外切菊粉酶,exoinulinase
1)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
2)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
英文短句/例句

1.Study on Processing Technology of FOS in Jerusalem Artichoke by Endo-inulinase from Aspergillus Niger;黑曲霉内切菊粉酶生产菊芋低聚果糖工艺及应用研究
2.Optimization and Kinetics of Enzymatic Hydrolysis of Aspergillus ficuum EndoinulinaseAspergillus ficuum内切菊粉酶的酶解条件优化及酶解动力学研究
3.Gene Cloning of Aspergillus Niger 9891 Endoinulinase and Its Expression in Pichia Pastoris, and Design of Intermediate Pilot for Inulin-oligosacharides (IOSs) Prodcution;菊粉内切酶基因克隆、表达及菊寡糖中试设计
4.Expression of Endo-inulinase from Aspergillus Niger in High-density Cultivation of Recombinant Pichia Methanolica and the Production of Inulo-oligosaccharides;基因工程菊粉内切酶毕赤酵母表达优化与菊寡糖制备研究
5.The Hydrolysis of Inulin with Immobilized Inulinase on Cotton Cloth;棉织物固定化菊粉酶酶解菊粉的研究
6.Chemical Modification of Aspergillus ficuum InulinasesAspergillus ficuum菊粉酶的化学修饰
7.Studies on the Screening of Filamentous Fungi and the Production of Inulinase;产菊粉酶丝状真菌的筛选及其菊粉酶的研究
8.Characteristics and Enzyme System of Inulinase from Penicillium sp.B01青霉菌B01产菊粉酶特性的研究及菊粉酶系分析
9.Hydrolysis of Jerusalem Artichoke by Inulinase Degrading Microorganism;产菊粉酶微生物水解菊芋粉的应用研究
10.The studies on enzyme system of Aspergillus niger strains with high inulinase activity高产菊粉酶的黑曲霉菌株产酶酶系分析与研究
11.The Study of Solid-state Fermentation for Inulinase Production and Its Protective Agent菊粉酶的固态发酵及其保护剂的研究
12.Intrinsic Fluorescence of Aspergillus ficuum InulinasesAspergillus ficuum菊粉酶的荧光光谱研究
13.Chemical modification and fluorescence spectrum of inulinase from Aspergillus ficuumAspergillus ficuum菊粉酶的化学修饰和荧光光谱
14.Studies of Inulinase Production and Characterization by Renicillium Sp.B01 Isolated from Soil;产菊粉酶菌株的筛选及其酶学特性的研究
15.Studies on Inulinase Production by Aspergillus Usamii and Enzyme Properties;宇佐美曲霉产菊粉酶及其酶学特性研究
16.Enzymatic Characteristics of Inulinase from Aspergillus niger inu-8一株黑曲霉菌株所产菊粉酶的酶学性质
17.Identify the Self-compatibility and Change of Protective Enzyme Activity in Different Styles of Chrysanthemum菊花品种自交亲和性鉴定及其授粉后花柱内3种保护酶活性的变化
18.Purification and Chemical Modification of the Thermostable Inulinase from Bacillus SmithiiBacillus smithii产耐热菊粉酶的分离纯化及其化学修饰
相关短句/例句

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
3)endo-inulinase菊粉内切酶
1.Objective:To produce the inulo-oligisaccarides from chicory inulin by using recombined endo-inulinase of Aspergillus niger.目的:利用毕赤嗜甲醇酵母表达的重组黑曲霉菊粉内切酶,从菊苣菊粉中制取低聚果糖。
2.Using endo-inulinase from microorganism to produce inulo-oligosaccharides has become the focus of these studies, but most endo-inulinase from the natural microorganism is exo-inulinse or the mixtures of endo-inulinase and exo-inulinase.近年在开发菊粉系列产品时是以菊粉寡糖这一功能成分为研究目标的,利用微生物菊粉内切酶进行菊粉寡糖的生产成为现在开发菊粉系列产品的研究热点,但大多天然微生物分泌的菊粉酶为外切酶或外切酶和内切酶的混合物,只有少数微生物产菊粉内切酶,并且其含量甚微、从而使分离纯化困难,不利于工业化生产。
4)high-density cultivation黑曲霉菊粉内切酶
1.Objective: To optimize the expression conditions of endo-inulinase from Aspergillus niger in high-density cultivation of recombinant Pichia methanolica inu-26.目的:对毕赤嗜甲醇酵母工程菌inu-26高密度培养表达黑曲霉菊粉内切酶的条件进行优化,找出最佳的外源蛋白表达条件。
5)inulinase菊粉酶
1.Isolation of inulinase production strain and optimization of its fermentation condition;产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
6)inulin enzymatic hydrolysis酶解菊粉
延伸阅读

李菊姓名 李菊(li ju)性别 女籍贯 江苏南通出生日期 1976.1.22身高 164cm体重 53kg效力俱乐部 江苏无锡山禾乒乓球俱乐部个人简介:李菊的身上有一种霸气,一种王者风范,就似当年的邓亚萍一样。从她7岁拿起球拍后,就在同龄人当中显得与众不同。球坛经历:7岁开始练乒乓球,1986年进少体校,1990年进江苏省队,1991年入选国家青年队,1992年入选国家队,2001年退役,2003年复出。技术特点:右手横握球拍弧圈结合快攻打法;正反手均能拉弧圈球,而且有高质量的旋转和速度,反手还能发力弹击。所获荣誉:1995 全国乒乓球锦标赛,女子单打亚军;第3届城运会,女团冠军南京队主力,与杨影合作,夺得女子双打冠军1996 第13届亚洲杯女团冠军、女单亚军1997 第44届世乒赛女团冠军,女双亚军(与王楠)、女单第三名,世界杯女单亚军,澳大利亚公开赛女单、女双亚军(与王晨),中国大奖赛女单冠军、女双第三名(与王楠),国际乒联职业巡回赛总决赛女单冠军,八运会女团冠军、女双亚军(与邬娜)1998 爱立信中国乒乓球擂台赛女子总擂主,中国乒乓球明星赛女双冠军(与王楠),日本公开赛女单、女双冠军(与王楠),第14届亚锦赛女团、女单冠军,第13届亚运会女团、女双冠军(与王楠)、女单亚军1999 国际乒乓球职业巡回赛总决赛女双冠军(与王楠),爱立信中国乒乓球擂台赛决赛女单冠军,亚洲十二强女子精英赛女单亚军,第45届世乒赛女双冠军2000 奥运会女双冠军,女单亚军,第45届世乒赛女团冠军,日本公开赛女单亚军,世界俱乐部杯女团亚军2001 第46届世乒赛女团、女双冠军,女子世界俱乐部团体冠军2003年 第47届世乒赛女单、女双四强2003年 与白杨搭档获中国大奖赛双打冠军,这也是她复出后获得的第一个冠军