基本信息来源于合作网站,原文需代理用户跳转至来源网站获取       
摘要:
Renewable biomass-derived fuels are essential to meet the blend mandates and the sustainability goals. In our first-to-date study, we investigated individual and synergistic consortia of fungal cultures comprising Pycnoporous sanguineus (PS) in combination with Aspergillus oryzae (AO) and Trichoderma harzianum (TH) for production of cellulolytic enzymes using groundnut shell under solid state and submerged liquid fermentation conditions. The innovative consortia closely align with the microbial ecosystems found in nature;consequently, we anticipate a potent and effective cellulolytic enzyme system, which maximises the breakdown of biomass polymers to sugars. Under ternary combination of cultures, cellulase production was highest at 123.0 ± 1 FPU/gds;β-glucosidase production at 875.6 ± 26.4 IU/g dry substrate (gds);and CMCase at 474.95 ± 45.5 IU/gds. β-glucosidase production was highest on the 2nd day at 987.03 ± 64.2 IU/gds while CMCase peaked at 514.97 ± 21.4 IU/gds on 2nd day for PS, maximum cellulase enzyme production was observed on the 6th day at 192.2 ± 0.96 FPU/gds (AO + PS). Present work showed that synergistic combination of fungal cultures for releasing balanced enzyme activities that can efficiently saccharify biomass, such as groundnut shell to sugars, which can subsequently be fermented to various bioproducts and biomaterial monomers. Elaborate characterization studies of enzyme treated groundnut shell revealed prominent physicochemical changes in the hydrolysate, which indicates the changes in biomass are due to the enzymatic action and the growth effects of the consortia;thereby, leading to promising applications for the microbial fortified biomass.
推荐文章
Methane production from rice straw carbon in five different methanogenic rice soils: rates, quantiti
13C-labeled rice straw
Methane production
Rice field soil
Microbial community
Mercury speciation, bioavailability and risk assessment on soil–rice systems from a watershed impact
Mercury and methylmercury
Rice
Mercury speciation and bioavailability
Paddy soil
Risk assessment
Effect on greenhouse gas balance of converting rice paddies to vegetable production
Greenhouse gas balance
Land management change
CH4
N2O
Soil organic carbon
Effect on greenhouse gas balance of converting rice paddies to vegetable production
Greenhouse gas balance
Land management change
CH4
N2O
Soil organic carbon
内容分析
关键词云
关键词热度
相关文献总数  
(/次)
(/年)
文献信息
篇名 Innovative Consortia of Micro and Macro Fungal Systems: Cellulolytic Enzyme Production from Groundnut Shell Biomass and Supportive Structural Analysis
来源期刊 可持续生物质能源系统(英文) 学科 医学
关键词 Mixed CULTURES Fermentation ENZYMATIC Hydrolysis GROUNDNUT SHELL BIOMASS Characterization
年,卷(期) 2018,(3) 所属期刊栏目
研究方向 页码范围 47-66
页数 20页 分类号 R73
字数 语种
DOI
五维指标
传播情况
(/次)
(/年)
引文网络
引文网络
二级参考文献  (0)
共引文献  (0)
参考文献  (0)
节点文献
引证文献  (0)
同被引文献  (0)
二级引证文献  (0)
2018(0)
  • 参考文献(0)
  • 二级参考文献(0)
  • 引证文献(0)
  • 二级引证文献(0)
研究主题发展历程
节点文献
Mixed
CULTURES
Fermentation
ENZYMATIC
Hydrolysis
GROUNDNUT
SHELL
BIOMASS
Characterization
研究起点
研究来源
研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
可持续生物质能源系统(英文)
季刊
2165-400X
武汉市江夏区汤逊湖北路38号光谷总部空间
出版文献量(篇)
144
总下载数(次)
0
总被引数(次)
0
期刊文献
相关文献
推荐文献
论文1v1指导