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1.
黑曲霉单宁酶高活性菌株的诱变选育*   总被引:15,自引:0,他引:15  
郭鲁宏  杨顺楷   《微生物学通报》2000,27(2):105-108
以黑曲霉(Aspergillus nhiger)No.13为出发菌株,经紫外线诱变处理,获得一株制备原生质体的起始菌,该菌株单宁酶活性比No.13提高55%,并对其制备原生质体的条件进行了研究,在优化方案基础上,紫外诱变原生质体,诱变株经筛选,最后得到一株具有稳定遗传性的单宁酶高活性菌株,在摇瓶培养基中进行生物转化实验,连续传代10次,结果显示发酵液中没食子酸浓度始 维持在22.8-23.9mg/  相似文献   

2.
黑曲霉单宁酶产生菌的筛选及处理滇橄榄汁的研究   总被引:4,自引:0,他引:4  
利用实验室已有的17株黑曲霉单宁酶活性菌株为起始菌。经活化分离初筛,液体摇瓶复筛,选出具有高单宁酶活性的No.12菌株;对该菌株进行液体培养,提取单宁酶并固定化;以固定化单宁酶处理滇橄榄汁。结果表明,处理后的滇橄榄汁,固体悬浮物下降90%,说明本工艺具有潜在的工业开发价值。  相似文献   

3.
从黄海深层海底泥样中分离到1株产低温木聚糖酶的青霉,经EMS诱变得到11株酶活性提高的菌株,对其中1株产低温木聚糖酶活力最高的菌株产酶性质进行了初步研究。所产木聚糖酶在pH4.6,45℃时酶活可达25.8u/ml,比出发菌株提高126%。诱变后菌株所产木聚糖酶在0℃仍有显著酶活性,达8.2u/ml。  相似文献   

4.
目的:从新疆石河子盐碱地菊芋生长根际土壤中分离筛选高产菊粉酶活力菌株。方法:通过稀释平板涂布法分离微生物;利用^60Co诱变选育,96孔板筛选突变菌株;采用3,5-二硝基水杨酸比色法测定菊粉酶酶活。结果:分离到12株具有菊粉酶活力的菌株,复筛得到1株高产菊粉酶活力菌株,将其命名为G-60;以此菌株为出发菌株进行^60Co诱变,利用96孔板对诱变菌株进行筛选,经摇瓶发酵酶活测定,得到1株高产菊粉酶酶活的突变株,酶活达46.62U/mL,是未诱变菌株酶活的2.72倍。结论:经诱变得到1株高产菊粉酶活力的突变菌株。  相似文献   

5.
产适冷木聚糖酶的海洋产青霉的筛选和诱变   总被引:3,自引:0,他引:3  
从黄海深层海底泥样中分离到1株产低温木聚糖酶的青霉,经EMS诱变得到11株酶活性提高的菌株,对其中1株产低温木聚糖酶活力最高的菌株产酶性质进行了初步研究。所产木聚糖酶在pH4.6,45℃时酶活可达25.8u/ml,比出发菌株提高126%。诱变后菌株所产木聚糖酶在0℃仍有显著酶活性,达8.2u/ml。  相似文献   

6.
目的:从新疆石河子盐碱地菊芋生长根际土壤中分离筛选高产菊粉酶活力菌株。方法:通过稀释平板涂布法分离微生物;利用60Co诱变选育,96孔板筛选突变菌株;采用3,5-二硝基水杨酸比色法测定菊粉酶酶活。结果:分离到12株具有菊粉酶活力的菌株,复筛得到1株高产菊粉酶活力菌株,将其命名为G-60;以此菌株为出发菌株进行60Co诱变,利用96孔板对诱变菌株进行筛选,经摇瓶发酵酶活测定,得到1株高产菊粉酶酶活的突变株,酶活达46.62 U/mL,是未诱变菌株酶活的2.72倍。结论:经诱变得到1株高产菊粉酶活力的突变菌株。  相似文献   

7.
产纤溶酶少根根霉菌株的诱变筛选   总被引:3,自引:0,他引:3  
目的:通过对自南方小酒药中筛选得到的1株产纤溶酶的少根根霉Or株的诱变筛选,提高原有菌株的产酶能力。方法:以Or为出发菌株,进行亚硝基胍、紫外线、Co60诱变,以血纤维蛋白平板法为检测方法,筛选高产酶突变株。结果:经诱变传代后得到高产突变株8B,其产酶活性稳定为291.05U/mL,为原菌株产酶活力的6.34倍。该菌在血琼脂平板上不产生溶圈,诱变后孢子成熟提前8h。结论:物理诱变和化学诱变交替应用,能显著提高少根根霉Or株单位体积发酵液的产酶量,并能缩短孢子的成熟周期。该菌不具有溶血性,与已有报道的产纤溶酶的菌株不同。  相似文献   

8.
采用透明圈法筛选得到了产菊粉酶的多株菌株,并得到了1株产内切型菊粉酶较高的隐球酵母属(Cryptococcus)菌株L1,以L1作为出发菌株经Co^60诱变后,得到1株产内切型菊粉酶最好菌株C10,其诱变后低聚果糖得率比诱变前提高了52.6%,酶活力提高了51.9%。  相似文献   

9.
黑曲霉原生质体诱变选育β-葡萄糖苷酶高产菌株   总被引:6,自引:1,他引:5  
本研究报道了以原生质体诱变技术选育高产β-葡萄糖苷酶的黑曲霉菌株,并研究了其发酵特性。以黑曲霉CGMCC3.316为出发菌株,通过紫外诱变得到突变株3-3M。然后以3-3M为供试菌株,研究了其原生质体制备与再生的条件。最后通过原生质体诱变,选育得到一株β-葡萄糖苷酶活力较高的突变株60B-3D。该菌株具有良好的遗传稳定性,酶活力平均达到23IU/mL,与出发菌株CGMCC3.316相比提高39%。此外,该菌株的木聚糖酶活力也有所增加。同时考察了黑曲霉60B-3D的发酵特性,并与3-3M和出发菌株进行比较,结果表明该菌株有较高的蛋白分泌能力。本研究为发酵生产β-葡萄糖苷酶提供了一株良好的供试菌株。  相似文献   

10.
低能离子注入在CGTase高产菌株选育中的应用   总被引:1,自引:1,他引:0  
应用能量30keV、剂量为5×1015N /cm2的离子注入对环糊精葡萄糖基转移酶产生菌进行诱变育种,得到液体发酵24h产酶高于出发株50%以上的菌株11株。5代传代试验表明诱变后得到的高产菌株产酶具有较好的传代稳定性。  相似文献   

11.
茶叶中富含单宁化合物。从分离自黑茶的真菌菌株中,筛选高产单宁酶的菌株;进而分离纯化单宁酶,分析单宁酶对茶汤的转溶效果。从不同产地的3个黑茶样品中,共分离获得44个真菌分离物;经初步鉴定,这些真菌分离物以曲霉属(Aspergillus)、青霉属(Penicillium)和散囊菌属(Eurotium)的真菌居多。以单宁酸为底物的鉴别培养基初筛表明,其中26个真菌分离物在鉴别平板上产生透明圈,显示单宁水解酶活性;通过固体发酵复筛,筛选到1株产单宁酶活性较高的菌株,初步鉴定为青霉属(Penicillium)菌株,命名为青霉MP-24菌株。青霉MP-24可以以茶叶、茶梗和麸皮等农副产品作为原料固体发酵产生单宁酶。以麸皮为原料的发酵产物经过硫酸铵分级沉淀、DEAE阴离子交换层析和葡聚糖G-150凝胶层析等分离纯化步骤,得到分子量为70 kDa的单一蛋白质条带,单宁酶活力达到603.68 U/mg。纯化获得的单宁酶对茶汤有良好的转溶效果。研究结果表明,在黑茶相关微生物中含有丰富的产单宁酶菌株,是工业酶制剂的重要资源。  相似文献   

12.
利用黑曲霉单宁酶酶法制取没食子酸的研究   总被引:5,自引:0,他引:5  
利用已有的 10株高单宁酶活性的菌株为起始菌 ,经活化分离选择 ,借助Ⅱ级发酵培养程序、生物转化、结合TLC分析进行筛选实验。最后选出具有高单宁酶活性的 1号和 5 0号菌株 ,开展了没食子酸 (GA)克量级生物转化法制备实验 ,结果表明 ,本酶法工艺是可行的 ,在发酵液中GA的浓度分别达到2 0 .6mg/ml和 2 1 3mg/ml,产品产率 (以从五倍子提取的单宁酸计 )达到 41 2 %和 42 6 % ,具有潜在的工业开发价值  相似文献   

13.
Madhuca indica, locally known as mahua in India is a multipurpose tree species. Mahua, particularly bark contains a significant amount of hydrolysable tannin (17.31%) which can be utilized for ellagic acid production through biotransformation. In the present study, mahua bark utilized not only as a raw material for tannase production but also for ellagic acid a well-known therapeutic compound. After prior confirmation of hydrolysable tannin content in bark, it has been supplemented, as a substrate for tannase production through solid state fermentation of Aspergillus awamori. Tannase production, as well as biodegradation of the hydrolysable tannin reached a maximum at 72?h of incubation time. The optimum conditions for tannase production are solid to liquid ratio of 1:2, 35?°C, pH 5.5 and 72h incubation time which resulted 0.256?mg/mL of an extract of ellagic acid. Maximum tannase activity of 56.16?IU/gds at 35?°C and 72h of incubation time is recorded. It seems that tannase production and biotransformation of hydrolysable tannins using bark powder of mahua can be considered as an appropriate alternative to the existing procedures of ellagic acid production.  相似文献   

14.
Abstract

A novel tannase and gallic acid-producing Penicillium rolfsii (CCMB 714) was isolated from cocoa leaves from the South of Bahia. The influence of nutritional sources and the simultaneous effect of parameters involved in the fermentation process were available. Tannase (9.97 U?mL?1) and gallic acid (9?mg mL?1) production were obtained in 48?h by submerged fermentation in non-optimized conditions. Among the carbon sources, tested gallic acid and tannic acid showed the highest tannase production (p<.05) when compared with methyl gallate and glucose. After optimization using the temperature and tannic acid concentration as variables with the Central Compound Rotational Design (CCRD), the maximal tannase production (25.6?U mL?1) was obtained at 29.8?°C and 12.7%, respectively, which represents an increase of 2.56 times in relation to the initial activity. The parameters optimized for the maximum production of gallic acid (21.51?mg mL?1) were 30?°C and 10% tannic acid. P. rolfsii CCMB 714 is a new strain with a high tannase and gallic acid production and the gallic acid produced is very important, mainly for its applications in the food and pharmaceutical industry.  相似文献   

15.
An extracellular tannase (tannin acyl hydrolase) was isolated from Paecilomyces variotii and purified from cell-free culture filtrate using ammonium sulfate precipitation followed by ion exchange and gel filtration chromatography. Fractional precipitation of the culture filtrate with ammonium sulfate yielded 78.7% with 13.6-folds purification, and diethylaminoethyl–cellulose column chromatography and gel filtration showed 19.4-folds and 30.5-folds purifications, respectively. Molecular mass of tannase was found 149.8 kDa through native polyacrylamide gel electrophoresis (PAGE) analysis. Sodium dodecyl sulphate–PAGE revealed that the purified tannase was a monomeric enzyme with a molecular mass of 45 kDa. Temperature of 30 to 50°C and pH of 5.0 to 7.0 were optimum for tannase activity and stability. Tannase immobilized on alginate beads could hydrolyze tannic acid even after extensive reuse and retained about 85% of the initial activity. Thin layer chromatography, high performance liquid chromatography, and 1H-nuclear magnetic resonance spectral analysis confirmed that gallic acid was formed as a byproduct during hydrolysis of tannic acid.  相似文献   

16.
A new colorimetric method of tannase (tannin acyl hydrolase, EC 3.1.1.20) assay has been developed using its specific substrate tannic acid. It is based on the changes in optical density of substrate tannic acid after enzymatic reaction at 530 nm. The residual tannic acid was measured by a modified BSA precipitation method. This assay is very simple, reproducible, and very convenient, and with it tannase activity can be measured in relation to the growth of the organism.  相似文献   

17.
AIMS: The aim of this study was to enrich and isolate bacteria from a tannery soil that were capable of utilizing tannic acid and gallic acid as sole source of carbon aerobically, and to characterize their diversity in order to identify efficient strains that can be used for tannin bioremediation. METHODS AND RESULTS: Bacterial strains were isolated after enrichment in minimal medium with tannic acid or gallic acid as sole carbon source. Polymerase chain reaction (PCR) restricted fragment length polymorphism of 16S rDNA [amplified ribosomal DNA restriction analysis (ARDRA)] and BOX-PCR was used to characterize their diversity. Two strains showing relatively high efficiency in degrading tannic acid and gallic acid were identified on the basis of carbon source utilization pattern (BIOLOG) and 16S rDNA sequence. CONCLUSIONS: Bacterial strains capable of degrading tannic acid and gallic acid could be grouped into six and seven clusters on the basis of ARDRA and BOX-PCR, respectively. On the basis of 16S rDNA sequence, the most efficient isolate degrading tannic acid belonged to Pseudomonas citronellolis, whereas the most efficient gallic acid degrader showed maximum phylogenetic relatedness to P. plecoglossicida. SIGNIFICANCE AND IMPACT OF THE STUDY: Aerobic tannic acid degraders such as the two strains isolated in this study can be used for tannin bioremediation, and in the study of genes involved in the production of tannase, an industrially important enzyme.  相似文献   

18.
The tannins chebulinic acid or tara tannin were added to an incubation system in which GA3 induces enzyme synthesis in endosperm half seeds of barley (Hordeum vulgare L.). The activity of amylase and acid phosphatase in the incubation medium was reduced compared to the activity in the medium after incubation with GA3 alone. When embryo half seeds of barley were incubated with chebulinic acid or tara tannin in the absence of added GA3, the enzyme activity of the incubation medium was also reduced. The activity of preformed enzymes obtained from endosperm half seeds previously induced with GA3 was not reduced by the addition of tannin. Comparisons were made of the amount of enzyme activity from breis of aleurone layers incubated with GA3 in the presence and absence of tannins. The amounts of activity were relatively small and approximately equal in both cases, indicating that secretion from the aleurone was not blocked by the tannins. The reduction of enzyme activity caused by tannins in both endosperm and embryo half seeds could be completely reversed by the addition of GA3.  相似文献   

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