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1.
利用黑曲霉固态发酵啤酒糟生产饲料复合酶的研究   总被引:2,自引:0,他引:2  
以啤酒糟为主要基质,利用黑曲霉固态发酵生产酸性蛋白酶、木聚糖酶和纤维素酶等多种饲料复合酶,研究了黑曲霉固态发酵培养基组成对复合酶酶活的影响,确定最优培养基配方为:啤酒糟75%,麸皮25%,硫酸铵1%,KH_2PO_4 0.2%,MnSO_4 0.1%、ZnSO_4 0.2%,料水比1:2。在适宜的发酵条件下,经30℃发酵5 d,烘干后得到的复合酶制剂中,具有多种酶活性(以干基计)。其中酸性蛋白酶活力3 800 U/g,木聚糖酶活力12 00 U/g和纤维素酶活力18 U/g。  相似文献   

2.
中性蛋白酶高产菌株的筛选及产酶酶系分析   总被引:4,自引:1,他引:3  
目的:满足水产中对中性蛋白酶的需求。方法:以实验室保藏的米曲霉ZW为出发菌株,经Co60定向诱变,通过透明圈法初筛、摇瓶发酵复筛,筛选中性蛋白酶活力高的菌株,并对其进行产酶酶系分析。结果:筛选到的米曲霉ZW-06产中性蛋白酶酶活可达15000U/g干曲,比诱变前酶活提高了74%,是目前国内报道的固体发酵产中性蛋白酶活力最高的菌株;经过10代传代之后,酶活力仍保持稳定。通过对米曲霉ZW-06进行产酶酶系分析,发现发酵产物中除了有较高的中性蛋白酶酶活,还有较高的木聚糖酶和酸性纤维素酶酶活,酶活分别达到49879U/g干曲和21099U/g干曲。结论:米曲霉ZW-06在饲料工业中有很大  相似文献   

3.
[目的]β-甘露聚糖酶和木聚糖酶都属于半纤维素酶,它们已经同时运用于工农业生产的许多领域.构建β-甘露聚糖酶和木聚糖酶共表达菌株并进行相关评价.[方法]通过设计一个共同的酶切位点,将菌株Bacillus subtilis BE-91中的β-甘露聚糖酶和木聚糖酶基因串联到表达载体pET28a(+)上,转化大肠杆菌构建了一株能够共表达β-甘露聚糖酶和木聚糖酶的菌株B.pET28a-man-xyl.[结果]菌株诱导21h后,发酵液中β-甘露聚糖酶和木聚糖酶的酶活分别为713.34 U/mL和1455.83 U/mL,是胞内酶活的11.8倍和2.53倍.[结论]SDS-PAGE分析、水解圈活性检测和胞外酶与胞内酶酶活检测表明:两个酶均以功能蛋白独立分泌到胞外.此外,与β-甘露聚糖酶和木聚糖酶单独酶解半纤维素相比,复合酶的酶解效果更好.菌株的成功构建为复合酶制剂(半纤维素酶制剂)的研究和生产奠定基础.  相似文献   

4.
【目的】β-甘露聚糖酶和木聚糖酶都属于半纤维素酶,它们已经同时运用于工农业生产的许多领域。构建β-甘露聚糖酶和木聚糖酶共表达菌株并进行相关评价。【方法】通过设计一个共同的酶切位点,将菌株Bacillus subtilis BE-91中的β-甘露聚糖酶和木聚糖酶基因串联到表达载体pET28a(+)上,转化大肠杆菌构建了一株能够共表达β-甘露聚糖酶和木聚糖酶的菌株B.pET28a-man-xyl。【结果】菌株诱导21 h后,发酵液中β-甘露聚糖酶和木聚糖酶的酶活分别为713.34 U/mL和1455.83 U/mL,是胞内酶活的11.8倍和2.53倍。【结论】SDS-PAGE分析、水解圈活性检测和胞外酶与胞内酶酶活检测表明:两个酶均以功能蛋白独立分泌到胞外。此外,与β-甘露聚糖酶和木聚糖酶单独酶解半纤维素相比,复合酶的酶解效果更好。菌株的成功构建为复合酶制剂(半纤维素酶制剂)的研究和生产奠定基础。  相似文献   

5.
木聚糖酶产生菌的筛选与酶学生化特性   总被引:1,自引:0,他引:1  
从自然界中筛选出可分泌高产木聚糖酶的黑曲霉,并对其产酶条件和酶学特性进行优化和分析.结果表明:该菌株培养48 h后,所产的木聚糖酶比酶活最高,达到1645.66 U/g;通过培养基的优化,其比酶活达到了2 698.28 U/g.最优培养基组成(质量分数):麸皮75.0%、玉米12.5%、豆粕12.5%.该酶的最适温度为37℃,最适pH为4.5.  相似文献   

6.
从产果胶酶的黑曲霉(Aspergillus niger)菌中分离出一支产酸性蛋白酶等多种水解酶的菌株No.3号。经铜蒸汽激光诱变,选育出一支高产复合酶的菌株FID-1,该菌在简单的固体发酵培养基上,28℃培养48hr,每克鲜曲的酶活力(U)为:酸性蛋白酶7500u、纤维素Cx 酶 9061U、纤维素CL酶3581U、果胶酶5471U、糖化酶5582U。酶活平均提高率为38.86%,最高幅度是78.6%。该菌经多次连续传代和贮存一年后,产酶性状稳定。该菌株是目前国内饲料用酶制帮生产株中,酶系最齐全,产酶水平位于前列的优良菌株。  相似文献   

7.
李永泉 《菌物学报》2001,20(2):196-200
采用激光对宇佐美曲霉棕色突变株W25进行诱变处理。选育到一株产酸性蛋白酶、纤维素CMC酶的复合酶生产菌L86,与出发菌株相比发酵单位酸性蛋白酶提高了42.7%、纤维素CMC酶提高了40.9%。所选育的L86经多次传代,遗传性状非常稳定。生物整理试验表明,L86复合酶比较适合用作羊毛织物生物整理用酶。  相似文献   

8.
N^+注入诱变选育改善豆粕饲用品质的菌种研究   总被引:1,自引:1,他引:0  
为了选育能够提高豆粕饲用品质的高效菌株,利用能降解胰蛋白酶抑制因子(trypsin inhibitors,TI)的枯草芽孢杆菌进行N+注入诱变,挑选碱性蛋白酶高产菌株,按出发菌的优化发酵条件与出发菌分别进行豆粕固态发酵,比较其TI兀降解效果,同时采用L16(45)正交设计对诱变菌株发酵豆粕的接种量、料水比、温度、发酵时间和通气量五个因素进行优化.在诱变能量为15 keY,剂量为1.5×1015ions/cm2时,筛到一株高产碱性蛋白酶的菌株KY-103,其酶活由诱变前21.39 U/mL提高到103.07 U/mL,胰蛋白酶抑制因子的降解率由19.58%提高到36.24%,小肽含量也由4.27%提高到7.89%.综合考虑的最佳发酵条件为15%的接种量,料水比1:1,通气量为60 g/500 mL,pH自然,在40℃下发酵96 h.此条件下胰蛋白酶抑制因子的降解率达43.92%,小肽含量达8.14%.结果提示,N+注入诱变可以获得改善豆粕饲用品质的高效枯草芽孢杆菌.  相似文献   

9.
嗜酸真菌Bisporasp.MEY-1可以分泌多种酸性糖苷水解酶。以不同的农业废弃物和副产品为碳源诱导该菌产酶以提高液体发酵效率并降低生产成本,结果表明0.5%的魔芋粉和9%的麦麸/玉米芯粉/豆粕混合物诱导效果最佳,木聚糖酶、葡聚糖酶、甘露聚糖酶、纤维素酶、淀粉酶、果胶酶、α-半乳糖苷酶、β-半乳糖苷酶、β-葡萄糖苷酶的产量分别为15、50、3.7、5.7、3.2、0.6、3.4、0.1、1.8U·ml-1。菌株MEY-1最适产酶pH为3,温度为30℃。与优良的商业糖苷水解酶生产菌株Trichoderma reesei RUT C30相比,菌株MEY-1分泌的糖苷水解酶偏酸,且在模拟胃肠道条件下保留了更多的木聚糖酶和葡聚糖酶活性,可降低大麦/豆粕饲料的黏度,在动物饲料工业中具有良好的应用前景。  相似文献   

10.
黑曲霉SL2-111复合酶固体发酵工艺研究   总被引:7,自引:0,他引:7  
以酸性蛋白酶酶活为响应值,采用单因素搜索和正交试验对黑曲霉(Aspergillus niger)SL2-111固体发酵工艺进行优化,结果表明最适培养基的组成为:新鲜麸皮8.25g,米糠4.5g、豆饼粉1.5g、(NH4)2SO40.3g、K2HPO40.66g、CaCl20.075g、水8.6mL,pH5.5,变温培养,前30h28℃、后30h为23℃,培养时间为60h。采用最适培养基和优化工艺,在250mL三角瓶中进行验证实验,酸性蛋白酶酶活可达12586U/g,果胶酶和纤维素酶分别为16490U/g、9822U/g。  相似文献   

11.
Optimization of enzyme production from Aspergillus niger ATCC 6275 under both submerged and solid-substrate cultivation was investigated. Results from submerged cultivation using palm oil mill effluent revealed that pretreatment of ground palm cake did not improve enzyme production. Addition of 0.60g NH4NO3/l generated maximum activity of xylanase and cellulase (CMCase). The optimum aeration rate was 1.2 v/v min. Under solid-substrate cultivation, the results indicated that heating and alkali treatment of the ground palm cake gave no further improvement in enzyme production. The optimal N-source was 2% urea. Optimal initial moisture contents for xylanase and CMCase activities were 60% and 50% respectively, with temperature optima of 30°C and 35°C, respectively. The optimal inoculum size was 1× 108 spores/g palm cake with an initial pH of 4.5–5.0. The maximum activities of xylanase (282.9U/g) and CMCase (23.8U/g) were obtained under the optimum conditions. Solid-substrate cultivation was a better method for the production of enzyme, particularly xylanase, from A. niger ATCC 6275. The application of these enzymes to decanter effluent showed the separation of oil and grease and suspended solids from the effluent. This is comparable to the result achieved from using the commercial xylase preparation Meicelase and superior to the effect of Sumyzyme.  相似文献   

12.
The high cost of cellulases remains the most significant barrier to the economical production of bio-ethanol from lignocellulosic biomass. The goal of this study was to optimize cellulases and xylanase production by a local indigenous fungus strain (Aspergillus niger DWA8) using agricultural waste (oil palm frond [OPF]) as substrate. The enzyme production profile before optimization indicated that the highest carboxymethyl cellulose (CMCase), filter paper (FPase), and xylanase activities of 1.06 U/g, 2.55 U/g, and 2.93 U/g were obtained on day 5, day 4, and day 5 of fermentation, respectively. Response surface methodology was used to study the effects of several key process parameters in order to optimize cellulase production. Of the five physical and two chemical factors tested, only moisture content of 75% (w/w) and substrate amount of 2.5 g had statistically significant effect on enzymes production. Under optimized conditions of 2.5 g of substrate, 75% (w/w) moisture content, initial medium of pH 4.5, 1 × 106 spores/mL of inoculum, and incubation at ambient temperature (±30°C) without additional carbon and nitrogen, the highest CMCase, FPase, and xylanase activities obtained were 2.38 U/g, 2.47 U/g, and 5.23 U/g, respectively. Thus, the optimization process increased CMCase and xylanase production by 124.5 and 78.5%, respectively. Moreover, A. niger DWA8 produced reasonably good cellulase and xylanase titers using OPF as the substrate when compared with previous researcher finding. The enzymes produced by this process could be further use to hydrolyze biomass to generate reducing sugars, which are the feedstock for bioethanol production.  相似文献   

13.
Direct utilization of untreated oil palm trunk (OPT) for cellulases and xylanase production by Aspergillus fumigatus SK1 was conducted under solid-state fermentation (SSF). The highest activities of extracellular cellulases and xylanases were produced at 80% moisture level, initial pH 5.0, 1 × 108 spore/g (inoculum) with 125 μm of OPT as sole carbon source. The cellulases and xylanase activities obtained were 54.27, 3.36, 4.54 and 418.70 U/g substrates for endoglucanase (CMCase), exoglucanase (FPase), β-glucosidase and xylanase respectively. The crude cellulases and xylanase required acidic condition to retain their optimum activities (pH 4.0). Crude cellulases and xylanase were more stable at 40 °C compared to their optimum activities conditions (60 °C for FPase and 70 °C for CMCase, β-glucosidase and xylanase). SDS-PAGE and zymogram analysis showed that Aspergillus fumigatus SK1 could secrete cellulases (endoglucanase, exoglucanase and β-glucosidase), xylanase and protease. Enzymatic degradation of alkaline treated OPT with concentrated crude cellulases and xylanases resulted in producing polyoses.  相似文献   

14.
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   

15.
木聚糖酶生产菌株的筛选及产酶条件的优化   总被引:6,自引:0,他引:6  
以甘蔗渣半纤维素为碳源,从垃圾场土壤中分离到6株分解半纤维素的菌株。通过固态发酵的木聚糖酶活力比较筛选到1株木聚糖酶活力较高的菌株。该菌株18S rDNA序列与曲霉(Aspergillus sp.)的同源性达97%,根据对菌株形态学分析和18S rDNA序列分析的结果,将该菌株鉴定为曲霉HQ3。HQ3的最佳产酶条件为:甘蔗渣:麸皮为7:3(W/W),固液比为1:4(W/W),尿素0.4 %,pH7.0,温度30℃,发酵产酶时间4 d。在最佳产酶条件下,其木聚糖酶活最高可达3421U/g干曲。  相似文献   

16.
The initial moisture content, cultivation time, inoculum size and concentration of basal medium were optimized in solid state fermentation (SSF) for the production of xylanase by an Aspergillus niger mutant using statistical experimental designs. The cultivation time and concentration of basal medium were the most important factors affecting xylanase activity. An inoculum size of 5 x 10(5) spores/g, initial moisture content of 65%, cultivation time of 5 days and 10 times concentration of basal medium containing 50 times concentration of corn steep liquor were optimum for xylanase production in SSF. Under the optimized conditions, the activity and productivity of xylanase obtained after 5 days of fermentation were 5,071 IU/g of rice straw and 14,790 IU l(-1) h(-1), respectively. The xylanase activity predicted by a polynomial model was 5,484 IU/g of rice straw.  相似文献   

17.
N+注入选育黑曲霉益生菌及其突变菌株产酶条件的研究   总被引:13,自引:0,他引:13  
以益生菌株黑曲霉AN01为材料,经N 多次诱变得突变益生菌株AN03。结果表明,出发益生菌株AN01酸性蛋白酶、纤维素酶和果胶酶的酶活分别由原来的71.6Ug、141.7Ug和264.8Ug相继提高到996.5Ug、940.4Ug和906.5Ug。突变益生菌株AN03经传5代培养,产酶特性稳定。试验还研究了变突变益生菌株AN03最佳产酶条件,培养基为每升含麸皮105g,玉米芯105g,豆粕105g,氯化铵16g,pH5.0。30℃培养4d。  相似文献   

18.
A growth medium was developed for maximal production in batch culture of extracellular xylanase and beta-xylosidase by Aspergillus awamori CMI 142717 and a mutant (AANTG 43) derived from the wild-type strain. The optimum pH for the production of xylanase and beta-xylosidase was 4.0. The best temperature of xylanase production was 30 degrees C; 35 degrees C was optimal for beta-xylosidase. Protease production was never completely suppressed under any of the conditions tested. However, protease titre was 3.5-fold less than the control in medium in which proteose peptone and yeast extract were omitted: the level of xylanase was not affected (8.6 U mL(-1)) but beta-xylosidase titre was increased 4.7-fold to 1.5 U mL(-1). When corn steep liquor was used as the sole nitrogen source, xylanse and beta-xylosidase titres were further increased by 1.5- and 1.9-fold, respectively. Of the carbon sources investigated, ball-milled oat straw or oat spelt xylan produced the highest titres of xylanse and beta-xylosidase. None of the soluble carbon sources investigated produced the high titres of xylanase or beta-xylosidase induced by either oat straw for xylanse and beta-xylosidase was 2% and the optimum spore inoculum was between 10(6) and 10(7) spores/mL(-1) final concentration. The level of xylanse activity obtained in the culture filtrates of the mutant was a remarkable 820 U mL(-1) when the reducing sugar released was measured by the dinitrosalicylic acid method. This enzyme titre would appear to be the highest reported so far. The xylanases system contained the correct balance of enzymes to effect extensive hydrolysis of oat spelt xylan. The protease titre was very low.  相似文献   

19.
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   

20.
Enzyme production by a new mesophilic Streptomyces isolate was investigated which grew optimally on 1% (w/v) xylan and 10% (w/v) wheat bran at pH 7 and 37 °C. Xylan induced only CMCase (0.29 U/ml) besides xylanase (22–35 U/ml, 40–49 U/mg protein). Wheat bran induced xylanase (105 U/ml, 17.5 U/mg protein), CMCase (0.74 U/ml), -xylosidase (0.009 U/ml), -glucosidase (0.026 U/ml), -L-arabinofuranosidase (0.049 U/ml), amylase (1.6 U/ml) and phytase (0.432 U/ml). The isolate was amenable to solid state cultivation and produced increased levels of xylanase (146 U/ml, 28 U/mg protein). The pH and temperature optima of the crude xylanase activity were 5.5 and 65 °C respectively. The pI was 6.0 as determined by PEG precipitation. The crude enzyme was applied in treatment of paper pulp and predigestion of poultry feed and was found to be effective in releasing sugars from both and soluble phosphorus from the latter.  相似文献   

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