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1.
从腐烂的菊芋及实验室保存的菌种中,选育到一株发酵菊芋产乙醇的菌株克鲁维酵母Kluyveromyces marxianus Y1。利用正交实验法对克鲁维酵母产菊粉酶的培养基组成及培养条件进行优化,确定培养基组成(g/L)为:菊粉40,酵母粉4,蛋白胨4,尿素1;初始pH5.0,温度30℃,150r/min条件下培养达到最佳产酶效果(57U/mL)。该菌株所产菊粉酶的性质测定结果表明:以菊粉为底物,该菊粉酶最适反应温度为55℃,在60℃以下稳定性很好,高于60℃时酶迅速失活;最适pH为5.0,pH4.6—5.2范围内酶稳定性很好;该酶属于外切型菊粉酶,体积分数为8%的乙醇对酶活力基本没有影响。  相似文献   

2.
采用响应面分析方法,对阿萨希丝孢酵母(Trichosporon asahii)ZZB-1产酰胺酶的发酵培养基进行了优化。运用单N子试验筛选出麦芽糖和酵母浸膏为最适碳源、氮源,金属离子Ca^2+、Mn^2+可提高发酵酰胺酶产量;通过最陡爬坡实验逼近以上4个因子的最大响应区域后,采用Box—Behnken响应面分析法,确定产酰胺酶最佳发酵培养基为麦芽糖18.84g/L、酵母浸膏9.55g/L、NaC15g/L、KH2PO41g/L、MgSO4·7H2O0.2g/L、FeS040.001g/L、CaC0370.84μmol/L、MnS0465.39肚mo[/L(1%丙烯酸诱导),NH4·H2O调节pH至7.0。培养基优化后酰胺酶产量由初始2554U/L提高到4156U/L,为原始发酵培养基配方酶活产量的1.63倍。  相似文献   

3.
首先将来源于Caldicellulosiruptor saccharolyticus的纤维二糖差向异构酶基因CsCEm进行密码子优化,然后进行全基因合成,再将其引入到载体pPIC9K中,构建重组质粒pPIC9K-CsCEm并转化入毕赤酵母GS115,得到酵母工程菌株.经微孔板筛选、摇瓶筛选得到酶活最高的重组工程茵GS115-4-19.该菌株经甲醇诱导144 h后,摇瓶发酵液上清酶活达到0.42 U/mL.酶学性质研究结果表明:该酶的最适pH为7.5,且在pH 6.0 ~8.0范围内相对酶活都在80%以上;在pH 4~9的缓冲液中放置24 h后仍保持原酶活力的80%以上;最适温度为80℃,在60℃~80℃保温30 min后,相对酶活在80%以上.动力学研究结果表明该酶对底物乳糖的Km和Vmax分别为(120.27±9.96) mmol/L和(1.035±0.05) mmol/L/min.纤维二糖差向异构酶在毕赤酵母中的成功表达为生物酶法合成乳果糖提供了重要参考.  相似文献   

4.
通过PCR方法从扣囊复膜孢酵母基因组DNA中克隆获得α-淀粉酶基因成熟肽编码区(SfA),插入乳酸克鲁维酵母表达载体pKLACl的d因子信号肽下游,构建重组表达载体pKLACl-SfA。重组载体转化乳酸克鲁维酵母GG799,筛选获得表达α-淀粉酶SfA水平较高的重组茵。酶活检测和SDS.PAGE电泳检测均显示,重组茵分泌重组酶SfA到发酵液中。酶学性质研究表明:SfA最适温度为45℃,最适pH5.0,在pH4.5~5.5、50℃条件下保持稳定。Ca2+等二价金属离子对SfA酶活有激活作用,EDTA强烈的抑制SfA活性。HPLC分析显示SfA水解糊精获得麦芽寡糖和少量葡萄糖,其中麦芽三糖是主要产物,占水解产物总量的52%。  相似文献   

5.
采用冻干浓缩、(NH4)2S04盐析、HiTrapphenyl(FF)疏水层析和QSepharose FastFlow离子交换层析对灵芝EIM-40发酵液进行分离纯化,获得纯化漆酶,纯化倍数为14.6,回收率为5.3%。SDS-PAGE银染的结果为单一条带,相对分子质量约为6.53×104。以愈创木酚和2,2-联氮-二(3-乙基-苯并噻唑-6-磺酸)二铵盐(ABTS)为催化底物进行酶学性质研究,最适pH分别为4.8和4.5,最适温度分别为55和50℃,2种底物在pH4.0。5.0范围内,温度低于50℃时,酶的稳定性都很好。以愈创木酚为底物,Km=645.0umol/L;以ABTS为底物,Km=22.2txmol/L。Cu2+对该酶起激活作用,Fe2+、Ca2+、Ba2+则完全抑制酶的活性。  相似文献   

6.
提取了台湾家白蚁总RNA并反转录获得eDNA,PCR扩增出白蚁内切葡聚糖酶的基因,并将目的基因分别克隆到大肠杆菌和酿酒酵母载体中,构建了产内切-β-1,4-葡聚糖酶的基因工程菌。由于大肠杆菌会有少量的泄漏表达,而所用的酿酒酵母表达载体是本实验室构建带有INU信号肽的表达载体,故都可采用刚果红平板染色法筛选具有羧甲基纤维素酶(CMCase)活性的重组转化子。利用金属镍亲和层析对大肠杆菌表达的内切-β-1,4-葡聚糖酶进行纯化,CMC酶活检测显示纯化酶的最适温度和最适pH值分别为42℃、6.5;内切-β-1,4-葡聚糖酶的Vmax为0.071mg/mL·min,Km值为80.2712mg/mL。  相似文献   

7.
利用重组大肠杆菌生产α-环糊精葡萄糖基转移酶   总被引:2,自引:0,他引:2  
将来源于软化类芽孢杆菌(Paenibacillus macerans)的α-环糊精葡萄糖基转移酶(α-CGT)基因插入含pelB信号肽的质粒pET-20b(+)中,构建了表达载体pET-20b(+)/cgt,并将其转化表达宿主E.coli BL21(DE3)。对重组菌E.coli BL21/pET-cgt进行摇瓶发酵条件的优化,确定了其胞外表达α-CGT酶的最适条件:葡萄糖8g/L,乳糖0.5g/L,蛋白胨12g/L,酵母膏24g/L,K2HPO472mmol/L,KH2PO417mmol/L,CaCl2 2.5mmol/L;初始pH为7.0,诱导温度为25℃。在该条件下培养90h后最终α-CGT酶的胞外比活达到22.1u/mL,与来源菌Pmacerans所产天然酶比活相比提高了42倍,实现了α-CGT酶的高效生产。将基因工程菌在上述条件下于3L发酵罐中发酵,90h后胞外酶比活达到22.6U/mL,证实了工业化放大的可能性。  相似文献   

8.
木霉LaTr 01菌株产漆酶发酵的条件   总被引:1,自引:1,他引:0  
从华南地区采集土样,采用愈创木酚平板筛选产漆酶菌株,获得了一株短周期产漆酶的小型丝状真菌。通过观察菌落特征、生长情况以及显微镜下菌丝和孢子的形态,初步鉴定该菌株为木霉属的一个种(Trichodermaspp、),命名为木霉LaTr01菌株。通过单因素方法研究该菌产漆酶的发酵条件,结果表明:LaTr01的产酶培养基以麦芽糖为最佳碳源;以酵母提取物为最适氮源;培养24h后加入Cu“比培养开始加入Cu ^2+LaTr01产酶活高出约1倍。采用麦芽糖、酵母提取物、Cu^2+浓度L9(3^3)的正交试验优化漆酶发酵条件,结果表明,氮源是影响该菌产漆酶的最重要因素,碳源次之,Cu^+浓度影响较小;LaTr01菌株产生漆酶的最佳条件为:5g/L酵母提取物、20g/L麦芽糖、1.5mmol/LCu^2+,Cu^2+加入时间为培养24h后。在优化的培养条件下,该菌酶活可达480.556U/L。  相似文献   

9.
高产菊粉酶酵母筛选、发酵和酶学性质研究   总被引:18,自引:0,他引:18  
筛选到1株菊粉酶高产克鲁维酵母菌株,采用酵母高密度细胞发酵方法,最高菊粉酶产量达到288.78u/mL,比80~90年代国际上报道的克鲁维酵母菊粉酶最高产量高6.8倍。该酶的菊粉酶/转化酶活性比为1/24.72;菊糖m=13.3mmol/L,蔗糖Km=62.6mmol/L;最适反应pH值为4.4,但在pH3.8~5.6的范围内均保持了较高的活性,相当于最适pH值下活性的90%;最适反应温度为55℃,在50~575℃范围内能够保持较高活性,50℃下酶的半衰期约为16h;外加Mg2+提高酶活性11.28%。  相似文献   

10.
将短小芽孢杆菌HB030的内切-1,4-木聚糖酶基因克隆到毕赤酵母表达载体pPIC9K,得到重组质粒pH-BM220,将pHBM220经酶切后分别转化三株毕赤酵母KM71、GS115、SMD1168,该木聚糖酶基因在三株毕赤酵母中均实现了分泌表达,将重组毕赤酵母KM71(pHBM220),GS115(pHBM220),GS115(pHBM220),SMD1168(pHBM220)分别诱导产酶,对重组酶进行相关的酶学性质分析表明,三的最适反应pH值约为5.5,最适反应温度约为60℃,在其最适反应条件下测得三粗酶液酶活分别为10.80IU/mL,11.63IU/mL,9.68IU/mL,重组毕赤酵母KM71(pHBM220)所产酶的热稳定性较好,而在pH稳定性方面三没有太大的差异。  相似文献   

11.
Ethanol production from Jerusalem artichoke tubers through a consolidated bioprocessing (CBP) strategy using the inulinase-producing yeast Kluyveromyces marxianus is an economical and competitive than that from a grainbased feedstock. However, poor inulinase production under ethanol fermentation conditions significantly prolongs the fermentation time and compromises ethanol productivity. Improvement of inulinase activity appears to be promising for increasing ethanol production from Jerusalem artichoke tubers by CBP. In the present study, expression of the inulinase gene INU with its own promoter in K. marxianus (K/INU2) was explored using the integrative cassette. Overexpression of INU was explored using chromosome integration via the HO locus of the yeast. Inulinase activity and ethanol were determined from inulin and Jerusalem artichoke tubers under fed-batch operation. Inulinase activity was 114.9 U/mL under aerobic conditions for K/INU2, compared with 52.3 U/mL produced by the wild type strain. Importantly, inulinase production was enhanced in K/INU2 under ethanol fermentation conditions. When using 230 g/L inulin and 220 g/L Jerusalem artichoke tubers as substrates, inulinase activities of 3.7 and 6.8 U/mL, respectively, were measured using K/INU2, comparing favorably with 2.4 and 3.1 U/mL, respectively, using the wide type strain. Ethanol concentration and productivity for inulin were improved by the recombinant yeast to 96.2 g/L and 1.34 g/L/h, respectively, vs 93.7 g/L and 1.12 g/L/h, respectively, by the wild type strain. Ethanol concentration and productivity improvements for Jerusalem artichoke tubers were 69 g/L and 1.44 g/L/h, respectively, from the recombinant strain vs 62 g/L and 1.29 g/L/h, respectively, from the wild type strain.  相似文献   

12.
毛壳霉内切菊粉酶的纯化与性质   总被引:4,自引:0,他引:4  
毛壳霉 (Chaetomiumsp .)C34发酵液经硫酸铵分级沉淀、DEAE 纤维素 11离子交换层析、Q SepharoseFastFlow离子交换层析、SephacrylS 2 0 0凝胶过滤、PhenolSepharoseTM HP疏水层析 ,得到电泳纯的内切菊粉酶组分 ,纯化倍数为 30 8倍 ,活力回收率为 7 7%。用SDS PAGE测得该酶亚基的分子量为 6 6kD。菊粉酶的最适pH为 6 0 ,最适温度为 5 0~ 5 5℃。菊粉酶在 5 0℃以下 ,pH5 0~ 8 0时较稳定。Cu2 完全抑制酶的活性 ,Mn2 、Zn2 、Fe2 、EDTA以及NBS(N bromosuccinimide ,N 溴代丁二酰亚胺 )对该酶有很强的抑制作用。该酶对菊粉有较强底物专一性 ,产物主要为低聚果糖 ,也可作用于蔗糖 ,I S值为 2 0。以菊粉为底物时 ,Km 为 0 199mmol L ,Vmax为 115 μmol (mg·min)。  相似文献   

13.
从类芽胞杆菌Paenibacillus sp.WZ008的发酵上清液中纯化得到一个高活力碱性果胶裂解酶,经SDS-PAGE电泳估算其亚基相对分子质量为4.5×104。通过对该酶进行酶学性质研究发现:该酶能催化裂解果胶酸、低酯果胶和高酯果胶;酶催化反应最适温度范围为55~60℃,最适pH为9.6,在最适条件下以低酯果胶为底物酶的比酶活达3 021.6 U/mg;Ca2+能增强该酶的活力,而Mn2+,Ba2+和EDTA强烈抑制该酶活力;当没有Ca2+存在时,高度酯化的果胶是该酶的最适底物,在4 mmol/L Ca2+存在时,该酶以果胶酸为底物比酶活最高(25 467 U/mg)。该酶N端序列比对分析发现与类芽胞杆菌Paenibacillus amylolyticus strain 27c64果胶裂解酶高度同源。  相似文献   

14.
In the present study, after the exo-inulinase gene INU1 from Meyerozyma guilliermondii was optimized according to the codon usage bias of Saccharomyces cerevisiae, both the optimized gene INU1Y and the native gene INU1 were ligated into the homologous integration expression vector pMIRSC11 and expressed in Saccharomyces sp. W0. It was determined that the inulinase activity of the recombinant yeast Y13 with the optimized gene INU1Y was 43.84 U/mL, which was obviously higher than that (31.39 U/mL) produced by the recombinant yeast EX3 with the native gene INU1. Moreover, it was indicated that the recombinant yeast Y13 could produce 126.30 mg/mL ethanol from 300.0 g/L inulin while the recombinant yeast EX3 and Saccharomyces sp. W0 produced 122.75 mg/mL and 114.15 mg/mL ethanol, respectively, under the same conditions. In addition, the ethanol productivity of the recombinant yeast Y13 was 2.25 mg/mL/h within 48 h of the fermentation, which was obviously higher than that of the recombinant yeast EX3 (1.97 mg/mL/h) and Saccharomyces sp. W0 (1.77 mg/mL/h) within the same period. The results demonstrated that the recombinant yeast Y13 had higher ethanol production and productivity than the recombinant yeast EX3 and Saccharomyces sp. W0. Therefore, it was concluded that the codon optimization of the exo-inulinase gene from M. guilliermondii effectively enhanced inulinase activity and improved ethanol production from inulin by Saccharomyces sp. W0 carrying the optimized inulinase gene.  相似文献   

15.
对重组荧光素酶大肠杆菌菌株M15/pQE30-luc进行了表达条件的优化研究。单因素结果表明:在初始pH值7.0,装液量为20%,2%的接种量,终浓度为0.5mmol/L的IPTG,添加10—30mmol/L的Mg^2+,摇床转速为200r/min,37℃诱导3.5h酶的表达量最高。正交试验结果表明:初始pH值为7.0,添加40mmol/LMg^2=,接种量2%,装液量为20%时表达量最高,比酶活达1.63×10^8RFU/mg蛋白。  相似文献   

16.
The inulinase gene (INU1) from Kluyveromyces marxianus NCYC2887 strain was overexpressed by using GAL10 promotor in a △gal80 strain of Saccharomyces cerevisiae. The inulinase gene lacking the original signal sequence was fused in-frame to mating factor alpha signal sequence for secretory expression. Use of the △gal80 strain allowed the galactose-free induction of inulinase expression using a glucose-only medium. Shake flask cultivation in YPD medium produced 34.6 U/ml of the recombinant inulinase, which was approximately 13-fold higher than that produced by K. marxianus NCYC2887. It was found that the use of the △gal80 strain improved the expression of inulinase in the recombinant S. cerevisiae in both the aerobic and the anaerobic condition by about 2.9- and 1.7-fold, respectively. 5 L fed-batch fermentation using YPD medium was performed under aerobic condition with glucose feeding, which resulted in the inulinase production of 31.7 U/ml at OD600 of 67. Ethanol fermentation of dried powder of Jerusalem artichoke, an inulin-rich biomass, was also performed using the recombinant S. cerevisiae expressing INU1 and K. marxianus NCYC2887. Fermentation in a 5L scale fermentor was carried out at an aeration rate of 0.2 vvm, an agitation rate of 300 rpm, and the pH was controlled at 5.0. The temperature was maintained at 30degrees C and 37degrees C, respectively, for the recombinant S. cerevisiae and K. marxianus. The maximum productivities of ethanol were 59.0 and 53.5 g/L, respectively.  相似文献   

17.
Pseudomonas sp. RT-1是从低温环境下分离的低温脂肪酶产生菌,对该菌产生的胞外脂肪酶(PL-1)进行纯化,并对其酶学特性进行初步研究。Pseudomonas sp. RT-1的发酵上清液经60%(NH4)2SO4沉淀、12~14000截留相对分子质量(MWCO)透析袋透析、Sephadex G75分子筛和超滤浓缩后,得到了电泳纯的P-L1。SDS-PAGE电泳估算其表观相对分子质量为4.43×104。对其酶学特性研究表明:PL-1是低温碱性脂肪酶且对有机溶剂的耐受性较好。10~40℃内有较好的催化活性,最适作用温度为18℃;0~50℃该酶的稳定性较好,当温度超过50℃时则容易失活;最适作用pH为10.2,且pH在9~11时较稳定;该酶对有机溶剂的耐受性较好,10mmol/L的Ca2+、K+、Na+和Fe3+对PL1的酶活力有促进作用,其中Ca2+促进作用最大,提高了146.07%,而10mmol/L的Cu2+、Co2+、Mn2+、Mg2+、Zn2+、Ba2+和Al3+对酶活力具有不同程度的抑制作用,其中Al3+抑制作用最强,抑制了98.55%;PL-1对C链长度小于或等于12的短链脂肪酸形成的甘油三酯具有较强的水解能力;1mmol/L的去氧胆酸盐(desoxycholate)和0.01%的Triton X100对酶活力具有提高作用,分别提高了30.74%和11.83%;0.01%的SDS和Tween-80、1mmol/L的EDTA和尿素对酶活都有抑制作用,其中EDTA的抑制作用最大,抑制了80%。  相似文献   

18.
It has been confirmed that Saccharomyces sp. W0 can produce high concentration of ethanol. In this study, the INU1 gene cloned from the marine-derived Pichia guilliermondii was transformed into uracil mutant of Saccharomyces sp. W0. The positive transformant Inu-66 obtained could produce 34.2 U ml−1 of extracellular inulinase within 72 h of cultivation. It was found that 15.2 U of inulinase activity per one gram of inulin was suitable for inulin hydrolysis and ethanol production by the transformant Inu-66. During the small-scale fermentation, 13.7 ml of ethanol in 100 ml of medium was produced and 99.1% of the added inulin was utilized by the transformant. During the 2 l fermentation, 14.9% (v/v) of ethanol was produced from inulin and 99.5% of the added inulin was converted into ethanol, CO2 and cell mass.  相似文献   

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