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1.
一株产纤维素酶真菌的筛选、鉴定及酶学性质初步研究   总被引:2,自引:0,他引:2  
经过初筛和复筛从土样中分离出1株高产纤维素酶真菌SNB9,经形态学和ITS序列分析。鉴定为黑曲霉(Aspergu Uusniger)。生长条件的测定显示该菌生长范围偏酸。发酵后纤维素酶的最适作用pH在4.0—5.0,最适作用温度在45—55℃。滤纸酶活为9.29U/mL,C,酶活为23.69U/mL,CMCase酶活为38.23U/mL,β-葡萄糖苷酶活为65.52U/mL。发酵液中除了纤维素酶,还发现有辅助酶,包括木聚糖酶、淀粉酶、果胶酶、蛋白酶。  相似文献   

2.
为建立生物质固载硫酸盐还原菌(SRB)产品酶活的检测方法,首先确定亚硫酸盐还原酶(SiR)作为SRB胞外酶表征其生物活性的可行性;其次对固态发酵产品制备粗酶液的各种条件进行探讨,研究浸泡介质、浸泡时间、超声功率、超声时间、预处理方式等单因素对酶活的影响;由正交实验确定粗酶液制备的最佳工况。实验结果表明,先浸提后超声处理的酶活值显著高于仅用超声、浸提的结果。为确保酶活值测定不受干扰,排除超声温度对结果的影响,确定实验最佳工况:2g固态发酵产品经磷酸盐缓冲液25mL、浸提60min,酶活值为1.0799U/g。生物质固载SRB酶活检测方法的建立为固态发酵产品活性评价、固态发酵条件优化、可渗透反应墙生化性能评估提供一定的理论依据。  相似文献   

3.
【背景】碱性丝氨酸蛋白酶(Subtilisin)是一种具有广泛用途的工业酶制剂。【目的】旨在通过优化启动子、信号肽及培养基组分来提高地衣芽胞杆菌中碱性丝氨酸蛋白酶产量。【方法】以地衣芽胞杆菌BL10为出发菌株,构建了含有4种不同类型启动子(PbacA、P43、PaprE和PsrfA)及4种不同类型信号肽(SPVpr、SPSacB、SPSacC和SPAprE)的碱性丝氨酸蛋白酶表达菌株,并在获得高产菌株的基础上进行培养基优化。【结果】4种启动子的表达水平为PbacAPaprEP43PsrfA,4种信号肽的分泌效率为SPAprESPSacCSPSacBSPVpr。其中,菌株BL10/pPbacA-aprE产生最高的碱性丝氨酸蛋白酶酶活(275.21 U/mL),相比于出发菌株BL10/pHY-aprE (167.98 U/mL)提高了64%。随后,通过对发酵培养基成分进行优化并结合正交优化,获得了一种高产碱性丝氨酸蛋白酶的培养基(g/L):玉米淀粉40.0,豆粕50.0,(NH4)2SO4 4.0,K2HPO4 3.0,CaCO3 1.0。最后,碱性丝氨酸蛋白酶酶活提高到747.37 U/mL,是初始酶活的4.45倍。【结论】为工业化高产碱性丝氨酸蛋白酶提供了一种有效策略。  相似文献   

4.
碱性果胶裂解酶摇瓶发酵条件的研究   总被引:3,自引:0,他引:3  
利用碱性果胶裂解酶生产菌株Bacillus subtilis WSH02-02进行摇瓶发酵优化,确定了最适种子斜面培养基、种子摇瓶培养基和发酵摇瓶培养基等培养条件,经14h的摇瓶发酵,酶活最高达到8.29U/mL。  相似文献   

5.
【背景】从独角莲中分离得到的地衣芽孢杆菌TG116是一株对植物病原菌具有广谱抗性作用的生防菌株。【目的】优化TG116的产酶条件并探索其酶学性质,进一步了解其抗菌机制。【方法】采用Folin-Phenol显色法与响应曲面法,优化菌株TG116的产酶条件并研究其蛋白酶的酶学性质。【结果】菌株TG116产酶最适条件为:温度40.83°C,p H 8.01,发酵时间53.74 h,增加通气量可以显著提高酶活力。按照优化后的条件培养48 h后,上清液蛋白酶活力从57.46 U/mL达到了254.07 U/mL。酶学性质研究表明:该酶为碱性蛋白酶,最适反应pH为8.5,最适反应温度为50°C,具有良好的温度和pH稳定性,EDTA对酶活具有强烈的抑制作用,金属离子Mg~(2+)、Ca~(2+)、Na~+、Co~(2+)、K~+等对酶活也具有一定的抑制作用。【结论】菌株TG116具有良好的p H与温度稳定性,在实际应用中蛋白酶不易失活,可以分解真菌的细胞壁蛋白成分,破坏细胞壁结构,从而抑制甚至杀死病原菌,达到抗菌作用。  相似文献   

6.
产碱性蛋白酶嗜碱芽孢杆菌的筛选及其研究   总被引:10,自引:0,他引:10  
利用造纸黑液对土样进行富集,筛选出3株碱性蛋白酶酶活力较高的嗜碱芽孢杆菌X1、X2、X3。对它们的生长曲线,产酶曲线,在不同C、N源、pH值、盐浓度下的产酶活力进行的研究表明:3株嗜碱芽孢杆菌(Bacillussp.JBX1、X2、X5)酶活力较高(达到100U/mL),X2最高酶活可达140U/mL。最适pH值为9.5,碳源中的蔗糖,氮源中的酵母浸提物和硝酸钠均利于产酶。X1、X5两株嗜碱芽孢杆菌均表现出较强的耐盐耐高渗透压的能力。X1在11%的NaCl浓度下生长良好,酶活仍然达到80U/mL以上。而X2和X5对温度的耐受性比较强,在经70℃处理15min后依然保持了80%以上的酶活力,所产蛋白酶为高温碱性蛋白酶,从而为进一步的应用和研究奠定了基础。  相似文献   

7.
碱性蛋白酶工程菌发酵条件及重组酶的纯化和性质的研究   总被引:16,自引:0,他引:16  
在5L发酵罐中对重组碱性蛋白酶工程菌株BP071高产碱性蛋白酶的条件进行了研究,通过提高通气量和改变搅拌转速,BP071可在发酵40 h内达到产酶高峰,酶活力最高可达24480 u/mL。利用快速蛋白液相层析(FPLC)技术,建立了快速高效纯化碱性蛋白酶的方案。发酵液通过硫酸铵沉淀、DEAE-A-50脱色及聚乙二醇浓缩得粗酶,再经过CM-Sephadex-C-50、Sephadex-G-75柱层析后得到了单一组份的重组碱性蛋白酶,酶纯度提高了76.2倍。SDS-PAGE显示重组碱性蛋白酶分子量为28 kD。酶学性质研究表明,酶的最适作用pH为11,最适作用温度为60℃,具有良好的pH稳定性和热稳定性。Ca2+、Mg2+对酶的稳定性有促进作用,Hg2+、Ag+、PMFS和DFP能强烈抑制酶的活力。SDS和Urea对酶的活力无影响。  相似文献   

8.
枯草芽孢杆菌(Bacillus Subtilis)B135工程菌能产生抗氧化型碱性蛋白酶,粗酶经硫酸铵分级沉淀,CM-52层析,Sephadex G-100层析,得到凝胶电泳均一样品,比活达到1700U/mg,是粗酶比活的7.69倍.该酶在60℃时酶活力最高,最适pH为10.2,在50℃时,温浴10min后,酶活降低到原来的50%.该酶受1M H_2O_2作用20min后,仍保持96%的酶活  相似文献   

9.
以香豆素为唯一碳源筛选到27株能高效降解黄曲霉毒素B1(AFB1)的微生物菌株.用高效液相色谱检测AFB1含量的方法进行AFB1降解酶活力测定.以不同菌株发酵上清液中AFB1降解酶活力高低为复筛条件,筛选到AFB1降解酶活力最高的一株菌并命名为HSD8.该菌株经形态学、生理生化及系统发育学方法鉴定为Sinomonas sp..筛选所得最优菌株的发酵上清液中酶活达443 U/mL,通过单因素试验对其产酶发酵条件进行优化,以提高酶活.优化所得最佳发酵条件为:装液量50 mL/250 mL,发酵周期48 h,初始pH 5.0,接种量8%,发酵温度37℃,摇床转速160r/min.在最佳发酵条件下,该菌株发酵上清液中酶活可达548 U/mL,比优化前提高23.7%.优选菌株HSD8在生物降解黄曲霉毒素B1方面具有应用潜力,值得进一步研究开发.  相似文献   

10.
碱性果胶酶高产菌株的构建和高密度发酵   总被引:1,自引:0,他引:1  
碱性果胶酶可用于苎麻脱胶和棉织物前处理的精练工艺,与传统的高温碱煮相比,具有保护纤维、降低能耗和化学污染的优势,因此获得高表达的碱性果胶酶基因工程菌,低成本生产碱性果胶酶对于纺织工业节能减排具有重要的意义。前期研究工作已经将来源于枯草芽孢杆菌Bacillus subtilis 168的碱性果胶酶基因pel经过密码子优化后在毕赤酵母Pichia pastoris GS115中成功表达。本研究为了提高其表达量,首先利用启动子和信号肽都优化的载体pHBM905BDM进行表达,摇瓶酶活从68 U/mL增加到100 U/mL,qPCR检测转录水平提高了27%。再利用果胶底物平板筛选水解圈大的转化子进行摇瓶发酵获得菌株GS115-pHBM905BDM-pels4,摇瓶酶活为536 U/mL。随后构建重组质粒pPIC9K-pels,电转化菌株GS115-pHBM905BDM-pels4,利用抗生素G418平板进行筛选,在含4 mg/mL的G418抗性平板上得到菌株GS115-pHBM905BDM-pPIC9K-pels1,摇瓶酶活为770 U/mL,qPCR测定含7个拷贝目的基因。最后将该菌株在5 L的发酵罐中进行高密度发酵,果胶酶酶活提高至2 271 U/mL。该碱性果胶酶酶活已达到目前酵母表达的最高水平,说明其具有很好的应用于纺织工业的潜力。  相似文献   

11.
The purpose of this investigation was to study the effect ofBacillus subtilis PE-11 cells immobilized in various matrices, such as calcium alginate, k-Carrageenan, ployacrylamide, agar-agar, and gelatin, for the production of alkaline protease. Calcium alginate was found to be an effective and suitable matrix for higher alkaline protease productivity compared to the other matrices studied. All the matrices were selected for repeated batch fermentation. The average specific volumetric productivity with calcium alginate was 15.11 U/mL/hour, which was 79.03% higher production over the conventional free-cell fermentation. Similarly, the specific volumetric productivity by repeated batch fermentation was 13.68 U/mL/hour with k-Carrageenan, 12.44 U/mL/hour with agar-agar, 11.71 U/mL/hour with polyacrylamide, and 10.32 U/mL/hour with gelatin. In the repeated batch fermentations of the shake flasks, an optimum level of enzyme was maintained for 9 days using calcium alginate immobilized cells. From the results, it is concluded that the immobilized cells ofB subtilis PE-11 in calcium alginate are more efficient for the production of alkaline protease with repeated batch fermentation. The alginate immobilized cells ofB subtilis PE-11 can be proposed as an effective biocatalyst for repeated usage for maximum production of alkaline protease. Published: October 21, 2005  相似文献   

12.
为探索重组米曲霉碱性蛋白酶(rAlp)在毕赤酵母中表达的最佳诱导条件,本研究在单因子实验的基础上,运用Box-Behnken设计的响应面试验对诱导条件进行了优化。根据回归分析确定了影响rAlp表达的因子,求得最佳诱导条件为:诱导温度28.53℃,诱导pH6.63,甲醇浓度1.28%。此工艺条件下碱性蛋白酶活力实测值为49.78U/mL,回归模型的预测值与实测值的相对误差〈1%,说明该回归方程与实际情况拟合很好。  相似文献   

13.
This study explores a novel concept of coproduction of uricase and alkaline protease by Bacillus licheniformis using single substrate in single step. Seven local bacterial strains were screened for uricase production, amongst which B. licheniformis is found to produce highest uricase along with alkaline protease. Optimization of various factors influencing maximum enzyme coproduction by B. licheniformis is performed. Maximum enzyme productivity of 0.386?U/mL uricase and 0.507?U/mL alkaline protease is obtained at 8?hr of incubation period, 1% (v/v) inoculum, and at 0.2% (w/v) uric acid when the organism is cultivated at 25°C, 180?rpm, in a media containing xylose as a carbon source, urea as a nitrogen source, and initial pH of 9.5. The statistical experimental design method of Box–Behnken was further applied to obtain optimal concentration of significant parameters such as pH (9.5), uric acid concentration (0.1%), and urea concentration (0.05%). The maximum uricase and alkaline protease production by B. licheniformis using Box–Behnken design was 0.616 and 0.582?U/mL, respectively, with 1.6- and 1.13-fold increase as compared to one factor at a time optimized media. This study will be useful to develop an economic, commercially viable, and scalable process for simultaneous production of uricase and protease enzymes.  相似文献   

14.
地衣芽孢杆菌2709由于易于培养、GRAS状态和完善的蛋白质分泌能力,是已经投入工业生产碱性蛋白酶的菌株.为改善该菌株的发酵生产性能,提高菌体对培养基成分的利用和碱性蛋白酶产量,对菌株的胞外分泌酶系进行完善.利用同源重组机制,在基因组复制起始位点附近引入了来源于短小芽孢杆菌的木聚糖酶基因xynA和在复制起始位点中心对称...  相似文献   

15.
杨春晖  王海燕 《遗传》2007,29(7):874-880
利用TAIL-PCR(Thermal asymmetric interlaced PCR)从短小芽孢杆菌基因组中扩增到碱性蛋白酶基因编码区上游的启动子片段。对该片段的序列测定和分析表明, 此片段长797 bp, 但与基因表达有关的序列长约390 bp。对启动子片段进行不同长度的缺失突变, 以获得最小的基因启动子片段, 结果表明, 该基因起始密码子上游约160 bp的DNA片段就可以启动基因的表达。将含有该片段的碱性蛋白酶基因WApQ3插入大肠杆菌-芽孢杆菌穿梭质粒载体pSUGV4中, 构建了碱性蛋白酶基因表达质粒pSUBpWApQ3。将该质粒分别转入枯草芽孢杆菌和短小芽孢杆菌中表达, 可在胞外检测到碱性蛋白酶活性, 最高酶活分别为466.5 U/mL和3060 U/mL。  相似文献   

16.
筛选分离得到一株高产碱性蛋白酶菌株EIM-8,并基于16S序列进行分子系统进化分析,鉴定该菌株为枯草芽孢杆菌(Bacillus subtilis).同时,采用响应面法对Bacillus subtilis EIM-8的产酶条件进行了优化.首先通过单因素试验,筛选出最适碳源为玉米淀粉,最适氮源为牛肉膏.在此基础上,采用Pl...  相似文献   

17.
Three alkaline protease‐producing strains designated as ANFLR1, NPLR1, and PROLR15 were isolated from Labeo rohita fish gut. These strains are able to produce alkaline protease using tannery fleshing (TF) as the sole carbon and nitrogen source and were identified as Bacillus megaterium, Serratia marcescens, and novel Pontibacter sps. Proteases from these organisms were purified to electrophoretic homogeneity following ammonium sulphate precipitation, ion exchange, and column chromatography. SDS‐PAGE revealed molecular weights of the proteases to be 46 kDa (ANFLR1), 52 kDa (NPLR1), and 58 kDa (PROLR15). The optimum pH and temperature for the protease activity of ANFLR1, NPLR1, and PROLR15 were found to be 10.5, 11.5, 9, and 70°C, 60°C, and 50°C, respectively. The maximum protease activities at the optimum conditions were 420 U/mL (ANFLR1), 550 U/mL (NPLR1), and 530 U/mL (PROLR15). Inhibition of the NPLR1 protease by pepstatin confirmed aspartate‐type enzymatic activity. Fe3+ enhanced the activity of PROLR15 protease. Unlike all other microbial proteases known so far, the PROLR15 enzyme did not require Ca2+ for activity and thermal stability. SDS‐PAGE and scanning electron microscopy analyses confirmed the conversion of high molecular weight substrate (TF) to low molecular weight peptides by these proteases. The alkaline metalloprotease production by novel Pontibacter sps. and aspartate protease production by S. marcescens remain unexplored. Hence, TF with its relatively abundant availability can be beneficially utilized for alkaline protease production through the fish gut microbial fermentation processes.  相似文献   

18.
刘颖  徐春厚 《微生物学通报》2011,38(8):1222-1227
以从红树林土壤分离并经紫外线和亚硝基胍复合诱变获得的SC27突变菌株作为目标菌,对其胞外代谢产物的活性与成分进行分析。结果表明:芽孢杆菌SC27产生乳酸,产量为5.04 g/L;发酵液蛋白酶、淀粉酶和纤维素酶活力分别为1 316.6、513.3和176.2 U/mL,未检测出脂肪酶;胞外代谢产物对革兰氏阳性菌的抑菌活性强,且抑菌活性物质可耐受高温及木瓜蛋白酶、蛋白酶K和胰蛋白酶处理;发酵液二氯甲烷萃取物的主要化学成分及相对含量为二丁基羟基甲苯(10.28%)、二甲基二氧基硅烷(7.87%)、2,4-二叔丁基苯酚(2.92%)和2个未确定化合物(4.47%、2.36%)。  相似文献   

19.
While much attention has been given to marine microorganisms for production of enzymes, which in general are relatively more stable and active compared to those from plants and animals, studies on alkaline protease production from marine microorganisms have been very limited. In the present study, the alkaline protease producing marine bacterial strain SD8 isolated from sea muds in the Geziwo Qinhuangdao sea area of China was characterized and its optimal culture conditions were investigated. Strain SD8 was initially classified to belong to genus Pseudomonas by morphological, physiological and biochemical characterizations, and then through 16S rDNA sequence it was identified to be likely Pseudomonas hibiscicola. In addition, the culture mediums, carbon sources and culture conditions of strain SD8 were optimized for maximum production of alkaline protease. Optimum enzyme production (236U/mL when cultured bacteria being at 0.75 mg dry weight/mL fermentation broth) was obtained when the isolate at a 3% inoculum size was grown in LB medium at 20 mL medium/100mL Erlenmeyer flask for 48h culture at 30°C with an initial of pH 7.5. This was the first report of strain Pseudomonas hibiscicola secreting alkaline protease, and the data for its optimal cultural conditions for alkaline protease production has laid a foundation for future exploration for the potential use of SD8 strain for alkaline protease production.  相似文献   

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