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1)  inulinase
菊粉酶
1.
Isolation of inulinase production strain and optimization of its fermentation condition;
菊粉酶菌株的筛选及其产酶条件的优化
2.
Properties and continuous hydrolysis of inulin by immobilized inulinase on cotton cloth;
棉纤维固定化菊粉酶酶学性质及连续降解菊糖的研究
3.
Isolation and purification of inulinase from Aspergilius niger Uγ-2;
黑曲霉Uγ-2胞外菊粉酶的分离纯化
2)  inulase [英]['injuleis]  [美]['ɪnjə,les]
菊粉酶
1.
Specific studies content and result were as follows:(1) Inulase can catalyze levan of Jerusalem artichoke hydrolyze as fructose or fructooligosaccharides.
本文主要采用透明圈初筛等方法筛选出一株黑曲霉A18(Aspergilhts niger 18),采用响应面分析方法优化液体发酵产得外切菊粉酶,利用外切菊粉酶作用于菊芋提取液制备菊芋提取液;然后响应面分析法优化黑曲霉发酵生产菊粉酶的发酵工艺条件。
2.
The high production inulase strain was screened from the soil sample where burdock was planted in Qin Village,Bayou Town,Pei County,Xuzhou.
从徐州沛县河口镇秦庄村牛蒡种植基地取得的土壤样本中,筛选出产菊粉酶的菌株,对从土壤中分离到的40株产菊粉酶的各类菌株进行酶活的测定。
3.
A mutant AL 154 Inulase activity reaches 146.
菊芋富含菊粉,菊粉经菊粉酶一步酶解,可生产高果糖浆。
3)  inulin enzymatic hydrolysis
酶解菊粉
4)  exoinulinase
外切菊粉酶
1.
The expression of exoinulinase from Kluyveromyces marxianus in Pichia pastoris;
克鲁维酵母中外切菊粉酶基因在毕赤酵母中的表达研究
2.
Three of them were identified as exoinulinase,and the rest one mainly contained endoinulinase.
采用硫酸铵分级沉淀、透析脱盐、DEAE-Cellulose离子交换色谱等分离纯化技术,从As-pergillus ficuum菌株混合酶系中分离得到4种菊粉酶组分,应用薄层层析法分离各组分水解菊粉的产物,发现其中3种组分主要含外切菊粉酶,一种主要含有内切菊粉酶
3.
Proved using TLC and HPLC, three bands had exoinulinase activity and two bands had endoinulinase activity.
采用活性聚丙烯酰胺凝胶电泳法对Aspergillusficuum产果聚糖酶体系进行了分离 ,获得8条谱带 ;进一步运用薄层色谱 (TLC)和高效液相色谱 (HPLC)法进行分析 ,发现 8条谱带中有 3条属于外切菊粉酶 ,2条属于内切菊粉酶 ,证明了Aspergillusficuum能同时产内切菊粉酶和外切菊粉酶
5)  endoinulinase
内切菊粉酶
1.
Purification and Properties of Endoinulinase from Chaetomium sp.;
毛壳霉内切菊粉酶的纯化与性质
2.
Three of them were identified as exoinulinase,and the rest one mainly contained endoinulinase.
采用硫酸铵分级沉淀、透析脱盐、DEAE-Cellulose离子交换色谱等分离纯化技术,从As-pergillus ficuum菌株混合酶系中分离得到4种菊粉酶组分,应用薄层层析法分离各组分水解菊粉的产物,发现其中3种组分主要含外切菊粉酶,一种主要含有内切菊粉酶
3.
Proved using TLC and HPLC, three bands had exoinulinase activity and two bands had endoinulinase activity.
采用活性聚丙烯酰胺凝胶电泳法对Aspergillusficuum产果聚糖酶体系进行了分离 ,获得8条谱带 ;进一步运用薄层色谱 (TLC)和高效液相色谱 (HPLC)法进行分析 ,发现 8条谱带中有 3条属于外切菊粉酶 ,2条属于内切菊粉酶 ,证明了Aspergillusficuum能同时产内切菊粉酶和外切菊粉酶
6)  INU1 gene
菊粉酶基因
1.
Study on the INU1 gene recombinant Pichia pastoris GS115 for hydrolysis of sucrose;
菊粉酶基因重组酵母菌水解蔗糖的研究
补充资料:菊甲酸
分子式:C10H16O2
分子量:168.23
CAS号:10453-89-1

性质:性能:淡黄色固体;熔点:43-46℃

制备方法:暂无

用途:暂无

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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