首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 234 毫秒
1.
构建Mn2+转运蛋白MntH与来源于Thermus thermophilus HB27的含锰过氧化氢酶的共表达基因工程菌,并进行了发酵培养基及培养环境条件的优化,确定培养基中最佳的碳氮源种类及其浓度分别为:甘油7.0 g/L,酵母粉3.75 g/L和蛋白胨11.25 g/L;当培养基中的Mn2+浓度为1 mmol/L时,最佳的IPTG诱导浓度为0.05 mmol/L。此外,最佳的培养基初始p H值及培养温度分别为:p H 8.0和37℃,在最优发酵条件下工程菌摇瓶发酵培养24 h,过氧化氢酶活最高可达476 U/m L是未优化前3倍。在5 L发酵罐的验证实验中,过氧化氢酶的酶活进一步提高至1 094 U/m L。  相似文献   

2.
采用单因素实验确定重组毕赤酵母产木聚糖酶生长相的最适条件,然后利用Plackett-Burman实验设计对诱导相培养基成分和培养条件的10个因素进行筛选,方差分析结果表明,影响木聚糖酶表达的主要因子为酵母膏、诱导pH和摇床转速;在此基础上,用Box-Behnken的响应面方法对3个因素进行进一步优化,当酵母膏为11.13 g/L,pH为6.38,摇床转速为228 r/min时酶活有最大值,为262.77 U/mL,较优化前提高了175.44%.优化后的摇瓶发酵条件应用于7L发酵罐并连续诱导培养120 h,发现诱导72 h后的木聚糖酶酶活最高,为2054.89U/mL.  相似文献   

3.
【目的】优化重组菌BL21-HTa-cgkZ产生κ-卡拉胶酶的发酵条件。【方法】通过单因子筛选和响应面分析方法对在IPTG诱导下的κ-卡拉胶酶的产生菌BL21-HTa-cgkZ进行产酶条件优化。【结果】该菌产酶的最佳培养基组成为:乳糖7 g/L,胰蛋白胨10 g/L,酵母粉5 g/L,NaCl 10 g/L,CaCl2 0.666 g/L。最佳诱导条件为:在工程菌接种1.55 h后添加IPTG,IPTG的浓度为0.89 mmol/L,诱导时间为24 h,诱导温度为23.03 °C。并确定了在培养基中添加乳糖、Triton X-100对κ-卡拉胶酶分布的影响。【结论】实验结果为产κ-卡拉胶酶工程菌的规模化生产奠定基础。  相似文献   

4.
本研究将重组大肠杆菌E.coli BL21(DE3)/p ET30α(+)-NADK作为NAD激酶生产菌种,对其产酶发酵培养基及发酵条件进行优化。采用Placket-Burman(PB)设计先筛选出影响重组菌产NAD激酶的三个主要因素:葡萄糖浓度、Mg SO4浓度和诱导表达时间,试验结果表明,增加葡萄糖和Mg SO4的浓度及缩短诱导表达时间对产酶有利。根据中心组合实验设计(Central Composite Design,CCD)原理,利用PB设计确定的这三个显著影响因素,通过最陡爬坡实验逼近最大响应区域,挑选出实验范围内的最优点,以此作为响应面中心组合设计的中心点,用NAD激酶酶活作为响应值,使用Design Expert 8.0软件设计中心组合实验,通过对实验数据进行分析,得出最佳发酵培养基成分及发酵条件为:葡萄糖14.24 g/L、酵母粉8 g/L、胰蛋白胨8 g/L、Mg SO40.94 g/L、Na Cl 5g/L、NH4Cl 2 g/L、KH2PO42 g/L、K2HPO49 g/L,诱导表达时间8.34 h,接种量2%。在此最佳条件下,NAD激酶酶活实验验证值可达10.17 U/mg,与优化前相比提高了2.77倍。对诱导表达结束后的细胞上清液进行SDS-PAGE分析也证明优化取得了显著的效果。  相似文献   

5.
通过以培养基配方、IPTG浓度、金属离子复合液浓度、镁离子浓度、表达时间、接种量、诱导时间点等发酵的重要条件对重组蛋白表达量影响的研究,确定多表位恶性疟疾疫苗M.RCAg-1蛋白最佳表达条件为以改良TB培养基培养、最优Mg2+,诱导剂IPTG和金属离子复合液浓度分别为10mmol/L,0.5mmol/L,6μl/ml,接种量为10%,表达时间为4.5h,将优化后的参数用于50L发酵罐进行连续3批中试规模的发酵,最终收获菌体湿重平均为31.8±1.78g/L,目的蛋白表达量可占菌体总蛋白的50%左右,试验确定了恶性疟疾多表位随机组合蛋白M.RCAg-1在大肠杆菌中的最优表达条件,该条件能够适合大规模培养需要。  相似文献   

6.
为了实现来源于碱性芽孢杆菌Alkalophilic Bacillus clarkii 7364的γ-环糊精葡萄糖基转移酶的高效胞外表达,对OmpA信号肽介导的E.coli BL21(DE3)/pET20b(+)-γcgt基因工程菌进行发酵培养基及发酵条件的优化,并进行正交试验,获得最优培养基:甘油5g/L、蛋白胨6g/L、酵母膏24g/L、钙离子6mmol/L、镁离子2mmol/L、甘氨酸0.75%、PO43- 0.1mol/L;在此基础上最适发酵条件:pH6.5、25℃培养、装液量30ml/250ml、转速220r/min、0.02%SDS、在发酵10h时利用5g/L乳糖进行诱导,使得酶活从初始的5189.2U/ml提高到20268.8U/ml。研究结果得到高效表达的培养条件,为实现该酶的工业化应用打下了基础。  相似文献   

7.
利用本研究室已构建的重组菌Bacillus subtilis/pBSMuL3-α/β-CGTase对产B.stearothermophilus环糊精葡萄糖基转移酶的发酵产酶进行了优化,考察了培养基中重要成分:碳源、有机氮源、无机氮源、有机与无机氮源质量比、碳源与氮质量比、金属离子种类等单因素对该重组菌产α/β-CGTase的影响,并采用正交实验对发酵培养基进行优化,对优化结果分析可知,重组菌B.subtilis/pBSMuL3-α/β-CGTase发酵产α/β-CGTase的最优培养基成本为:葡萄糖5 g/L,氮源(鱼骨蛋白胨∶NH4Cl=3∶1)25 g/L,1 mmol/L Mg^2+。在最优条件下发酵培养,α/β-CGTase的酶活由原来TB发酵培养基的9.20 U/mL提高至20.32 U/mL,是优化前酶活的2.2倍,为α/β-环糊精葡萄糖基转移酶的工业应用提供了理论支持。  相似文献   

8.
碱性木聚糖酶在碱性条件下催化水解木聚糖,广泛应用于造纸、纺织等领域.着重对短小芽胞杆菌M-11产碱性木聚糖酶的发酵条件进行初步的探索.研究了菌株的生长曲线、确定最佳接种龄为16 h、最佳接种量为1%;确定最适碳源浓度为7%、最适单一氮源为氯化铵、其浓度为1.0%、最适无机盐为氯化铁、其浓度为3 mmol/L;在此基础之上进行6因素3水平的正交试验,确定最适产酶培养基组成:麸皮5%,接种量3%,氯化铵1.2%,氯化铁3.5 mmol/L,硫酸镁0.03%,氯化钠5 mmol/L,磷酸氢二钾0.4%;最适培养条件:接种龄16 h,初始pH 8.0,温度37℃,300 mL摇瓶装液量50 mL,摇床转速220 r/min,发酵周期48 h.通过对发酵条件的优化使发酵液酶活达613 IU/mL.无机氮源为其最适氮源,因此短小芽胞杆菌M-11在碱性木聚糖酶的产品开发上优于短小芽胞杆菌M -26.  相似文献   

9.
通过提高E.coli BL21(DE3)/pAW31菌株中的酰基转移酶LovD的表达,并以Monacolin J为底物,催化合成辛伐他汀。考察发酵培养基和发酵条件对酰基转移酶LovD表达的影响;采用SDS-PAGE凝胶电泳法检测酰基转移酶LovD表达情况;并建立酶活测定方法,测定酰基转移酶LovD的实际酶活。通过实验确定酰基转移酶LovD摇瓶发酵的最佳条件:发酵培养基为TB培养基,接种量为4%,诱导初始菌密度为0.7(OD600)I,PTG浓度为0.2 mmol/L,在20℃下诱导20 h。在最佳条件下,酰基转移酶LovD的表达水平为100 mg/L,辛伐他汀的产量为1.2 g/L。  相似文献   

10.
为实现Sulfolobus acidocaldarius ATCC 33909来源的麦芽寡糖基海藻糖合成酶(MTSase)基因tre Y在枯草芽孢杆菌(Bacillus subtilis)中的重组表达,以质粒p ET-24a(+)-tre Y为模板PCR扩增得到目的基因,并与表达载体pHY300PLK连接,转入表达宿主Bacillus subtilis CCTCC M 2016536中,重组菌在TB培养基中培养48 h后MTSase酶活达到17.5 U/m L;在此基础上对重组菌发酵条件进行优化,通过单因素实验(氮源种类、氮源复配、氮源浓度、碳源种类、葡萄糖浓度、初始pH、诱导温度)和正交实验(氮源浓度、葡萄糖浓度、初始pH、诱导温度)确定其摇瓶发酵产酶的最适培养基和培养条件为:氮源(工业蛋白胨∶棉籽粉=3∶1)48.0 g/L、葡萄糖为10.0 g/L、培养基初始pH为7.0,最适培养温度为30℃;在此条件下,MTSase的酶活可达41.5 U/m L,是优化前的2.4倍。  相似文献   

11.
重组大肠杆菌产角质酶-CBM摇瓶发酵优化及分泌表达研究   总被引:1,自引:0,他引:1  
在TB培养基的基础上,通过单因素分析和正交设计对重组大肠杆菌产角质酶-CBM发酵进行优化,得到最适培养基的组分为:甘油5 g/L,蛋白胨 16 g/L,MgSO4·7H2O 2.5 mmol/L,K2HPO4 13.7 g/L,KH2PO4 1.53 g/L,菌体生长至对数前中期时添加终浓度为1 g/L乳糖 和0.75 g/L 甘氨酸,30℃发酵48 h,角质酶-CBM产量可达63 U/ml,较TB培养(20 U/ml)提高了近3倍。考察了热激作用、渗透调节物质及温度两控制对角质酶-CBM分泌表达的影响,在添加Lactose和Glycine后,发现在添加终浓度为75 mmol/L的L-脯氨酸,37℃热激1 h或47℃热激0.5 h,变温至25℃发酵,角质酶-CBM产量可达90 U/ml,较TB恒温培养提高了近四倍。  相似文献   

12.
通过碳氮源的不同浓度对重组大肠杆菌E.coil BL21(DE3)发酵产蔗糖异构酶(SIase)的影响,并借助于数学分析软件Design Expert,结合Plackett-Burman试验设计和中心复合试验设计分析法,对蔗糖异构酶的产生菌进行了发酵培养基的优化研究。实验表明,最佳培养基组分为甘蔗糖蜜10.65 g/L,玉米浆22.22 g/L,NaCl 7.57 g/L ,MgSO4·7H2O 0.52 g/L, KH2PO4 4.46g/L,优化后的蔗糖异构酶活力达到29.1U/ml,比LB培养基培养重组大肠杆菌(15U/ml),蔗糖异构酶活力提高了94%,与原始菌大黄欧文菌NX-5相比提高了21.4倍(1.3U/ml)。  相似文献   

13.
通过PCR扩增软化芽孢杆菌α-环糊精葡萄糖基转移酶基因,将基因片段克隆到大肠杆菌-枯草杆菌穿梭载体pGJ103中,转化枯草杆菌WB600得基因工程菌进行外源表达。在1.5%的麦芽糖初始发酵培养基上摇瓶培养,48 h后重组枯草杆菌产酶活性为6.1U/ml。通过单因素分析和响应面分析对重组枯草杆菌产CGT酶摇瓶发酵条件进行优化。分析得到培养基关键组分麦芽糖,玉米淀粉和酵母粉三者最佳浓度分别为:15.5g/L,13g/L和20g/L。在此条件下,摇瓶培养36h后α-CGT酶活性为17.6U/ml,5L罐分批发酵30h后酶活达到20U/ml (水解活性为1.4×104 IU/ml)。  相似文献   

14.
采用单因素试验、响应面试验法对维氏气单胞菌(Aeromonas veronii)发酵培养基的氮源、碳源、无机盐和磷酸盐成分及用量进行优化组合,确定优化培养基组成:胰蛋白胨10.8 g/L,葡萄糖5.0 g/L,牛肉膏3.0 g/L,磷酸二氢钾2.0 g/L,硫酸镁0.4 g/L,NaCl 5.0 g/L。并与基础培养基的发酵活菌数、制备的灭活疫苗免疫效力进行比较,经过验证试验绘制维氏气单胞菌在优化培养基条件下的7 L发酵罐生长曲线。在优化发酵培养基条件下,维氏气单胞菌活菌数为5.94×109 cfu/mL,比基础培养基增幅43.13%;制备的灭活疫苗相对保护率为77.78%,比基础培养基提高了14.81%。7 L发酵罐发酵培养10 h,活菌数达到最大8.85×109 cfu/mL。通过对发酵培养基的优化,可以获得低成本、优质高效的维氏气单胞菌发酵菌液,为今后维氏气单胞菌灭活疫苗规模化发酵培养提供参考。  相似文献   

15.
The production of cellulase by Bacillus subtilis MU S1, a strain isolated from Eravikulam National Park, was optimized using one-factor-at-a-time (OFAT) and statistical methods. Physical parameters like incubation temperature and agitation speed were optimized using OFAT and found to be 40?°C and 150?rpm, respectively, whereas, medium was optimized by statistical tools. Plackett-Burman design (PBD) was employed to screen the significant variables that highly influence cellulase production. The design showed carboxymethyl cellulose (CMC), yeast extract, NaCl, pH, MgSO4 and NaNO3 as the most significant components that affect cellulase production. Among these CMC, yeast extract, NaCl and pH showed positive effect whereas MgSO4 and NaNO3 were found to be significant at their lower levels. The optimum levels of the components that positively affect enzyme production were determined using response surface methodology (RSM) based on central composite design (CCD). Three factors namely CMC, yeast extract and NaCl were studied at five levels whilst pH of the medium was kept constant at 7. The optimal levels of the components were CMC (13.46?g/l), yeast extract (8.38?g/l) and NaCl (6.31?g/l) at pH 7. The maximum cellulase activity in optimized medium was 566.66?U/ml which was close to the predicted activity of 541.05?U/ml. Optimization of physical parameters and medium components showed an overall 3.2-fold increase in activity compared to unoptimized condition (179.06?U/ml).  相似文献   

16.
Culture medium for keratinase production from hair substrate by a new Bacillus subtilis strain, KD-N2, was optimized. Effects of culture conditions on keratinase production were tested, and optimal results were obtained with 10% inocula (v/v), 16 g/L hair substrate, an initial pH value of 6.5 and a culture volume of 20 mL. Several carbon sources (sucrose, cornflour) and nitrogen sources (yeast extract, tryptone and peptone) had positive effects on keratinase production, with sucrose giving optimal results. To improve keratinase yield, statistically based experimental designs were applied to optimize the culture medium. Fractional factorial design (FFD) experiments showed that MgSO4 and K2HPO4 were the most significant factors affecting keratinase production. Further central composite design (CCD) experiments indicated that the optimal MgSO4 and K2HPO4 concentrations were 0.91 and 2.38 g/L, respectively. Using an optimized fermentation medium (g/L: NaCl 1.0, CaCl2 0.05, KH2PO4 0.7, sucrose 3, MgSO4 0.91, K2HPO4 2.38), keratinase activity increased to 125 U/mL, an approximate 1.7-fold increase over the previous activity (75 U/mL). Human hair was degraded during the submerged cultivation.  相似文献   

17.
Lactic acid is a green chemical that can be used as a raw material for biodegradable polymer. To produce lactic acid through microbial fermentation, we previously screened a novel lactic acid bacterium. In this work, we optimized lactic acid fermentation using a newly isolated and homofermentative lactic acid bacterium. The optimum medium components were found to be glucose, yeast extract, (NH4)2HPO4, and MnSO4. The optimum pH and temperature for a batch culture ofLactobacillus sp. RKY2 was found to be 6.0 and 36°C, respectively. Under the optimized culture conditions, the maximum lactic acid concentration (153.9 g/L) was obtained from 200 g/L of glucose and 15 g/L of yeast extract, and maximum lactic acid productivity (6.21 gL−1h−1) was obtained from 100 g/L of glucose and 20 g/L of yeast extract. In all cases, the lactic acid yields were found to be above 0.91 g/g. This article provides the optimized conditions for a batch culture ofLactobacillus sp. RKY2, which resulted in highest productivity of lactic acid.  相似文献   

18.
Gellan gum is a water-soluble exopolysaccharide, it has applications in the food, pharmaceutical and chemical industries. In this study, a gellan gum producing strain was isolated from rice root, and this strain was identified be the species of Sphingomonas azotifigens. The Plackett-Burman design was applied to investigate the main factors affecting gellan gum production by S. azotifigens GL-1 in a molasses and cheese whey based medium; the medium compositions were optimized by response surface methodology. The optimum cheese whey based medium consisted of cheese whey 68.34 g/L, Na2HPO4 14.58 g/L and KH2PO4 7.66 g/L, and the maximum gellan gum production that using this medium was 33.75 ± 1.55 g/L. 14.75 ± 0.65 g/L gellan gum was obtained with an optimized molasses medium, which consisted of molasses 50 g/L, Na2HPO4 9.71 g/L and KH2PO4 5.92 g/L. The molecular weight of gellan gum obtained from two medias were 1.06 × 106 and 0.89 × 106 Da, respectively. The cheese whey-derived gellan gum showed a higher rhamnose, lower glucuronic acid and higher glycerate content compared to the molasses-derived gellan gum. S. azotifigens GL-1 has a high gellan gum production capacity in a cheap medium suggesting it has great potential as an industrial gellan gum producer.  相似文献   

19.
The novel exopolysaccharide HZ-7 is produced by Klebsiella sp. H-207, and its fermentation conditions were optimized by response surface methodology (RSM). In this study, the optimized medium consisted of sucrose 31.93 g/L, KNO3 2.17 g/L and K2HPO4 5.47 g/L; while the optimized culture conditions consisted of seed age 13 h, with an inoculum size of 10.6% and incubation temperature of 28.9°C. A maximum HZ-7 yield of about 15.05 g/L was achieved under the optimized conditions using RSM and single-factor experiments. Next the exopolysaccharide HZ-7 was partially purified and characterized. The resulting product showed good properties, such as high concentration of uronic acid (41.67%), low average molecular weight (about 1.94×105 Da) and porous surface structure, were very advantageous to biosorption. Therefore HZ-7 was applied to absorb hexavalent chromium (Cr(VI)). The maximum adsorption efficiency (99.2%) which was obtained at an initial pH of 1.0 along with an initial Cr(VI) concentration of 20 mg/L, was not affected by ordinary metal ions and temperature. These data suggest Klebsiella sp. H-207 exopolysaccharide will be promising potential for industrial application.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号