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1.
里氏木霉与黑曲霉混合发酵产纤维素酶及其水解特性   总被引:2,自引:0,他引:2  
研究了利用里氏木霉和黑曲霉混合培养产纤维素酶,以黑曲霉孢子悬浮液的不同活化浓度及不同的活化时间来寻找2个菌种发挥最大协同作用的结合点以及所产纤维素酶的水解特性。以里氏木霉单一培养和黑曲霉单一培养为参照进行对比研究。底物为农林废弃物之一的玉米秸秆,经过蒸气爆破预处理后,用作产酶C源。结果表明:黑曲霉孢子悬浮液活化浓度为10个/mL,活化时间为12 h时,滤纸酶比酶活最高,达3.32 U/mL,高于里氏木霉单一培养的2.25 U/mL,β-葡萄糖苷酶比酶活达1.32 U/mL,高于里氏木霉单一培养的0.57 U/mL。为进一步验证混合菌产纤维素酶的水解效果,利用混合菌产纤维酶的酶液及里氏木霉产纤维素酶的酶液进行酶水解实验,当酶用量为20 U/g绝干纤维素,底物质量浓度为100 g/L条件下水解48 h,混合菌所产酶液酶解得率达70.00%,高于里氏木霉所产酶液的酶解得率63.05%。实验表明里氏木霉与黑曲霉混合培养产酶是可行的,并优于单一菌种培养。  相似文献   

2.
以里氏木霉及米根霉单菌固态发酵为对象,考察不同混合发酵形式对里氏木霉与米根霉混合固态发酵产纤维素酶的影响。结果表明:同时接种里氏木霉与米根霉,试验考察的两菌种接种量比1∶1(以孢子个数计)及5∶1条件下,两菌未产生明显协同产酶作用。米根霉延时(24 h)接种且菌种量比5∶1以及米根霉延时(48 h)接种且菌种量比1∶1,2种发酵形式产酶情况类似,滤纸酶活(FPA)及羧甲基纤维素酶(CMCase)酶活相对米根霉单菌发酵有所提高,而β-葡萄糖苷酶(β-GA)酶活相对里氏木霉单菌固态发酵结束时分别增加4.66及4.40倍,可以发现两菌产生一定协同作用。在米根霉延时(48 h)接种且菌种量比5∶1的发酵形式下,FPA及CMCase在发酵第7天酶活分别达到44.04 IU/g、627.14 U/g(以1 g干曲计),分别是里氏木霉固态单菌发酵产酶达到稳定期时酶活的1.36和1.63倍,两菌产生了有效的协同作用。  相似文献   

3.
里氏木霉和鸡腿菇利用秸秆共发酵产木质降解酶   总被引:2,自引:0,他引:2  
为了更好地利用农业废弃物,提高其综合利用率,减少传统化学方法及秸秆焚烧过程造成的环境污染,实验对鸡腿菇、黑曲霉和里氏木霉3株产木质纤维素降解酶系的菌株进行混合平板产酶筛选,结果显示鸡腿菇和里氏木霉平板培养相容性良好,且产酶量高。在相容性实验的基础上,对鸡腿菇和里氏木霉的最优产酶条件进行了研究。在最优条件下:鸡腿菇和里氏木霉接种比例按5:2,接种时间间隔为12h,26oC、150r/min下,发酵3d产漆酶活力达3267.2U/mL,比单独发酵提高106%。  相似文献   

4.
5.
将木质纤维素转化为可发酵糖用于生产生物燃料以及生物基化学品是实现碳中和的有效途径之一.木质纤维素降解酶在这一过程中发挥着重要作用.里氏木霉是应用最为广泛的纤维素酶、半纤维素酶工业生产菌株.长期以来,里氏木霉一直被认为是红褐肉座菌的无性型,只能进行无性繁殖,菌种改良以经典诱变、基因育种等为主.直到近些年才证实里氏木霉可以...  相似文献   

6.
野生型康氏木霉854-B2经多种理化诱变因子及空间微重力辐射等因素的处理,选育到1株高活力纤维素酶变异株B-7。其固体培养物的纤维素酶,以滤纸为底物酶活力为34μ/g,以羧甲基纤维素(CMC)为底物酶力为1472μ/g。与野生菌854-B2相比,产酶活力水平分别提高5倍和7倍多。酶在滤纸上作用的最适条件为pH4.5-5.0,温度55-60℃;25℃,保温24h,pH稳定范围为pH4.0-6.5;7  相似文献   

7.
对黑曲霉NL02与里氏木霉RUT-C30固态混合发酵产β-葡萄糖苷酶的发酵培养基进行优化,研究培养基含水率、C源、N源、接种量、温度和2种菌种不同延长接种时间与接种比例对β-葡萄糖苷酶活力的影响。研究表明:麸皮17.5 g、玉米芯7.5 g、(NH4)2SO4 0.40 g、尿素0.37 g、黑曲霉孢子接入量为107个接种到250 mL三角瓶中,温度30 ℃、摇床转速100 r/min时,里氏木霉以105个孢子与黑曲霉同时接入,每克干曲所得β-葡萄糖苷酶的活力为132.45 IU,较黑曲霉单独培养时的104.35 IU提高了26.94%。  相似文献   

8.
6—BA诱导的带正电荷的葡萄叶过氧化物酶   总被引:7,自引:0,他引:7  
河岸葡萄叶的带正电荷过氧化物酶可受6-BA诱导,但盐,H2O2或Fe^2++H2O2均使叶片COPD活性明显下降,而高浓度的无机盐明显刺激纯COPD活性增加。在以愈创木酚为底物时CPOD最适pH为4.60-5.75,对H2O2的表面Vmax和Km值分别为110U/mg蛋白和1.15mmol/L。  相似文献   

9.
[背景]里氏木霉(Trichoderma reesei)是木霉属中产纤维素酶最具代表性的真菌之一,表观遗传调控是不涉及DNA序列变化的可遗传变化,组蛋白去乙酰化是其中一种。组蛋白去乙酰化酶(histone deacetylase,HDAC)负责脱乙酰化,敲除去乙酰化酶基因可引起菌株孢子、菌丝及纤维素酶活性等的一系列改变。[目的]通过敲除里氏木霉组蛋白去乙酰化酶基因(histone deacetylase,hdac)建立了里氏木霉hdac缺失突变株(T.reesei△hdac),以研究对纤维素酶基因表达的调控作用。[方法]利用Split-Maker技术构建了组蛋白去乙酰化酶基因敲除表达盒,并转化了里氏木霉T.reesei QM9414。经PCR及Southern blotting验证正确后,对突变体T.reesei△hdac连续7 d检测滤纸酶活(filter paper activity,AFP)、羧甲基纤维素钠酶活(carboxymethyl cellulase activity,CMCA),利用RT-qPCR检测纤维素酶及其相关基因cbh1、egl1和xyr1的表达。[结果]突变体T.reesei△hdac两种酶活力均显著高于出发菌株,分别高出8.00、30.00 IU/mL。突变体T.reesei△hdac纤维素酶及其相关基因cbh1、egl1和xyr1的转录水平分别为出发菌株T.reesei QM9414的6.50、6.01和4.51倍。[结论]里氏木霉中纤维素酶的基因表达明显受到组蛋白去乙酰化酶基因(hdac)的调控,这为研究里氏木霉表观遗传调控对纤维素酶的影响提供了新的证据。  相似文献   

10.
野生型康氏木霉(Trichodermakoningi)854-B2经多种理化诱变因子及空间微重力辐射等因素的处理,选育到1株高活力纤维素酶变异株B-7。其固体培养物的纤维素酶,以滤纸为底物酶活力为34μ/g,以羧甲基纤维素(CMC)为底物酶力为1472μ/g。与野生菌854-B2相比,产酶活力水平分别提高5倍和7倍多。酶在滤纸上作用的最适条件为pH4.5—5.0,温度55—60°C;25°C,保温24h,pH稳定范围为pH4.0—6.5;70°C保温30分钟,剩余酶活力34.4%。  相似文献   

11.
Optimization of cellulase production by Penicillium occitanis   总被引:1,自引:0,他引:1  
The mutant Pol6 of Penicillium occitanis is an interesting strain for producing cellulases and hemicellulases. The nitrogen source and substrate that regulate cellulase production were evaluated in shake-flask and fermentor (batch and fed-batch) culture. The nature of the nitrogen source and the C/N ratio markedly affected cellulase production by P. occitanis. When nitrate was used in Mandels and Weber's basal growth medium with a C/N ratio below 20.2, it resulted in more cellulase production than from urea or ammonium sulphate. Crude substrates such as wheat bran and wheat flour residues, used in combination with a local cellulose esparto grass paper pulp as an alternative nitrogen source and cellulose substrates, also gave high cellulase yields. Greatest cellulase yields and productivity were obtained by fed-batch cultivation [23 filter-paper activity units (FPU)/ml and 168 FPUI–1h–1].  相似文献   

12.
青霉的纤维素酶抗降解物阻遏突变株的选育   总被引:17,自引:0,他引:17  
从土样中筛出一株生长快,产纤维素酶较高的斜卧青霉(Penicillium decumbens114-2)。能在全纤维素(hlocellulose)双层平板上形成清晰的透明圈。摇瓶培养的滤纸酶活可达8.8mg 葡萄糖/ml.h。 114-2菌株(其纤维素酶合成可为葡萄糖所阻遏)经UV和NG诱变处理后,在含葡萄糖的全纤维素平板上筛选到多株仍能形成明显透明圈的突变株。其中JN15和JU1在含葡萄糖的全纤维素液体培养基中,在残余葡萄糖浓度为 1%左右时,滤纸酶活可分别达到7.3 和13.9mg葡萄糖ml·h。这是出发株114-2和纤维素酶高产菌株木霉EA_3-867和QM9414所不能的。在不加阻遏剂的对比试验中,两个突变株的纤维素酶产量都比较高。其中,JU1的滤纸、CMC和棉花酶活分别达到33mg葡萄糖/ml·h,234mg葡萄糖/ml·h和86mg葡萄糖/ml·24h。  相似文献   

13.
Production of cellulase by Trichoderma reesei from dairy manure   总被引:6,自引:0,他引:6  
Cellulase production by the fungi Trichoderma reesei was studied using dairy manure as a substrate. Data showed that T. reesei RUT-C30 had higher cellulase production than T. reesei QM 9414 and that a homogenized manure, treated by a blender to reduce fiber size, led to higher cellulase production. The cellulase production was further optimized by growing T. reesei RUT-C30 on homogenized manure. The effects of manure concentration, pH, and temperature on cellulase production were investigated with optimal parameter values determined to be 10 g/l manure (dry basis), 25.5 degrees C, and pH 5.7, respectively. Elimination of CaCl2, MgSO4, nitrogen sources (NH4+ and urea) and trace elements (Fe2+, Zn2+, Co2+ and Mn2+) from the original salt solution had no negative influence on the cellulase production, while phosphate elimination did reduce cellulase production. Based on above results, the final medium composition was simplified with manure additives being KH2PO4, tween-80 and CoCl2 only. Using this medium composition and a reaction time of 6-8 days, a maximum cellulase production activity of 1.74 IU/ml of filter paper activity, 12.22 IU/ml of CMCase activity, and 0.0978 IU/ml of beta-glucosidase was obtained. This filter paper activity is the highest ever reported in cellulase production from agricultural wastes.  相似文献   

14.
This study describes the isolation and characterization of a novel fungus, Aspergillus flavus BS1 and its cellulolytic activities with special emphasis on endoglucanase production. Preliminary screening studies showed that A. flavus BS1 was a potent strain for the production of cellulase. To study the cellulolytic activities in detail by submerged fermentation (SmF), productions of endoglucanase, exoglucanase, and β-glucosidase were estimated from the basal salt medium (BSM) supplemented with 1 % carboxy methyl cellulose (CMC). CMC medium supported the maximum yield of endoglucanase (2,793 U/ml) on day 5 of incubation at 28 °C and 150 rpm, which was higher than that obtained with naturally available supplements (flour) from banana, tapioca, potato, or banana peel. During cellulase production by solid-state fermentation, 10 % (w/w) tapioca flour in sawdust (teak wood) moisturized with BSM (1:2, w/v) supported maximum cellulase yield (5,408 U/g dry substrate) on day 3 at 28 °C, which was 2-fold higher than that obtained during SmF. The active cellulase was qualitatively estimated by polyacrylamide gel electrophoresis (PAGE). Native-PAGE (0.25 % CMC impregnated on the 10 % gel) activity staining with congo-red showed a clear zone for CMCase activity, whereas SDS-PAGE showed a distinct band. In conclusion, this study showed that A. flavus strain BS1 is a potent strain for the production of cellulase on lignocellulosic media, the hot enzyme for bioethanol production from the lignocellulosic biomass by SSF.  相似文献   

15.
The effect of different levels of dissolved oxygen tension (d.o.t) at a fixed agitation speed on the production of three major components of extracellular (free) cellulase (FPase, endoglucanase and -glucosidase) by Chaetomium globosum strain 414 was investigated. Oil palm empty fruit bunch (OPEFB) fibre (10g/l) and peptone (6g/l) were used as carbon and nitrogen sources for cellulase production, respectively. Growth of C. globosum and cellulase complex production were modelled using models based on logistic and Luedeking–Piret equations. The calculated data fitted well to the experimental data, indicating that the models were suitable for describing and verifying growth and cellulase complex production at different d.o.t levels. Cell growth and cellulase production were approximately two-fold higher in the stirred tank fermenter as compared with shake flask culture. At d.o.t of between 30–50% saturation, cell growth and cellulase production were higher than those under oxygen-limited conditions (5% saturation) and at high d.o.t (80% saturation). However, the highest activities of FPase (2.5U/ml), CMCase (59.5U/ml) and -glucosidase (12.8U/ml) were obtained at a d.o.t of 50% saturation and these gave the overall productivities of 20.8, 495 and 53.3U/l.h, respectively.  相似文献   

16.
Low exoglucanase and endoglucanase activities of marine Aspergillus niger cellulase decreased the hydrolyzing ability of cellulase. To increase the activity of halostable cellulase obtained from a marine A. niger, a cellulase with endoglucanase and exoglucanase activity was efficiently expressed by constructing a vector with promoter glaA. Exoglucanase and endoglucanase activities increased from 0.21 and 4.51 U/ml of the original strain to 0.89 U/ml and 15.12 U/ml of the transformant, respectively. Filter paper activity (FPA) increased by 7.1 folds from 0.63 to 4.47 U/ml. The release of glucose by hydrolysis of wheat straw with cellulase from the transformant was 1.37 folds higher than that with cellulase from the original strain under high salinity condition. Cellulase with endoglucanase and exoglucanase activities could be well expressed in marine A. niger. The cellulase from the transformant not only showed higher activity, but also retained halostability. An appreciate proportion of β-glucosidase, exoglucanase, endgolucanasein cellulase was important for hydrolyzing cellulose.  相似文献   

17.
从万古霉素抗性突变体中筛选碱性纤维素酶高产菌株   总被引:2,自引:0,他引:2  
以芽胞杆菌 X—6 为出发菌株,经甲基磺酸乙酯( E M S) 和紫外线( U V) 复合诱变,选育万古霉素抗性突变体。研究结果表明,抗药性突变株碱性羧甲基纤维素酶( C M Case) 产量提高的正变率和正变幅度明显高于非抗药性菌株。从抗性突变株中获得 E V23 菌株,其产酶活力比出发株 X—6 提高320 % ,酶活力达353u/ ml。  相似文献   

18.
Novel mutation method for increased cellulase production   总被引:6,自引:0,他引:6  
AIM: Isolation of cellulase producing fungi and increasing cellulase production using novel mutations. METHODS AND RESULTS: Cellulase-producing fungi were isolated from different soil samples using enriched Mandels cellulose agar, which is a selective media and seven different fungi were selected in the screening programme. These organisms were tested for cellulase production and two potent strains were identified. Two methods of mutations for strain improvement were employed to these strains. (1) Germinating fungal spore suspension was treated with 0.1 and 0.2 mg ml(-1) of 1-methyl-3-nitro-1-nitrosoguanidine (MNNG), ethidium bromide (EtBr) and u.v. for 30 min and 1 h duration and plated on selective media with and with out amphotericin B. (2) Mutagens (EtBr and MNNG) were incorporated in the selective media in sublethal concentration (5 microg ml(-1)) along with antifungal antibiotic (amphotericin B 2 microg ml(-1)). Second method yielded maximum cellulase-producing mutants, which are also stable for cellulase production and are more potent than the mutants obtained by the first method. CONCLUSIONS: Mutations using sublethal concentrations of mutagen for a prolonged period of growth has yielded mutants, which can produce more cellulase. SIGNIFICANCE AND IMPACT OF THE STUDY: This new method could be applied to obtain potent fungal mutants for more enzymes production.  相似文献   

19.
In the present study, two cellulose-degrading bacteria (CDB-5 and CDB-12) were isolated from mangrove soils of Mahanadi river delta, based on halo zone formation in Congo red agar medium and evaluation for cellulase production in CMC broth medium. Based on morphological, biochemical and 16S rRNA gene sequencing, the two strains, CDB-5 and CDB-12, were identified as Brucella sp. and Bacillus licheniformis, respectively. The gene bank accession number of the strains CDB-5 and CDB-12 are KR632646 and KR632645, respectively. The strain Brucella sp. and B. licheniformis showed an enzyme activity of 96.37?U/ml and 98.25?U/ml, respectively, after 72?h of incubation period. Enzyme production was optimized under different growth conditions such as pH, temperature, agitation rate, carbon source, sodium chloride (NaCl), and nitrogen sources. Maximum cellulase production by both the strains was obtained in the same parameter condition such as pH (7.0), rpm (150), and NaCl (2%, w/v) which varies for other parameters. The strain, CDB-5, produced maximum cellulase at 35?°C temperature, maltose as a carbon source, and yeast extract as a nitrogen source where as the strain CDB-12 produces maximum cellulase at 45?°C temperature, carboxyl methyl cellulose (CMC) as carbon source and trypton as a nitrogen source. The bacterial crude enzyme was purified by ammonium sulfate precipitation followed by overnight dialysis. SDS-PAGE analysis of the partially purified cellulase enzyme exhibited band sizes of approximately 55 and 72?kDa.  相似文献   

20.
Maximum cellulase production was sought by comparing the activities of the cellulases produced by differentTrichoderma reesei strains andAspergillus niger. Trichoderma reesei Rut-C30 showed higher cellulase activity than otherTrichoderma reesei strains andAspergillus niger that was isolated from soil. By optimizing the cultivation condition during shake flask culture, higher cellulase production could be achieved. The FP (filter paper) activity of 3.7 U/ml and CMCase (Carboxymethylcellulase) activity of 60 U/ml were obtained from shake flask culture. When it was grown in 2.5L fermentor, where pH and DO levels are controlled, the Enzyme activities were 133.35 U/ml (CMCase) and 11.67 U./ml (FP), respectively. Ammonium sulfate precipitation method was used to recover enzymes from fermentation broth. The dried cellulase powder showed 3074.9 U/g of CMCase activity and 166.7 U/g of FP activity with 83.5% CMCase recovery.  相似文献   

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