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1.
离子注入选育高产木聚糖酶黑曲霉及其发酵条件研究   总被引:5,自引:0,他引:5  
以黑曲霉A3为出发菌,利用离子注入技术选育出一株遗传性状稳定的木聚糖酶高产突变株AN497,其产酶水平较出发菌从野生型A3菌株的405.6IU/ml提高到586.2IU/ml,即酶产量增加了44.5%;对高产菌进行发酵条件优化,发现以玉米芯粉为主要碳源、用蔗糖代替葡萄糖作为附加碳源,对木聚糖酶的发酵具有明显的促进作用;采用复合的无机氮源 (NH4)2SO4和NaNO3,(1: 2)浓度以10g/L为宜;菌株对发酵通氧量具有较高的要求,摇瓶转速在230r/min时的产酶水平较200r/min要高;通过发酵条件的优化,高产菌株的产酶活力最高可达671.1IU/mL,比出发菌株的产酶量提高了65.5%。  相似文献   

2.
本研究以Avicel-刚果红选择培养基为初筛培养基,从云南哀牢山国家级自然保护区和广西猫儿山国家级自然保护区的土壤样品中分离筛选得到4200株真菌,从中筛选出透明圈与菌落直径比较大、透明程度较为清晰的12个菌株。通过液体培养发酵,测定其上清液中的羧甲基纤维素酶活力、滤纸酶活力和Avicel酶活力,最终筛选出一株产该三种酶且其活力均最高的真菌菌株A25-2。通过对菌株A25-2形态学观察和其内转录间隔区(internal transcribed spacer,ITS)序列同源性比对分析,将菌株A25-2鉴定为哈茨木霉(Hypocrea lixii)。酶活测定结果表明菌株A25-2产纤维素酶的酶活力较高,在最适作用pH4.5和最适作用温度55℃下,其羧甲基纤维素酶活力为2.26IU/mL,滤纸酶活力为0.58IU/mL,Avicel酶活力为0.39IU/mL。薄层层析实验表明A25-2具有完整的纤维素酶系统。因此,真菌A25-2可作为饲料加工等生产和纤维素酶相关研究的备选菌株。  相似文献   

3.
从化纤厂土样中分离得到菌株AC-4,碱性纤维素酶活力达0.602 IU/mL。通过分析菌株形态学特性、培养特征及16S rDNA序列,确定该菌株为短小芽孢杆菌。对该菌所产碱性纤维素酶的酶学性质进行测定,确定其最适作用pH为9.5,最适作用温度为50℃。  相似文献   

4.
中性纤维素酶在纺织、食品、饲料和制药行业均具有广泛的应用。采用离子束注入技术对中性纤维素酶产生菌特异腐质霉(Humicolainsolens)H31-3进行诱变,经发酵筛选获得较高酶活力且传代稳定的正突变菌株H14,制备其原生质体后进行紫外诱变。筛选后得到正突变菌株H14-2,最终CMC酶、滤纸酶活力分别达82.56IU/mL和5.77IU/mL,较原始菌株提高了78.57%和106.81%。  相似文献   

5.
固态混合发酵提高木聚糖酶和纤维素酶活力的研究   总被引:9,自引:0,他引:9  
研究了接种比例、接种时间、碳源、氮源等因素对木霉和黑曲霉混合发酵产木聚糖酶和纤维素酶的影响。试验结果表明,当木霉和黑曲霉按4:6同时接种,以玉米芯3.75g、麸皮3.75g、葡萄糖37.5mg为混合碳源,Mandels营养盐11.5mL、添加NH_4NO_37.5mg为氮源,在84h产纤维素酶活力达到230IU/g干物质,木聚糖酶活力达到1308IU/g干物质,与两菌纯培养相比,纤维素酶活力提高163%,木聚糖酶活力提高79.5%。  相似文献   

6.
低温纤维素酶菌株CNY086选育及发酵培养基优化(Ⅱ)   总被引:3,自引:0,他引:3  
陈亮  迟乃玉  张庆芳 《微生物学通报》2009,36(10):1553-1556
自渤海湾海泥中分离21株低温纤维素酶产生菌。其中菌株CNY01为绿色木霉(Trichoderma viride), 酶活力为67.30 U/mL。以该菌株为出发菌株, 经UV、DES等诱变, 选育出高产突变菌株CNY086, 酶活力为92.17 U/mL。该突变菌株低温纤维素酶发酵具有遗传稳定性。通过单因素和正交实验确定突变菌株CNY086低温纤维素酶发酵最适培养基: 秸秆粉1.20%、麸皮0.70%、硫酸铵0.50%、磷酸二氢钾0.55%, 上述条件下CNY086菌株酶活力达到108.55 U/mL。  相似文献   

7.
细菌木聚糖酶高产菌的选育及发酵工艺研究   总被引:1,自引:0,他引:1  
经筛选和诱变 ,选育出 1株产 β 木聚糖酶活力较高 ( 1 2 4.45IU/mL) ,而羧甲基纤维素酶活力较低( 1 .0 8IU/mL)的突变株L1 0 IGA。得出该菌产酶的最适发酵工艺为 1 .5 %半纤维素 ,0 .1 2 7%蛋白胨 ,0 .1 0 5 %K2 HPO4,0 .0 5 5 %MgSO4·7H2 O ,0 .45 %酵母膏 ,0 .2 2 5 %Twen40 ,装量 3 2 .5mL/1 5 0mL三角瓶 ,起始pH为 7.2 5 ,3 7℃发酵 48h后 45℃发酵 2 4h。  相似文献   

8.
真菌胞外纤维素酶活可作为高效生防菌株筛选的指标之一,通过测定野生大伏革菌(Phlebiopsis gigantea)菌株在最优条件下所产生纤维素酶活力高低来达到筛选防治针叶树根腐病高效菌株的目的。以大伏革菌菌株液体培养过程中纤维素酶活力为指标,通过单因素和正交试验结合的方法,筛选出大伏革菌最适产纤维素酶条件为(g/L):葡萄糖30.00,蛋白胨5.00,磷酸二氢钾3.00,硫酸镁1.50,装液量120 mL/250 mL,接种量5%(V/V),初始pH为4.0。测定野生大伏革菌菌株纤维素酶活力的大小显示:08077号菌株纤维素酶活力最大,13025号菌株最小。研究得出08077号菌株比芬兰商业化生物制剂Rotstop-F具有更好的防治中国小孔异担子菌的潜能。  相似文献   

9.
木聚糖酶和甘露聚糖酶是两种重要的半纤维素酶,也是两种重要的饲用酶制剂,通过毕赤酵母表达系统中的体外串联表达盒构建多拷贝的方法构建了木聚糖酶DSB和甘露聚糖酶Man A共表达重组质粒p PICZαA/DSB-ManA,将该重组质粒电转化至宿主菌毕赤酵母X33中获得共表达两种酶的重组菌X33/DSB-ManA,实现了两种酶的共分泌表达,经诱导表达后木聚糖酶和甘露聚糖酶的酶活分别为273. 6 U/ml和256. 8 U/ml,为单独表达重组菌X33/DSB和X33/Man A酶活的30. 4%和73. 4%。酶学性质的分析显示DSB和Man A的最适反应温度均为75℃,在45℃~75℃范围内具有较好的温度稳定性,酶活可保持最高酶活的60%以上; DSB最适pH为6. 5,Man A最适pH为6. 0,在pH 3. 0、40℃条件下,Man A处理1h能保持最高酶活的80%以上,DSB处理1 h时能保持最高酶活的50%以上; DSB和Man A对多种金属离子和化学试剂(浓度为1 mM)具有较好的耐受性,均可保留60%以上的酶活力。通过单一菌株成功完成了不同酶的共表达,为复合酶饲料添加剂的生产和应用研究提供了一定的理论依据。  相似文献   

10.
以Aspergillus nigerJ5为出发菌株,经Co60γ-射线诱变,筛选到一株β-葡聚糖酶和木聚糖酶活力都较出发菌株高的突变株A-25,其产β-葡聚糖酶和木聚糖酶的合适发酵条件为:大麦粉4%、玉米浆2.5%、NaNO30.4%、Na2HPO40.1%、MgSO4.7H2O0.03%、FeSO4.7H2O0.01%、CaCO30.5%、吐温-800.25%,初始pH6.7,300mL三角瓶的装液量为50mL,在此条件下培养84h,β-葡聚糖酶活力达到1203.9I U/mL,较出发菌株提高35.9%,木聚糖酶活力达到395.2I U/mL,较出发菌株提高27.8%。突变株粗酶液降解工业面粉非淀粉多糖的能力明显高于出发菌株。  相似文献   

11.
Fungi producing xylanases are plentiful but alkali-thermo-tolerant fungi producing cellulase-poor xylanase are rare. Out of 12 fungal strains isolated from various sources, Coprinellus disseminatus SW-1 NTCC 1165 yielded the highest xylanase activity (362.1 IU/ml) with minimal cellulase contamination (0.64 IU/ml). The solid state fermentation was more effective yielding 88.59% higher xylanase activity than that of submerged fermentation. An incubation period of 7 days at 37°C and pH 6.4 accelerated the xylanase production up to the maximum level. Among various inexpensive agro-residues used as carbon source, wheat bran induced the maximum xylanase titres (469.45 IU/ml) while soya bean meal was the best nitrogen source (478.5 IU/ml). A solid substrate to moisture content ratio of 1:3 was suitable for xylanase production while xylanase titre was repressed with the addition of glucose and lactose. The xylanase and laccase activities under optimized conditions were 499.60 and 25.5 IU/ml, respectively along with negligible cellulase contamination (0.86 IU/ml). Biochemical characterization revealed that optimal xylanase activity was observed at pH 6.4 and temperature 55°C and xylanase is active up to pH 9 (40.33 IU/ml) and temperature 85°C (48.81 IU/ml). SDS–PAGE and zymogram analysis indicated that molecular weight of alkali-thermo-tolerant xylanase produced by C. disseminatus SW-1 NTCC 1165 was 43 kDa.  相似文献   

12.
李鹏  庄文颖 《菌物学报》2022,41(2):281-290
液态发酵条件下,以微晶纤维素为唯一碳源,比较了拟康宁木霉Trichoderma koningiopsis 8985和里氏木霉T. reesei QM9414产纤维素酶的能力。8985发酵12 h开始产生纤维素酶,36 h时酶活达到产酶峰值的50%,此时QM9414尚未诱导产酶。测定8985发酵84 h时上清液中滤纸纤维素酶、羧甲基纤维素酶、β-葡萄糖苷酶和木聚糖酶的酶活分别为1.06、3.62、1.80和6.67 IU/mL,分别是QM9414上述酶活的1.72、1.70、6.35和1.12倍。8985滤纸纤维素酶酶活的最适反应条件为pH 4.5,反应温度50 ℃,在Fe3+ (≤ 4 mmol/L)和Cu2+ (0-10 mmol/L)存在条件下酶活稳定。  相似文献   

13.
Gliocladium sp. TUB F-498, a wild strain of a lignocellulolytic fungus with a fast growth rate and enzyme production rate was selected as a potential in situ enzyme source for the bioprocessing of pretreated poplar wood (PPW) to ethanol in a simultaneous saccharification and fermentation process. TUB F-498 produced 77 filter paper units of cellulase activity and 246 IU of -glucosidase activity per g dry weight of substrate utilized, as compared with the highly successful mutant reference strain Trichoderma reesei Rut-C30, which produced 100 filter paper units and 92 IU per g dry weight substrate in a stirred-tank fermentation. TUB F-498 also produced more xylanase and endoglucanase activity than Rut-C30 on PPW in shake-flask fermentations.  相似文献   

14.
E. coli is one of the most commonly used host strains for recombinant protein production. However, recombinant proteins are usually found intracellularly, in either cytoplasm or periplasmic space. Inadequate secretion to the extracellular environment is one of its limitations. This study addresses the outer membrane barrier for the translocation of recombinant protein directed to the periplasmic space. Specifically, using recombinant maltose binding protein (MalE), xylanase, and cellulase as model proteins, we investigated whether the lpp deletion could render the outer membrane permeable enough to allow extracellular protein production. In each case, significantly higher excretion of recombinant protein was observed with the lpp deletion mutant. Up to 90% of the recombinant xylanase activity and 70% of recombinant cellulase activity were found in the culture medium with the deletion mutant, whereas only 40-50% of the xylanase and cellulase activities were extracellular for the control strain. Despite the weakened outer membrane in the mutant strain, cell lysis did not occur, and increased excretion of periplasmic protein was not due to cell lysis. The lpp deletion is a simple method to generate an E. coli strain to effect significant extracellular protein production. The phenotype of extracellular protein production without cell lysis is useful in many biotechnological applications, such as bioremediation and plant biomass conversion.  相似文献   

15.
A Clostridium strain PXYL1 was isolated from a cold-adapted cattle manure biogas digester at 15 degrees C. It could grow at temperatures as low as 5 degrees C up to 50 degrees C with highest specific growth rate at 20 degrees C and is a psychrotroph. It produced extracellular hydrolytic enzymes namely xylanase, endoglucanase, beta-xylosidase, beta-glucosidase and filter paper cellulase, all of which had maximal activity at 20 degrees C. The induction of xylanase was highest on birch wood xylan (37 IU(mg protein)(-1)) compared with xylose (1.11 IU(mg protein)(-1)), cellobiose (1.43 IU(mg protein)(-1)) and glucose (no activity). The xylanase was thermolabile with a half-life of 30 min at 40 degrees C and 8 min at 50 degrees C but stable for over 2 h at 20 degrees C. The crude enzyme released reducing sugars (1.25 g l(-1)) from finger millet flour at 20 degrees C, while commercial food-grade xylanases showed no hydrolysis at this temperature. This is the first report of a Clostridium strain growing at 20 degrees C and producing an array of xylanolytic and cellulolytic enzymes, possessing low temperature optima of 20 degrees C, which may facilitate degradation of plant fibre under low-temperature conditions.  相似文献   

16.
A process has been developed for the bulk purification of cellulase-free beta-1,4-D-xylanase from the fungus Trichoderma harzianum E58. The process involved the primary step of ultrafiltering the culture filtrate via a 10,000-molecular-weight cut-off membrane to separate the cellulase (retentate) and xylanase (permeate) fractions. The cellulase component was concentrated by 40- to 60-fold, resulting in an enzyme complex that could effectively hydrolyze high concentrations of cellulose and xylan to glucose and xylose. The xylanase was concentrated and solvent exchanged by adsorption to a cationic exchanger, SP-ZetaPrep 250, followed by elution with a pH change in the buffer to give a purified and concentrated xylanase complex dissolved in a low-salt buffer. The resultant xylanase system was pure by the criteria of sodium dodecyl sulfate polyacrylamide electrophoresis, had a very high specific activity of 2400 IU/mg protein, was virtually free of filter paper activity, and had a ratio of contaminating filter paper activity of 2 x 10(-6) (0.009% endoglucanase activity). Approximately 3.3 g protein, which contained in excess of 7 x 10(6) IU xylanase activity, was obtained from 17 L original culture filtrate. The process scheme was designed to facilitate scale-up to an industrial level of production.  相似文献   

17.
Summary A novel yeast strain, NCIM 3574, isolated from a decaying wood produced up to 570 IU ml–1 of xylanolytic enzymes when grown on medium containing 4% xylan. The yeast strain also produced xylanase activity (40–50 IU ml–1) in the presence of soluble carbon sources like xylose or arabinose. No xylanase activity was detected when the organism was grown on glucose. The crude xylanase preparation showed no activity towards cellulolytic substrates but low levels of -xylosidase (0.1 IU ml–1) and -l-arabinofuranosidase (0.05 IU ml–1) were detected. The temperature and pH optima for the crude xylanase preparation were 55°C and 4.5 respectively. The crude xylanase produced mainly xylose from xylan within 5 min. Prolonged hydrolysis of xylan produced xylobiose and arabinose, in addition to xylose, as the end products. The presence of arabinose as one of the end products in xylan hydrolysate could be due to the low levels of arabinofuranosidase enzyme present in the crude fermentation broth.  相似文献   

18.
The suitability of L-arabinose-rich plant hydrolysates as carbon sources and inducers of xylanase production in Trichoderma reesei Rut C-30 was tested. Significantly higher xylanase activities were obtained in cultures on oat husk and sugar beet pulp hydrolysates than on lactose. In batch culture with oat husk hydrolysate and lactose, the xylanase activity was about 9 times higher ( approximately 510 IU/ml) than in lactose ( approximately 60 IU/ml). Even higher xylanase activity ( approximately 630 IU/ml) was obtained when the batch cultivations were done on sugar beet pulp hydrolysate and lactose. In a fed-batch culture using oat husk hydrolysate-lactose the xylanase activity was as high as 1350 IU/ml in 4 days. The cellulase production clearly decreased when T. reesei was cultured on both hydrolysates compared to the cultivation on lactose. Moreover, the relative amounts of the xylanases I-III were similar regardless the used carbon source.  相似文献   

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