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1.
目的:预处理对木质纤维素降解的影响.方法:从土壤中分离筛选到高纤维素酶活的黏细菌菌株So ce sh1008.该菌具有CMC酶活(CMCase)及微晶纤维素酶活性.研究NaOH联合黏细菌降解盐蒿、稻草、棉花秸秆和甘蔗渣四种木质纤维素的情况.结果:碱(2% NaOH) -黏细菌处理的方法优于黏细菌-碱的方法,其中降解棉花秸秆降解效果最明显,以5.0g木质纤维素为原料,其最终干重损失达2.1g,溶液中总糖含量和还原糖含量均值分别为12.8 mg/mL和0.93 mg/mL.酵母菌发酵产乙醇的研究结果表明,最佳发酵时间为47h,碱-黏细菌甘蔗渣降解液发酵效果最好,乙醇产出达6.0%.结论:黏细菌联合2% NaOH能有效降解甘蔗渣,提高乙醇产量.  相似文献   
2.
Thermotolerant Emericella nidulans NK-62 was isolated from bird nesting material and was tested for its ability to produce xylanase. The fungus when grown on a medium containing wheat bran (2% w/v) supplemented with Czapek's mineral salt solution at 45 °C for 7 days produced 362 IU/ml of xylanase (EC 3.2.1.8). The specific activity of E. nidulans NK-62 xylanase was found to be 275 IU/mg of total protein. The enzyme was found to be active over a broad temperature and pH range with 60 °C as optimum temperature for enzyme activity. The enzyme was stable at 50 °C and its half-life at 55 °C was 45 min. -xylosidase (EC 3.2.1.37) and carboxymethylcellulase (EC 3.2.1.4) activities, 0.018 and 0.21 IU/ml respectively, were also noticed. The fungus was screened for its ability to produce xylanase on four different lignocellulosic substrates. It produced 318.9 IU/ml of cellulase-free xylanase on corn cobs. The fungus could also utilize lentil bran (seed husk of Lens esculentus) and meal of groundnut shells to produce 84.8 and 17.3 IU/ml xylanase respectively.  相似文献   
3.
真菌降解木质纤维素的功能基因组学研究进展   总被引:4,自引:0,他引:4  
田朝光  马延和 《生物工程学报》2010,26(10):1333-1339
木质纤维素利用的核心问题之一是生物质的降解,即如何将生物质由高聚大分子降解为可发酵的小分子糖,又称为糖化。自然界中向胞外大量分泌降解生物质酶类的微生物主要是真菌,研究真菌木质纤维素降解途径的分子机理对生物质的综合利用意义重大,是木质纤维素能否实现全面生物炼制的关键之一。以下将针对真菌降解木质纤维素的研究进展,特别是对利用功能基因组学所取得的进展进行评述。  相似文献   
4.
Sugarcane bagasse is an important lignocellulosic by-product with potential for conversion to biofuels and chemicals in biorefinery. As a step towards an understanding of microbial diversity and the processes existing in bagasse collection sites, the microbial community in industrial bagasse feedstock piles was investigated. Molecular biodiversity analysis of 16S rDNA sequences revealed the presence of a complex bacterial community. A diverse group of mainly aerobic and facultative anaerobic bacteria was identified reflecting the aerobic and high temperature microenvironmental conditions under the pile surface. The major bacterial taxa present were identified as Firmicutes, Alpha- and Gammaproteobacteria, Acidobacteria, Bacteroidetes, and Actinobacteria. Analysis of the eukaryotic microbial assemblage based on an internal transcribed spacer revealed the predominance of diverse cellulolytic and hemicellulolytic ascomycota. A microbial interaction model is proposed, focusing on lignocellulose degradation and methane metabolism. The insights into the microbial community in this study provide a basis for efficient utilization of bagasse in lignocellulosic biomass-based industries.  相似文献   
5.
This study conducted quantitative kinetic modeling and in situ and temporally resolved measurements of adsorption, desorption, and re-adsorption of a commercial endoglucanase in lignocellulosic suspensions. The study defined a cellulase adsorption and desorption competition parameter, a pseudo rate of binding and desorption, binding and desorption capacity, as well as cellulase-binding reversibility (a thermodynamic property) and recyclability (a engineering parameter). The results indicate that both substrate chemical and physical structures play important roles in cellulase binding and desorption. Binding of a commercial cellulase onto a cellulosic substrate was reversible. Bindings to two different lignocellulosic substrates were almost irreversible. While lignin and its structure positively affect binding capacity to substrate, they negatively affect cellulase recyclability. Collapsing of substrate pores reduced cellulose accessibility and cellulase-binding capacity and increased reversibility and recyclability. Increasing temperature and pH increase cellulase desorption and increased binding reversibility and capacity. This study lays the foundation for developing effective cellulase recycling strategies.  相似文献   
6.
通过高效液相色谱(HPLC)、高分辨率质谱(HRMS)和~H和~(13)C核磁共振(NMR)证明1株球毛壳菌Chaetomiumglobosum NKl02产生的杀根结线虫(Meloidogyne spp.)成分为球毛壳甲素(Chaetoglobosin A)。C.globosum NK102能够利用微晶纤维素、杨树叶和木屑合成ChA。在12 d发酵液中,3种培养基获得的ChA产量由高到低的顺序为PDA、杨树叶、微晶纤维素和木屑,产量分别为26.49、9.38、4.47和0.47 mg/L。通过在微晶纤维素培养基中添加表观遗传沉默抑制药物表明:100μmol/L 5′-AZA的添加使得ChA的产量提高至原来的3.6倍,100μmol/L SAHA将ChA的产量提高到原来的2.4倍,DMSO使得ChA的产量提高到原来的1.7倍。这个结果预示ChA的合成的某些基因受到表观遗传调控。  相似文献   
7.
The fate of lignin in water and sediment of the Garonne river (France) and of a pond in its floodplain was examined using specifically labeled [14C-lignin] lignocelluloses. No significant differences appeared in the mineralization rate of alder, poplar or willow [14C-lignin] in running water samples. Conversion of total radioactivity to 14CO2 ranged between 18.7% and 24.4% after 120 days of incubation. Degree of 14C-labeled lignin mineralization in standing water and sediments was clearly lower, especially in submerged sediments, and was correlated with oxygen supply. After 60 days of incubation 3.3% to 7.9% of the 14C-labeled lignin was recovered in water samples as dissolved organic carbon originating from microbial metabolism. In water extracts from sediment the percentage of dissolved organic 14C was only 0.4% to 1.3% of the applied activity. In the humic fraction extracted from sediments it did not exceed 4.4% which was much lower than in soils. No significant difference appeared between river and pond conditions for humic substances formation.  相似文献   
8.
不同纤维素原料超临界水解的研究   总被引:2,自引:0,他引:2  
分别以稻草秸秆、经预处理的稻草秸秆、脱脂棉、微晶纤维素和定性滤纸为原材料,利用间歇式的超临界反应设备,在400℃的盐浴中进行木质纤维素的超临界水解,采用3,5-二硝基水杨酸(DNS)法对产物中的还原糖进行测定,研究反应时间对不同纤维素原料水解产糖的影响。结果表明:在超临界条件下,不同原料在较短的时间内还原糖含量均出现峰值,随着反应时间的延长还原糖产量呈现下降的趋势;稻秆、预处理后的稻秆、脱脂棉、微晶纤维素和定性滤纸的最大产糖量分别为7.42、9.05、12.55、18.01和14.24 g/L;与此对应的最佳反应时间分别为3.5、4、3、3、4 min;对应的最大还原糖产率分别为14.84%、18.10%、25.10%、36.02%、28.48%。  相似文献   
9.
利用植物木质纤维资源发酵产乙醇越来越受到人们的重视,但是要达到工业生产仍然存在很多难题。最近在利用植物基因工程技术改善植物自身性状,以利于能源植物的研究方面取得了一定的进展,这些研究包括减少植物自身细胞壁中的木质素含量、细胞中积累表达纤维素酶和木聚耱酶等的方法,使产生的生物质更利于降解利用。  相似文献   
10.
Biomass from dedicated crops is expected to contribute significantly to the replacement of fossil resources. However, sustainable bioenergy cropping systems must provide high biomass production and low environmental impacts. This study aimed at quantifying biomass production, nutrient removal, expected ethanol production, and greenhouse gas (GHG) balance of six bioenergy crops: Miscanthus × giganteus, switchgrass, fescue, alfalfa, triticale, and fiber sorghum. Biomass production and N, P, K balances (input‐output) were measured during 4 years in a long‐term experiment, which included two nitrogen fertilization treatments. These results were used to calculate a posteriori ‘optimized’ fertilization practices, which would ensure a sustainable production with a nil balance of nutrients. A modified version of the cost/benefit approach proposed by Crutzen et al. (2008), comparing the GHG emissions resulting from N‐P‐K fertilization of bioenergy crops and the GHG emissions saved by replacing fossil fuel, was applied to these ‘optimized’ situations. Biomass production varied among crops between 10.0 (fescue) and 26.9 t DM ha?1 yr?1 (miscanthus harvested early) and the expected ethanol production between 1.3 (alfalfa) and 6.1 t ha?1 yr?1 (miscanthus harvested early). The cost/benefit ratio ranged from 0.10 (miscanthus harvested late) to 0.71 (fescue); it was closely correlated with the N/C ratio of the harvested biomass, except for alfalfa. The amount of saved CO2 emissions varied from 1.0 (fescue) to 8.6 t CO2eq ha?1 yr?1 (miscanthus harvested early or late). Due to its high biomass production, miscanthus was able to combine a high production of ethanol and a large saving of CO2 emissions. Miscanthus and switchgrass harvested late gave the best compromise between low N‐P‐K requirements, high GHG saving per unit of biomass, and high productivity per hectare.  相似文献   
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