首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 218 毫秒
1.
以琥珀酸放线杆菌Actinobacillus succinogenes F3-21为出发菌株,分别用吖啶黄、紫外线、紫外线-硫酸二乙酯和亚硝基胍进行诱变,产生突变菌库.用“96孔板培养-HPLC浓缩检测.厌氧瓶复筛”的模式筛选高产突变株.从1056株突变株中,筛选到一株高产菌株Ⅵ-10-C.连续传代10次,产酸水平不变.在5L发酵罐中补料分批发酵72 h,Ⅵ-10-C产琥珀酸87.6 g/L,生产强度1.22 g/(L·h),糖酸转化率0.66 g/g;琥珀酸产量比出发菌提高了30%.代谢通量与关键酶活性分析表明:相比于F3-21,Ⅵ-10-C发酵过程中从磷酸烯醇式丙酮酸节点处流向草酰乙酸的代谢流量增加了28.9%,相对应的磷酸烯醇式丙酮酸羧化激酶(PEPCK)酶活提高了23.5%.结果表明用“96孔板培养-HPLC浓缩检测-厌氧瓶复筛”的模式能快速有效筛选高产琥珀酸菌株.  相似文献   

2.
L—赖氨酸高产菌株选育的研究   总被引:3,自引:0,他引:3  
L-赖氨酸产生菌钝齿棒杆菌(Corynebacteriumcrenatum)N30-25菌株经紫外线诱变处理,分别在含有不同浓度的七叶苷的培养基上进行筛选,经摇瓶多次复筛获得了3株高产变异菌株。对这3株菌在相同发酵条件下进行发酵生产L-赖氨酸,与出发菌株比较,产量提高了22-31%,经过3次传代,产生L-赖氨酸能力仍很稳定。  相似文献   

3.
南昌霉素高产菌株的链霉素抗性基因突变诱变筛选研究   总被引:10,自引:0,他引:10  
通过对链霉素对南昌霉素(Nanchangmycin)产生菌NS-41-80菌株孢子的致死浓度测定基础上,采用诱变剂甲基磺酸乙酯(EMS)的不同诱发剂量对菌株孢子进行诱变处理,诱变处理的孢子涂布在含链霉素(10ug/mL)致死浓度的高氏平板上,获得了大量的链霉素抗性基因(str)突变株。然后从3,000株链霉素抗性基因(str)突变株中通过初筛获得比诱变出发菌株产素能力提高20%以上的菌株202株,再进一步通过摇瓶复筛,获得比出发菌株产素能力分别提高100%,200%,300%高产菌株为48株,7株和1株,分别为复筛菌和初筛菌株的23.76%和1.60%,3.46%和0.23%,0.5%和0.03%,将产素能力提高240%以上5个菌株连同出发菌株连续3批次进行摇瓶发酵结果,5个突变株的产素能力均比出发菌株的产素能力提高57%-96.4%,其中突变株80-5.3-165菌株摇瓶发酵单位达6,000ug/mL以上,3批次摇瓶平均发酵单位达5,855ug/mL,建立了南昌霉素高产菌株的链霉素抗性基因突变诱变快速高效的筛选方法。  相似文献   

4.
本文旨在通过诱变和耐受性筛选的手段提高放线茵£一PL的产量。以稠李链霉菌Strepto—myces padanus LS-L5为出发菌,经紫外诱变,在以琥珀酸为唯一碳源的培养基上筛选快速生长的菌株,测定突变株的ε-PL发酵水平和遗传稳定性。经初筛和复筛,获得突变株H3,其摇瓶发酵ε-PL产量为0.68dL,较出发菌提高了41%,传代4次产量基本稳定。H3在5L发酵罐中分批发酵,ε-PL产量达到2.0g/L,较出发菌提高了一倍。在固定二氧化碳的能力方面,突变株H3的PEP羧化酶酶活较出发菌株LS-L5的PEP羧化酶酶活提高了1.67倍。  相似文献   

5.
直接利用糖质原料生产L-苹果酸菌种的选育   总被引:6,自引:0,他引:6  
从土壤中筛选到一株产L-苹果酸的黄曲霉菌,经紫外线、亚硝基胍(NTG)、硫酸二乙酯(DES)和^60Co辐射等诱变处理,并经多次分离得到一株性能稳定的高产L-苹果酸突变株黄曲霉HA5800,35℃,200r/min摇瓶发酵120h,产L-苹果酸72g/L、糖酸转化率为74.22%,经山东省卫生防疫站检定,该菌株不产黄曲霉素素B1。  相似文献   

6.
为快速高效筛选L-精氨酸高产突变株,建立一种缺陷菌株平板显色法并采用低能N+离子束对L-精氨酸生产用菌株钝齿棒杆菌SYPA5-5进行诱变处理,通过上述平板显色法筛选获得高产突变株.对突变株进行摇瓶发酵实验,最终选育出一株L-精氨酸产量较高且产酸性能比较稳定的突变菌株钝齿棒杆菌SYPA5-5-36.该菌株摇瓶发酵L-精氨酸产量可达35.85 g/L,比出发菌株提高了19.5%.因此,缺陷型菌株平板显色法可以用于快速、高效筛选高产L-精氨酸突变株.  相似文献   

7.
本文探讨了利用紫外线诱变结合恒化器富集筛选耐高温高产乳酸菌的方法。首先以一株鼠李糖乳杆菌为出发菌种,并用紫外线的方法进行诱变,然后通过恒化器培养的方法在55oC下进行了耐高温高产菌株的富集。最终获得了9株耐高温菌株,其在高温下的产酸能力较出发菌株有了较大提高,其中一株突变株HT1发酵48h后L-乳酸产量达到了62.9g/L,比出发菌株提高了18.1g/L。本方法比一般平板筛选方法的效率高,大大减轻了复筛的工作量。  相似文献   

8.
本文旨在通过诱变和耐受性筛选的手段提高放线菌ε-PL的产量.以稠李链霉菌Streptomyces padanus LS-L5为出发菌,经紫外诱变,在以琥珀酸为唯一碳源的培养基上筛选快速生长的菌株,测定突变株的ε-PL发酵水平和遗传稳定性.经初筛和复筛,获得突变株H3,其摇瓶发酵ε-PL产量为0.68 g/L,较出发菌提高了41%,传代4次产量基本稳定.H3在5L发酵罐中分批发酵,ε-PL产量达到2.0 g/L,较出发菌提高了一倍.在固定二氧化碳的能力方面,突变株H3的PEP羧化酶酶活较出发菌株LSL5的PEP羧化酶酶活提高了1.67倍.  相似文献   

9.
产1,3-丙二醇菌株丁酸梭菌的诱变育种   总被引:7,自引:0,他引:7  
甘油由丁酸梭菌转化成1,3-丙二醇的研究是厌氧条件下进行。为了获得1,3-丙二醇的高产突变株,以丁酸梭菌为出发菌株进行诱变处理。经过硫酸二乙酯(DES)化学诱变得到2株高产正突变株C.but2031和C.but2046,再经过紫外线和亚硝基胍(NTG)复合诱变得到突变株C.but3037。经过初筛、复筛和传代实验,表明其是稳定的突变株。C.but3037的1,3-丙二醇产量由出发菌株的2.2g/L提高到15.7g/L,提高了6.13倍,  相似文献   

10.
黑曲霉a-鼠李糖苷酶高产菌株的选育   总被引:1,自引:0,他引:1  
本文首次报道利用Davis方法制备的透明圈法筛选α-鼠李糖苷酶高产菌株。用甲基磺酸乙酯对出芽8 h的黑曲霉孢子进行诱变处理, 用透明圈法初筛出的菌株中, 产量提高40%以上的突变菌株占11%; 用摇瓶培养对初筛出的菌株进行两轮复筛α-鼠李糖苷酶高产突变株T-226, 摇瓶培养α-鼠李糖苷酶活达373.4 U/mL, 比出发菌株提高了22.7%。对该高产突变株进行5 L罐发酵实验, 发酵84 h测得α-鼠李糖苷酶活为631.9 U/mL。用新建立的方法选育高产α-鼠李糖苷酶的高产菌株, 不仅具有较高的筛选效率, 还具有良好的准确性。  相似文献   

11.
Succinic acid is a four-carbon dicarboxylic acid produced as one of the fermentation products of anaerobic metabolism. Based on the complete genome sequence of a capnophilic succinic acid-producing rumen bacterium, Mannheimia succiniciproducens, gene knockout studies were carried out to understand its anaerobic fermentative metabolism and consequently to develop a metabolically engineered strain capable of producing succinic acid without by-product formation. Among three different CO2-fixing metabolic reactions catalyzed by phosphoenolpyruvate (PEP) carboxykinase, PEP carboxylase, and malic enzyme, PEP carboxykinase was the most important for the anaerobic growth of M. succiniciproducens and succinic acid production. Oxaloacetate formed by carboxylation of PEP was found to be converted to succinic acid by three sequential reactions catalyzed by malate dehydrogenase, fumarase, and fumarate reductase. Major metabolic pathways leading to by-product formation were successfully removed by disrupting the ldhA, pflB, pta, and ackA genes. This metabolically engineered LPK7 strain was able to produce 13.4 g/liter of succinic acid from 20 g/liter glucose with little or no formation of acetic, formic, and lactic acids, resulting in a succinic acid yield of 0.97 mol succinic acid per mol glucose. Fed-batch culture of M. succiniciproducens LPK7 with intermittent glucose feeding allowed the production of 52.4 g/liter of succinic acid, with a succinic acid yield of 1.16 mol succinic acid per mol glucose and a succinic acid productivity of 1.8 g/liter/h, which should be useful for industrial production of succinic acid.  相似文献   

12.
以Actinobacillus succinogenes NJ113为出发菌株,经硫酸二乙酯(DES)诱变,在含8~20 g/L硫酸铵平板中筛选到一株耐铵型突变株YZ25,该菌株在含8 g/L硫酸铵培养基中厌氧发酵,琥珀酸产量达32.68 g/L,比出发菌提高了180.5%,对葡萄糖收率达65.4%,副产物乙酸、甲酸产量分别下降3.5%、28.7%,琥珀酸/乙酸比值由0.63提高到2.5。在7.5 L发酵罐中,用氨水调节pH分批实验,发酵34 h琥珀酸产量达27.13 g/L,较出发菌株提高了85.3%。  相似文献   

13.
Succinic acid is a four-carbon dicarboxylic acid produced as one of the fermentation products of anaerobic metabolism. Based on the complete genome sequence of a capnophilic succinic acid-producing rumen bacterium, Mannheimia succiniciproducens, gene knockout studies were carried out to understand its anaerobic fermentative metabolism and consequently to develop a metabolically engineered strain capable of producing succinic acid without by-product formation. Among three different CO2-fixing metabolic reactions catalyzed by phosphoenolpyruvate (PEP) carboxykinase, PEP carboxylase, and malic enzyme, PEP carboxykinase was the most important for the anaerobic growth of M. succiniciproducens and succinic acid production. Oxaloacetate formed by carboxylation of PEP was found to be converted to succinic acid by three sequential reactions catalyzed by malate dehydrogenase, fumarase, and fumarate reductase. Major metabolic pathways leading to by-product formation were successfully removed by disrupting the ldhA, pflB, pta, and ackA genes. This metabolically engineered LPK7 strain was able to produce 13.4 g/liter of succinic acid from 20 g/liter glucose with little or no formation of acetic, formic, and lactic acids, resulting in a succinic acid yield of 0.97 mol succinic acid per mol glucose. Fed-batch culture of M. succiniciproducens LPK7 with intermittent glucose feeding allowed the production of 52.4 g/liter of succinic acid, with a succinic acid yield of 1.16 mol succinic acid per mol glucose and a succinic acid productivity of 1.8 g/liter/h, which should be useful for industrial production of succinic acid.  相似文献   

14.
过量表达苹果酸脱氢酶对大肠杆菌NZN111产丁二酸的影响   总被引:2,自引:1,他引:1  
大肠杆菌NZN111是敲除了乳酸脱氢酶的编码基因 (ldhA) 和丙酮酸-甲酸裂解酶的编码基因 (pflB) 的工程菌,厌氧条件下由于辅酶NAD(H) 的不平衡导致其丧失了代谢葡萄糖的能力。构建了苹果酸脱氢酶的重组菌大肠杆菌NZN111/pTrc99a-mdh,在厌氧摇瓶发酵过程中通过0.3 mmol/L的IPTG诱导后重组菌的苹果酸脱氢酶 (Malate dehydrogenase,MDH) 酶活较出发菌株提高了14.8倍,NADH/NAD+的比例从0.64下降到0.26,同时NAD+和NADH浓度分别  相似文献   

15.
进化代谢选育高渗透压耐受型产琥珀酸大肠杆菌   总被引:1,自引:0,他引:1       下载免费PDF全文
在以碳酸钠为酸中和剂的大肠杆菌两阶段发酵产琥珀酸的过程中,由于Na+的积累造成发酵体系中渗透压的提高,严重抑制了琥珀酸的产物浓度。为了增强大肠杆菌对渗透压的耐受性,考察了利用进化代谢方法筛选高渗透压耐受型高产琥珀酸大肠杆菌菌株的可行性。进化代谢系统作为一种菌株突变装置,可以使菌体在连续培养条件下以最大的生长速率生长。以NaCl为渗透压调节剂,通过在连续培养装置中逐步提高NaCl浓度使菌体在高渗透压条件下快速生长,最终得到了一株高渗透压耐受型琥珀酸生产菌株Escherichia coli XB4。以碳酸钠为酸中和剂,在7 L发酵罐中利用Escherichia coli XB4进行两阶段发酵,厌氧培养60 h后,琥珀酸产量达到了69.5 g/L,琥珀酸生产速率达到了1.81 g/(L.h),分别比出发菌株提高了18.6%和20%。  相似文献   

16.
郑璞  周威  倪晔  姜岷  韦萍  孙志浩 《生物工程学报》2008,24(6):1051-1055
琥珀酸放线杆菌是发酵生产有应用前景的生物基原料-丁二酸的微生物。本研究室从牛瘤胃中筛选获得一株琥珀酸放线杆菌Actinobacillus succinogenes CGMCC 1593, 分析了环境气体、pH、氧化还原电位(ORP)环境因素对琥珀酸放线杆菌A. succinogenes CGMCC 1593发酵生产丁二酸的影响。结果表明: CO2不仅提供了A. succinogenes CGMCC 1593发酵生产丁二酸的最佳气体环境, 也是发酵生产丁二酸的底物之一; MgCO3是A. succinogenes CGMCC 1593发酵过程较好的pH调节剂, 发酵过程维持pH7.1~6.2, 可满足菌体生长与产酸的要求; 发酵液初始ORP过低, 不利于菌体生长, ORP在-270 mV时对丁二酸产生有利。在菌体对数生长期结束时, 通过Na2S·9H2O降低发酵液ORP到-270 mV, 发酵48 h时可产丁二酸37 g/L, 摩尔产率达到129%。这对深入研究A. succinogenes CGMCC 1593发酵生产丁二酸具有参考价值。  相似文献   

17.
富含蔗糖的甘蔗糖蜜可作为制备丁二酸的廉价原料。然而生产丁二酸的潜力菌株大肠杆菌Escherichia coli AFP111不能代谢蔗糖。为了使其具有蔗糖代谢能力,将E.coli W中非PTS蔗糖利用系统蔗糖通透酶的编码基因csc B,果糖激酶的编码基因csc K和蔗糖水解酶的编码基因csc A克隆并表达到AFP111中,获得重组菌株AFP111/p MD19T-csc BKA。经厌氧发酵验证,重组菌株72 h消耗20 g/L蔗糖,丁二酸产量达到12 g/L。在3L发酵罐中采用有氧阶段培养菌体、厌氧阶段发酵的两阶段发酵方式,厌氧发酵30 h,重组菌株以蔗糖和糖蜜为碳源丁二酸产量分别为34 g/L和30 g/L。结果表明,通过外源引入非PTS蔗糖利用系统,重组菌株具有较强的代谢蔗糖生长及合成丁二酸的能力,并且能够利用廉价糖蜜发酵制备丁二酸。  相似文献   

18.
Fermentation at low pH is an efficient way to improve the competitiveness of biological succinic acid-producing process. Actinobacillus succinogenes shows good performance of succinic acid production under anaerobic conditions, but its succinic acid production capability at the low-pH is inefficient due to the poor acid resistance. Herein, a mutant A. succinogenes BC-4 with improved cell growth and succinic acid production under weak acid conditions was obtained by adaptive evolution. The specific growth rate and succinic acid production of BC-4 reached 0.13 g/L/h and 20.77 g/L, which were increased by 3.25- and 2.95- fold, respectively compared with the parent strain under anaerobic condition at pH 5.8. The activities of specific enzymes with ATP generation were significantly enhanced under weak acidic conditions, resulting in 1.28-fold increase in the maximum ATP level. Membrane fatty acid composition analysis demonstrated that the ratio of saturated to unsaturated fatty acids was decreased from 1.62 to 1.44 in mutant BC-4, leading to improved intracellular pH homeostasis. Furthermore, the change from long-chain to median-chain fatty acid might lower the permeability of H+ into cytoplasm for survival under acid stress. These results indicated that A. succinogenes BC-4 is a promising candidate for succinic acid production under weak acid condition.  相似文献   

19.
基因组改组技术选育耐酸性琥珀酸放线杆菌   总被引:3,自引:0,他引:3  
刘璇  郑璞  倪晔  董晋军  孙志浩 《微生物学通报》2009,36(11):1676-1681
以琥珀酸产生菌Actinobacillus succinogenes CGMCC 1593为出发菌,分别经过紫外线-甲基磺酸乙酯(UV-EMS)和紫外线-硫酸二乙酯(UV-DES)诱变处理,得到7株耐酸性有所提高的突变株.以此作为候选菌库,经3轮原生质体递进融合,筛选获得4株可以在pH 5.6下生长的改组菌株.其中改组菌株F3-21在pH 5.6的完全液体培养基中生长的OD值是原始菌的7倍,在pH 5.2条件下仍能生长;其摇瓶发酵48h琥珀酸产量较原始菌株提高48%.在5L发酵罐中进行分批发酵,当控制pH在较低值(5.6~6.0)时,F3-21厌氧发酵48h积累琥珀酸38.1g/L,较出发菌株提高了45%;当控制pH在6.5~7.0时,F3-21厌氧发酵32h积累琥珀酸40.7g/L.F3-21在5L发酵罐中进行补料分批发酵,厌氧发酵72h,产琥珀酸达67.4g/L.结果说明基因组改组技术能够改进琥珀酸放线菌的耐酸性能及其琥珀酸的产量.  相似文献   

20.
Liang LY  Liu RM  Ma JF  Chen KQ  Jiang M  Wei P 《Biotechnology letters》2011,33(12):2439-2444
Escherichia coli NZN111 is a double mutant with inactivated lactate dehydrogenase and pyruvate formate-lyase. It cannot utilize glucose anaerobically because of its unusually high intracellular NADH/NAD(+) ratio. We have now constructed a recombinant strain, E. coli NZN111/pTrc99a-mdh, which, during anaerobic fermentation, produced 4.3 g succinic acid l(-1) from 13.5 g glucose l(-1). The NADH/NAD(+) ratio decreased from 0.64 to 0.26. Furthermore, dual-phase fermentation (aerobic growth followed by anaerobic phase) resulted in enhanced succinic acid production and reduced byproduct formation. The yield of succinic acid from glucose during the anaerobic phase was 0.72 g g(-1), and the productivity was 1.01 g l(-1) h(-1).  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