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1.
为了考查营养条件对质粒DNA的生产影响,采用不同的培养基培养含pcDNA33-HBS质粒的大肠杆菌JM109。实验结果表明:碳源、氮源对质粒DNA产量有明显的影响。葡萄糖是质粒合成过程中较佳的碳源,蛋白胨是较佳的氮源。在M9P培养基中,选择合适的硫酸铵浓度对质粒DNA的生产有一定的作用。由于Gly,Asp,Glu能提供合成核苷酸的氮源,在M9G培养基中添加12g/L的Asp,1.0g/L的Glu和0.4g/L的Gly后,经20h培养,质粒产量可达25mg/L。外源核苷也影响质粒DNA的产量,通过添加0.4g/L胞苷与胸苷的混合物(摩尔比为1∶1)到M9P培养基中,质粒DNA的产量可达35mg/L。  相似文献   

2.
探索pcD-awte候选疟疾DNA疫苗发酵条件,为该疫苗制备工艺的建立做准备.通过摇瓶和5 L发酵罐水平,考察不同培养基组成及来源、补料变化和温度转换对工程菌生长及质粒产量的影响.结果表明在TB培养基组分中添加Mg2+、微量元素复合物、核苷等成分,补料培养基由葡萄糖代替甘油,对数中期温度由37℃升至42℃等条件,能提高工程菌株pcD-awte质粒的产量.在优化的培养条件下pcD-awte质粒产量可达125~130mg/L培养液.  相似文献   

3.
高产类胡萝卜素酵母菌株LRY-01发酵条件的优化研究   总被引:2,自引:0,他引:2  
通过单因子实验研究了不同碳源、氮源、生长因子及通气量对菌株LRY-01生产类胡萝卜素的影响。实验表明,碳源、氮源、生长因子对类胡萝卜素产量的影响较大。进一步对上述因子进行了L9(34)正交实验,得到了最佳培养基配方及发酵条件:葡萄糖40g/L,(NH4)2SO41.0g/L,核黄素0.5mL/L,酵母膏0.5g/L,初始pH 4.5,摇瓶装液量为10%。菌株LRY-01在此条件下摇瓶培养72h的生物量和类胡萝卜素的产量分别可达16.19g/L和1000.06μg/g。  相似文献   

4.
探索pcD—awte候选疟疾DNA疫苗发酵条件,为该疫苗制备工艺的建立做准备。通过摇瓶和5L发酵罐水平,考察不同培养基组成及来源、补料变化和温度转换对工程菌生长及质粒产量的影响。结果表明在TB培养基组分中添加Mg^2+、微量元素复合物、核苷等成分,补料培养基由葡萄糖代替甘油,对数中期温度由37%升至42℃等条件,能提高工程菌株pcD—awte质粒的产量。在优化的培养条件下pcD—awte质粒产量可达125—130mg/L培养液。  相似文献   

5.
碳氮源对转基因鱼腥藻Anabaena sp.PCC7120培养的影响   总被引:7,自引:2,他引:7  
对碳源、氮源种类和用量对转rhTNF-α基因鱼腥藻7120(Anabaena sp.PCC7120)培养的影响进行了研究,发现最适碳源为蔗糖,最适氮源为NaNO3,最佳用量分别为9g/L和2.25g/L,此时生物量远高于自养方式,达2.52g/L,比相同条件下在BG-11培养基培养高71.66%,ATNF-α表达量为16%-22%,生物活性为10^5U/mg。  相似文献   

6.
通过研究接种量、培养基、碳源、氮源及激素组合等生物学因子对薰衣草胚性愈伤组织悬浮培养生长的影响,建立了一种可快速生长的薰衣草胚性愈伤组织悬浮培养体系。结果表明,在添加0.05mg/L2,4-D、0.5mg/L6-BA、30g/L蔗糖及0.5g/L水解酪蛋白的MS培养液中,以50g/L的接种量进行薰衣草胚性愈伤组织的悬浮培养,其生长速率可达24.14g/(L·d)。  相似文献   

7.
红曲霉液态发酵生产Monacolin K培养基的优化   总被引:1,自引:0,他引:1  
利用正交试验设计对红曲霉TQ-57发酵生产Monacolin K的摇瓶发酵培养基进行了初步研究。结果表明:Monacolin K的最适发酵碳源为甘油,最佳添加质量分数为14%,最适氮源为蛋白胨,最佳氮源质量分数为3%,培养基初始pH为6.5,培养周期为8 d,在此条件下Monacolin K产量可达27.75 mg/L。  相似文献   

8.
以灵芝为材料,在前期研究基础上,以不同酵母粉作为氮源,研究复合有机氮源对灵芝三萜液态深层发酵的影响。首先,由单因素实验考察3种不同的酵母粉对灵芝菌丝体合成灵芝三萜的影响,确定酵母粉的最适宜浓度范围。在此基础上,根据中心组合实验设计,对3种酵母粉分别采用2种复合和3种复合的方式,优化复合有机氮源的最佳组合配比。结果表明:当基础培养基中添加6.6g/L的酵母粉N-1与6.6g/L的酵母粉N-2时,灵芝三萜产量可达0.478g/L(理论产量为0.485g/L),比添加单一酵母粉N-1、N-2、N-3分别提高了21%、139%、103%,其氮源用量为两种组合时最低。当基础培养基中酵母粉N-1、N-2与N-3添加量分别为5.07g/L、3.78g/L、7.63g/L时,灵芝三萜产量达0.514g/L(理论产量为0.510g/L),比单因素对照组分别提高了30%、157%和74%。本研究优化的复合氮源添加方式可明显提高灵芝菌丝体液态深层发酵生产灵芝三萜的产量,为其规模化液态深层发酵的生产提供科学数据。  相似文献   

9.
在实验室有效获得100 mg临床试验等级的质粒DNA.摇床发酵3个批次,每批次4 L培养液,产生大约160 g的细菌沉淀物.碱裂解菌体,气浮法结合离心分离浮杂沉淀.裂解液经0.45/0.22 μm囊式过滤器过滤.然后采用阴离子色谱介质富集质粒,异丙醇沉淀.重新溶解沉淀后采用100 kD切向流超滤处理,获得100 mg临床试验等级质粒DNA.体外、体内转染试验对质粒表达效果进行了鉴定.结果表明,纯化的质粒DNA几乎检测不到内毒素、RNA和蛋白质,A260/A280比值在1.82~1.86范围内.纯化的质粒DNA能够满足动物临床试验.  相似文献   

10.
中国红豆杉细胞悬浮体系营养条件的优化   总被引:2,自引:0,他引:2  
采用均匀设计的试验方法,对中国红豆杉细胞悬浮体系培养条件进行优化,获得了关于细胞生长与培养基内碳源,氮源,磷浓度的回归方程,表明碳氮是影响细胞生长的关键因素。采用中心组合实验设计对培养基成分继续优化,并通过回归分析,结果表明,较优的培养基为碳源33.9g/L,氮源58.2mmol/L,磷浓度为5mmol/L,此工艺在15L反应器中,也取得了良好效果。  相似文献   

11.
In this study we investigated the effects of carbon and nitrogen sources, and the carbon to nitrogen ratio (C:N) of growth medium on the production of plasmid DNA by pUK21CMVβ1.2 harbouring recombinantE. coli. The results indicated that sucrose and casein peptone were the most suitable carbon and nitrogen sources, respectively, for plasmid production, and the plasmid concentration was significantly influenced by the C:N ratio. A Box-Behnken design and surface response methodology were employed to formulate the optimal medium. In the optimized medium, a plasmid concentration of 51.80 mg/L and a plasmid selectivity of 23.49 mg/g were achieved after 24 h of incubation. These values were approximately 3.5 and 1.7 times higher, respectively, than those obtained on the original LB medium.  相似文献   

12.
通过单因素试验分析不同碳源、氮源、无机盐对(Sphingomonas paucimobilisFJAT-5627)产胶量的影响,确定最适碳源、氮源、无机盐,并在单因素筛选试验的基础上,利用Box-Benhnken设计和响应面分析法对碳源、氮源和无机盐进行优化,得到少动鞘脂单胞菌产生结冷肢发酵培养基最佳优化组合.实验结果表明,少动鞘脂单胞菌产胶量发酵最适碳源、氮源和无机盐分别为淀粉、豆饼粉和KH2PO4.响应面法得到产胶量(Y)与碳源淀粉(x1)、氮源豆饼粉(x2)和无机盐KH2PO4(x3)的回归方程为:Y=13.87+0.54x1+0.22x2-0.42x3-3.26x12-1.85x22-1.51x32+0.053x1x2+0.067x1x3+0.4x2x3.优化培养基组合为:淀粉浓度为30g/L,豆饼粉浓度为5 g/L,KH2PO4的浓度为0.7g/L,且此组合下少动鞘脂假单胞发酵得到结冷胶可达23.87g/L.  相似文献   

13.
冯杰  冯娜  贾薇  杨焱  张劲松 《菌物学报》2016,35(6):722-733
以沪农灵芝1号为供试菌株,葡萄糖作为碳源,用硫酸铵、氯化铵、鱼粉蛋白胨、胰蛋白胨和酵母粉作为氮源,研究不同种类氮源对灵芝菌丝体液态深层发酵过程的影响。首先,确定了N-10酵母自溶粉作为发酵的氮源,降低了发酵的复杂性和不确定性;其次,考察N-10酵母自溶粉不同浓度对灵芝菌丝体发酵合成灵芝三萜过程中菌丝体的生物量、葡萄糖消耗、灵芝三萜产量等方面的影响,确定了N-10酵母自溶粉的适宜添加浓度。在此基础上,采用响应面中心组合设计,对4因素最佳水平范围进行研究,结果表明,葡萄糖、N-10酵母自溶粉、磷酸二氢钾和七水硫酸镁的含量分别为31.06g/L、2.76g/L、1.77g/L和1.99g/L时,灵芝三萜的理论产量为21.166g/kg干菌丝体,实际发酵产量提高到21.153g/kg干菌丝体。与原工艺相比,新工艺的灵芝三萜产量提高了6.22%。  相似文献   

14.
Carbon mass balances were calculated in fed-batch cultures of E. coli W3110, using mineral medium with glucose as the limiting substrate. The carbon recovery, based on biomass, CO(2), and acetate was approximately 90% at the end of the culture (25 h, 27 g L(-1) dw). The missing carbon remained as soluble organic compounds in the medium. Outer membrane (OM) constituents, such as lipopolysaccharides (LPS), phospholipids (PL), and carbohydrates (each at approximately 1 g L(-1)) contributed to 63% of the extracellular carbon. The amount of released LPS and PL equaled the total amount of OM bound to the cells in the culture. Small amounts of DNA and protein detected in the medium indicated that no cell lysis had occurred. Acetate, lactate, ethanol, formate, succinate and amino acids (Glu, Gln, Asp, Asn, Ala, Gly, Ser) were detected in the culture medium, but made up only a few percent of the extracellular carbon mass. The remaining 30% was not identified, but was assumed to constitute complex carbohydrates.  相似文献   

15.
Wu JY  Yeh KL  Lu WB  Lin CL  Chang JS 《Bioresource technology》2008,99(5):1157-1164
Rhamnolipid is one of the most effective and commonly used biosurfactant with wide industrial applications. Systematic strategies were applied to improve rhamnolipid (RL) production with a newly isolated indigenous strain Pseudomonas aeruginosa EM1 originating from an oil-contaminated site located in southern Taiwan. Seven carbon substrates and four nitrogen sources were examined for their effects on RL production. In addition, the effect of carbon to nitrogen (C/N) ratio on RL production was also studied. Single-factor experiments show that the most favorable carbon sources for RL production were glucose and glycerol (both at 40 g/L), giving a RL yield of 7.5 and 4.9 g/L, respectively. Meanwhile, sodium nitrate appeared to be the preferable nitrogen source, resulting in a RL production of 8.6g/L. Using NaNO(3) as the nitrogen source, an optimal C/N ratio of 26 and 52 was obtained for glucose- and glycerol-based culture, respectively. To further optimize the composition of fermentation medium, twenty experiments were designed by response surface methodology (RSM) to explore the favorable concentration of three critical components in the medium (i.e., glucose, glycerol, and NaNO(3)). The RSM analysis gave an optimal concentration of 30.5, 18.1, and 4.9 g/L for glucose, glycerol, and NaNO(3), respectively, predicting a maximum RL yield of 12.6 g/L, which is 47% higher than the best yield (8.6 g/L) obtained from preliminary selection tests and single factor experiments (glucose and NaNO(3) as the carbon and nitrogen source). The NMR and mass spectrometry analysis show that the purified RL product contained L-rhamnosyl-beta-hydroxydecanoyl-beta-hydroxydecanoate (RL1) and L-rhamnosyl L-rhamnosyl-beta-hydroxydecanoyl-beta-hydroxydecanoate (RL2). Meanwhile, HPLC analysis indicates that the molar ratio of RL1 and RL2 in the purified rhamnolipid product was ca. 1:1.  相似文献   

16.
古尼虫草胞内多糖高产培养基优化研究   总被引:1,自引:0,他引:1  
以古尼虫草Cordyceps gunnii胞内多糖产量为目标,利用单因素法筛选古尼虫草产胞内多糖的最适碳源、氮源和无机盐,运用正交试验筛选最佳培养基组合,用最佳培养基研究古尼虫草产胞内多糖的发酵动力学。结果表明:古尼虫草产胞内多糖最佳培养基为葡萄糖35g/L、蛋白胨15g/L、硫酸锌1g/L、KH2PO4 1g/L、K2HPO4 0.5g/L,用最佳培养基获得胞内多糖(5.169±0.274)g/L,产量是优化前的1.81倍;动力学研究表明,144h是古尼虫草胞内多糖最佳培养时间,此时产量最高为(6.794±0.221)g/L,是目前报道古尼虫草胞内多糖的最高产量。  相似文献   

17.
The aims of this work were to characterize and improve cellulose production by a Gluconoacetobacter xylinus strain isolated from Kombucha and determine the purity and some structural features of the cellulose from this strain. Cellulose yield in tea medium with both black tea and green tea and in Hestrin and Schramm (HS) medium under both static and agitated cultures was compared. In the tea medium, the highest cellulose yield was obtained with green tea (~0.20 g/L) rather than black tea (~0.14 g/L). Yield in HS was higher (~0.28 g/L) but did not differ between static and agitated incubation. 1H-NMR and 13C-NMR spectroscopy indicated that the cellulose is pure (free of acetan) and has high crystallinity, respectively. Cellulose yield was improved by changing the type and level of carbon and nitrogen source in the HS medium. A high yield of ~2.64 g/L was obtained with mannitol at 20 g/L and corn steep liquor at 40 g/L in combination. In the tea medium, tea at a level of 3 g/L gave the highest cellulose yield and the addition of 3 g/L of tea to the HS medium increased cellulose yield to 3.34 g/L. In conclusion, the G. xylinus strain from Kombucha had different cellulose-producing characteristics than previous strains isolated from fruit. Cellulose was produced in a pure form and showed high potential applicability. Our studies extensively characterized cellulose production from a G. xylinus strain from Kombucha for the first time, indicating both similarities and differences to strains from different sources.  相似文献   

18.
利用重组Pichia pastoris生产腺苷甲硫氨酸   总被引:33,自引:0,他引:33  
为改造甲醇利用型酵母Pichia pastoris来生产腺苷甲硫氨酸(SAM,S-adenosyl-L-methionine),我们将一个带有SAM合成酶基因的胞内表达质粒转化入Pichia pastoris菌株GS115,经过G418抗性筛选得到一株有两个基因拷贝的转化子。该菌在含有甲醇和甲硫氨酸的培养基中生长5d后,其细胞内的SAM的产量比原始菌株提高了30余倍。对该菌生产SAM的培养基中的碳源与氮源进行了优化,结果显示碳源的控制对该菌SAM产量的影响很大。在试管水平,该菌在含有0.75%的L-methionine并且碳源和有机氮源经过一定程度优化的培养基中,生长6d后SAM产量达到1.58g/L。  相似文献   

19.
Microbial fermentation of citrinin-free Monascus pigments is in favor in the development of food industry. This study investigated the influences of carbon source, nitrogen source, and mineral salts on the cell growth, monascin (MS), and citrinin (CT) production in Monascus M9. A culture medium composition was established for maximizing the production of citrinin-free MS in submerged culture, as follows: 50?g/L Japonica rice powder, 20?g/L NH4NO3, 3?g/L NaNO3, 1.5?g/L KH2PO4, 1?g/L MgSO4?·?7H2O, 0.2?g/L MnSO4. Under these conditions, no CT was detectable by high performance liquid chromatography. The yield of MS reached 14.11?mg/g, improving approximately 30% compared with before optimization.  相似文献   

20.
The development of fungal biopesticides requires the efficient production of large numbers spores or other propagules. The current study used published information concerning carbon concentrations and C:N ratios to evaluate the effects of carbon and nitrogen sources on sporulation of Paecilomyces lilacinus (IPC-P and M-14) and Metarhizium anisopliae (SQZ-1-21 and RS-4-1) in a two-stage cultivation system. For P. lilacinus IPCP, the optimal sporulation medium contained urea as the nitrogen source, dextrin as the carbon source at 1 g/L, a C:N ratio of 5:1, with ZnSO(4)·7H(2)O at 10 mg/L and CaCl(2) at 3 g/L. The optimal sporulation medium for P. lilacinus M-14 contained soy peptone as the nitrogen source and maltose as the carbon source at 2 g/L, a C:N ratio of 10:1, with ZnSO(4)·7H(2)O at 250 mg/L, CuSO(4)·5H(2)O at 10 mg/L, H(3)BO(4) at 5 mg/L, and Na(2)MoO(4)·2H(2)O at 5 mg/L. The optimum sporulation medium for M. anisopliae SQZ-1-21 contained urea as the nitrogen source, sucrose as the carbon source at 16 g/ L, a C:N ratio of 80:1, with ZnSO(4)·7H(2)O at 50 mg/L, CuSO(4)·5H(2)O at 50 mg/L, H(3)BO(4) at 5 mg/L, and MnSO(4)·H(2)O at 10 mg/L. The optimum sporulation medium for M. anisopliae RS-4-1 contained soy peptone as the nitrogen source, sucrose as the carbon source at 4 g/L, a C:N ratio of 5:1, with ZnSO(4)·7H(2)O at 50 mg/L and H(3)BO(4) at 50 mg/L. All sporulation media contained 17 g/L agar. While these results were empirically derived, they provide a first step toward low-cost mass production of these biocontrol agents.  相似文献   

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