期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
燕麦多糖的纤维素酶降解及理化性质分析 被引量:12
1
作者 陈文 王楠 张民 《中国食品添加剂》 CAS 北大核心 2014年第2期159-163,共5页
燕麦具有很好的营养价值,其活性成分燕麦β-葡聚糖具有多种生理功能,因此在食品工业中有着广泛的应用前景,但由于燕麦多糖的理化性质限制了其在食品工业中的大规模应用,本文通过酶解法对燕麦多糖进行改性,使之符合实际需要。以裸燕麦麸... 燕麦具有很好的营养价值,其活性成分燕麦β-葡聚糖具有多种生理功能,因此在食品工业中有着广泛的应用前景,但由于燕麦多糖的理化性质限制了其在食品工业中的大规模应用,本文通过酶解法对燕麦多糖进行改性,使之符合实际需要。以裸燕麦麸皮为原料提取燕麦多糖,利用单因素实验的方法研究了燕麦多糖的纤维素酶酶解条件,测定了酶解前后燕麦多糖的分子量分布,并进一步研究了酶降解前后燕麦多糖理化性质的差异。结果表明:燕麦多糖的最优酶解条件为纤维素酶添加量76 U/g、pH值为5.5,酶解温度为55℃、酶解时间为1.5 h;计算可得:经纤维素酶酶解后,燕麦多糖的平均分子量由9.3×103 KDa变为0.94×103 KDa,黏度、吸油性和保湿性均降低,溶解度和吸湿性增强。研究结果为燕麦多糖在食品中的应用提供了理论依据。 展开更多
关键词 燕麦多糖 纤维素酶降解 分子量分布 理化性质
下载PDF
纤维素酶降解大豆细胞壁生产豆腐的研究 被引量:9
2
作者 余蜀宜 王传槐 《食品科学》 EI CAS CSCD 北大核心 2002年第4期79-82,共4页
研究了以大豆为原料,通过浸泡降解大豆细胞壁提取大豆蛋白生产豆腐的生产过程中,添加一定量的高科技生物技术产品“纤维素酶”,来提高浸泡大豆时的胀豆率和豆腐得率及风味的影响因素。结果表明:纤维素酶中所含有的纤维素酶和半纤维... 研究了以大豆为原料,通过浸泡降解大豆细胞壁提取大豆蛋白生产豆腐的生产过程中,添加一定量的高科技生物技术产品“纤维素酶”,来提高浸泡大豆时的胀豆率和豆腐得率及风味的影响因素。结果表明:纤维素酶中所含有的纤维素酶和半纤维素酶在浸泡大豆时起到很好的降解大豆细胞壁的作用。最适宜的工艺条件是:纤维素酶用量为0.1%,30℃恒温浸泡6h,pH值控制在5~6之间。 展开更多
关键词 纤维素酶降解 大豆细胞壁 胀豆率 豆腐得率
下载PDF
Cumulative cellulolytic enzyme activities and initial litter quality in prediction of cellulose degradation in an alpine meadow of the eastern Tibetan Plateau 被引量:1
3
作者 Yamei Chen Yang Liu +3 位作者 Jian Zhang Wanqin Yang Changchun Deng Runlian He 《Journal of Plant Ecology》 SCIE CSCD 2020年第1期51-58,共8页
Aims Plant litter decomposition is a key ecosystem process that determines carbon and nutrient cycling in terrestrial ecosystems.As a main component of litter,cellulose is a vital energy source for the microbes associ... Aims Plant litter decomposition is a key ecosystem process that determines carbon and nutrient cycling in terrestrial ecosystems.As a main component of litter,cellulose is a vital energy source for the microbes associated with litter decomposition.The important role of cellulolytic enzymes in litter cellulose degradation is well understood,but seasonal patterns of cellulose degradation and whether cumulative enzyme activities and litter quality forecast cellulose degradation in an alpine meadow remain elusive,which limits our understanding of cellulose degradation in herbaceous plant litter.Methods A two-year field litterbag experiment involving three dominant species(Ajuga ovalifolia,Festuca wallichanica,and Pedicularis roylei)was conducted in an alpine meadow of the eastern Tibetan Plateau to explore the seasonal patterns of cellulose degradation and how cumulative cellulolytic enzyme activities and initial litter quality impact cellulose degradation.Important findings Our study demonstrates that cellulose degraded rapidly and exceeded 50%during the first year,which mainly occurred in the first growing season(31.9%–43.3%).At two years of decomposition,cellulose degradation was driven by cumulative endoglucanase(R^(2)=0.70),cumulative cellobiohydrolase(R^(2)=0.59)and cumulative 1,4-β-glucosidase(R^(2)=0.57).In addition,the concentrations of cellulose,dissolved organic carbon,total phenol,lignin and lignin/N accounted for 52%–78%of the variation in cellulose degradation during the two years of decomposition.The best model for predicting cellulose degradation was the initial cellulose concentration(R^(2)=0.78).The enzymatic efficiencies and the allocation of cellulolytic enzyme activities were different among species.The cellulolytic enzyme efficiencies were higher in the litter of F.wallichanica with relatively lower quality.For the complete cellulose degradation of the leaf litter,A.ovalifolia and F.wallichanica required 4-fold and 6.7-fold more endoglucanase activity,3-fold and 4.5-fold more cellobiohydrolase activity and 1.2-fold and 1.4-fold more 1,4-β-glucosidase activity,respectively,than those required by P.roylei.Our results demonstrated that although microbial activity and litter quality both have significant impacts on cellulose degradation in an alpine meadow,using cellulose concentration to predict cellulose degradation is a good way to simplify the model of cellulose degradation and C cycling during litter decomposition. 展开更多
关键词 cumulative cellulolytic enzyme cellulose degradation enzyme efficiency initial litter quality
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部