju Abbas Abdullahi Balarabe Sallau Md. Zahangir Alam

Different agricultural residues were considered in this study for their ability to support cellulolytic enzyme production by Aspergillus niger. A total of eleven agricultural residues including finger millet hulls, sorghum hulls, soybean hulls, groundnut husk, banana peels, corn stalk, cassava peels, sugarcane bagasse, saw dust, rice straw and sheanut cake were subjected to three pretreatment (...

2014
Jijiao Zeng Deepak Singh Difeng Gao Shulin Chen

BACKGROUND A key focus in sustainable biofuel research is to develop cost-effective and energy-saving approaches to increase saccharification of lignocellulosic biomass. Numerous efforts have been made to identify critical issues in cellulose hydrolysis. Aerobic fungal species are an integral part of the carbon cycle, equip the hydrolytic enzyme consortium, and provide a gateway for understandi...

2017
Hanbyul Lee Young Min Lee Young Mok Heo Joo-Hyun Hong Seokyoon Jang Byoung Jun Ahn Sung-Suk Lee Jae-Jin Kim

The morphological optimization of Trichoderma harzianum was carried out using several surfactants to achieve increased cellulase production. Addition of the surfactants to the culture medium successfully modified the fungal morphology from an aggregated form to a dispersed form. Optimization of the fungal morphology increased cellulase activity up to 177%. The morphologically optimized conditio...

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