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1.
植酸酶的纯化及其酶学性质初步研究   总被引:1,自引:0,他引:1  
从绿色木霉LH374固态发酵产物中提取植酸酶。粗酶液经硫酸铵沉淀、凝胶过滤、离子交换层析纯化后,提纯倍数可达13.3,回收率为27.1%。酶学性质研究表明,植酸酶最适作用温度为55℃、最适作用pH为6.0,米氏常数Km为0.15mmol/L。  相似文献   

2.
对绿色木霉接种到啤酒糟固态发酵产纤维素酶的培养基和培养条件进行优化,考察发酵物料起始含水量、发酵时间、起始pH值等发酵条件,以及啤酒糟培养基中添加麸皮、氮源种类对产酶的影响。结果表明,以啤酒糟为发酵基质接种绿色木霉生产纤维素酶是可行的。经单因素和正交试验获得最适固态发酵的培养条件为:起始pH 5~6,培养温度28~30℃,发酵4 d;最佳发酵培养基组合为:麸皮比例30%,培养基起始含水量50%,(NH4)2SO4添加量为2.0%~2.5%。  相似文献   

3.
产植酸酶菌株的分离筛选研究   总被引:3,自引:0,他引:3  
研究了产植酸酶菌株分离筛选的方法 ,筛选得到分别适宜液态发酵和固态发酵的酶活力较高的黑曲霉XH和黑曲霉PA两菌株。在液态发酵KH2 PO4 对植酸酶产生有促进作用 ,其最佳用量为 8mg %;在固态发酵KH2 PO4 的添加对植酸酶的产生无明显促进作用。 2菌株所产植酸酶具有相似的酶学性质 ,最适作用温度为 5 5℃ ,当底物 pH为 3~ 5具有较高的酶活力。  相似文献   

4.
对现有的148株木霉菌株在含植酸钙的琼脂培养基上进行了产植酸酶能力鉴定,结果表明所有菌株均产生了水解透明图,说明所有测试的木霉菌株都具有植酸酶活性,植酸酶编码基因在木霉群体中具有广泛性.选取14个种类的21株木霉,采用植酸酶保守序列设计简并引物P8205、P500-2扩增获得其中11种17株木霉植酸酶基因片段,进行了序列测定;利用ITS4、ITS5引物扩增17个木霉菌株的ITS序列并测序.分别基于植酸酶基因片段序列以及ITS序列信息,通过邻接法(N-J法)构建系统发育树,结果表明植酸酶基因序列具有多样性的特点,而基于植酸酶基因序列与基于ITS序列的分类结果基本相同,不同的是长枝木霉(Trichoderma longibrachiatum)植酸酶基因序列与哈茨木霉(Trichoderma harzianum)被分到同一分支当中,与ITS序列的进化关系相差较大,表明有可以作为木霉分类的一种新的标记的潜力,并携带部分与ITS序列不同的系统发育相关信息.  相似文献   

5.
肖艳  陈献忠  沈微  杨海泉  樊游 《生物工程学报》2015,31(12):1700-1710
以淀粉为原料的同步糖化发酵是目前乙醇生产的主要途径之一。然而原料中含有的植酸不仅影响酒精发酵效率,而且也会导致环境中难以被植物吸收的磷含量的增加,加剧环境污染。将来源于大肠杆菌的植酸酶基因与酵母编码α-凝集素C端编码序列连接并置于α-因子分泌信号肽下游,构建植酸酶表面展示表达重组载体pMGK-AG-phy并转化工业酿酒酵母,成功获得了在细胞表面锚定表达植酸酶的重组菌PHY。重组酵母的植酸酶表达水平达到6.4 U/g(菌体湿重),其最适温度为55℃,最适pH 4.0,在pH 3.5–4.5范围内具有较高的活性。以玉米粉为原料的同步糖化发酵实验表明,重组酵母PHY的生长速度高于出发菌株,同时酒精产量相较于出发菌株提高了3.7%。更为重要的是发酵后酒糟中植酸磷含量与对照相比降低了91%。构建的表面展示表达植酸酶的重组工业酿酒酵母能够有效降低植酸含量,提高了酒糟的利用价值,减少磷排放,对燃料酒精的环境友好生产具有重要的借鉴意义。  相似文献   

6.
植酸酶固体发酵条件的研究   总被引:5,自引:0,他引:5  
黄遵锡  张克昌 《菌物系统》2000,19(1):102-106
黑曲霉G2.1.1.1.4菌株在产生植酸酶时受无机磷的反馈阻遏,并且植酸酶的产生与淀粉酶的产生存在相互抑制。对植酸菌固体发酵进行调控和通过响应面分析优化发酵条件,提高了植酸酶产量。最适发酵条件下,植酸酶(PhytA)的产量可达62.1u/g.干基。  相似文献   

7.
研究了碳源和氮源、起始pH、接种量及温度等条件对一野生型木霉Trichoderma sp.T6菌株固态发酵产木聚糖酶的影响。在28℃培养4d后,酶活力可达1918IU/g干培养物。酶的最适反应温度为50℃,最适反应pH4.5。不同温度保温1h后,测定酶的半失活温度为47.7℃,酶的pH稳定性也进行了研究。  相似文献   

8.
目的:提高低温植酸酶产量.方法:通过单因素和正交实验研究温度、pH、发酵时间、接种量、装液量对菌株Y1的发酵影响.结果:最适发酵条件为温度15℃,pH 5.0,发酵时间24h,接种量10%,装液量200ml/500ml.其最终酶活力达到了162.39U/mL.结论:经单因素和正交实验研究后其低温植酸酶酶活力比优化前提高了29.43%.  相似文献   

9.
木霉菌株T6木聚糖酶固态发酵条件和酶学性质研究   总被引:1,自引:1,他引:1  
吴克  蔡敬民  刘斌  张洁  潘仁瑞 《菌物学报》2001,20(2):191-195
研究了碳源和氮源、起始pH、接种量及温度等条件对一野生型木霉Trichoderma sp.T6菌株固态发酵产木聚糖酶的影响。在28℃培养4d后,酶活力可达1918IU/g干培养物。酶的最适反应温度为50℃,最适反应pH4.5。不同温度保温1h后,测定酶的半失活温度为47.7℃,酶的pH稳定性也进行了研究。  相似文献   

10.
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   

11.
植酸酶菌种筛选方法的研究   总被引:1,自引:0,他引:1  
通过微板培养法对植酸酶产生菌菌种筛选方法进行了研究,建立了一种快速、有效的高通量植酸酶菌种筛选方法。利用该方法结合菌种诱变技术已选育出植酸酶酶活高达297u/mL的A,niger 496-1菌株。  相似文献   

12.
Culture conditions for a new phytase-producing fungus   总被引:5,自引:0,他引:5  
Extracellular phytase produced by Aspergillus sp. 5990 showed a 5-fold higher activity in liquid culture when compared with cultures of Aspergillus ficuum NRRL 3135. The optimum fermentation conditions were determined to be 35 °C, neutral pH, and 4 days incubation. The phytase had a higher optimum temperature for its activity than the commercial enzyme, Natuphos, from Aspergillus ficuum NRRL 3135.  相似文献   

13.
A bioassay was developed to screen extracellular phytase-producing microorganisms. Washed cells of Corynebacterium glutamicum, which cannot use sodium phytate as source of phosphate, were mixed with phytate-minimal agar as indicator strain. By this method, we could easily obtain phytase-producing strains from soil samples and 71 % of the isolates had phytase activities above 0.01 U/ml when they were grown in modified phytase screening medium. © Rapid Science Ltd. 1998  相似文献   

14.
黑曲霉G2.1.1.1.4菌株在产生植酸酶时受无机磷的反馈阻遏,并且植酸酶的产生与淀粉酶的产生存在相互抑制。对植酸酶固体发酵进行调控和通过响应面分析优化发酵条件,提高了植酸酶产量。最适发酵条件下,植酸酶(PhytA)的产量可达62.1u/g.干基。  相似文献   

15.
Rani R  Ghosh S 《Bioresource technology》2011,102(22):10641-10649
Present study introduces linseed oil cake as a novel substrate for phytase production by Rhizopus oryzae. Statistical approach was employed to optimize various medium components under solid state fermentation (SSF). An overall 8.41-fold increase in phytase production was achieved at the optimum concentrations (w/w, mannitol, 2.05%; ammonium sulfate, 2.84% and phosphate, 0.38%). Further enhancement by 59% was observed due to a novel strain improvement approach. Purified phytase (~34 kDa) showed optimal temperature of 45 °C, dual pH optima at 1.5 and 5.5 and possesses high catalytic efficiency (2.38×10(6) M(-1) s(-1)). Characterization study demonstrates the phytase as highly thermostable and resistant to proteolysis, heavy metal ions, etc. Furthermore, an improved HPLC method was introduced to confirm the ability of phytase to degrade phytic acid completely and was found to be an efficient method.  相似文献   

16.
植酸酶产生菌黑曲霉N14的诱变选育及其基因分析   总被引:1,自引:0,他引:1  
以植酸酶产生菌黑曲霉03214为出发菌株,经紫外线和亚硝基胍诱变,获得了产酶活性较出发菌株提高了22.3%,达422IU/ml发酵液的突变菌株黑曲霉N14,其最适pH值为2.5,最适温度为50℃。通过对黑曲霉N14植酸酶phyA基因进行PCR扩增,获得了一条长约1.5kb的特异性产物。以pMD18-T为载体,构建了含有目的基因片段的重组质粒。DNA序列测定表明,目的基因片段含有植酸酶phyA基因的完整序列(GenBank Accession:AY426977),phyA基因全长1506bp,其中包含一段长102bp的内含子,编码467个氨基酸,有10个潜在的糖基化位点,5’端有一编码19个氨基酸的信号肽序列。实验结果为植酸酶基因工程菌的构建奠定了基础。  相似文献   

17.
Summary During the growth of A. carbonarius, the rates of biomass growth, phytase production and phytic acid content reduction in canola meal media during solid state fermentation were higher in the presence of Na-oleate or Tween-80 than in the control medium which was not supplemented with these surfactants. Addition of Triton X-100 had a negative effect on the studied processes.The optimum concentration of Na-oleate in solid state culture media was 1%.  相似文献   

18.
The culture conditions for extracellular production of phytase by two strains of Bacillus licheniformis (LF1 and LH1) isolated from the proximal and distal intestine of rohu (Labeo rohita) were optimized to obtain maximum level of phytase. Both the strains were cultured TSA broth for 24 h at 37 ± 2 °C, when average viable count of 9.75 × 10cells ml?1 culture broth was obtained. This was used as the inoculum for the production medium. Sesame (Sesamum indicum) oilseed meal was used as the source of phytic acid (substrate). The effects of moisture, pH, temperature, fermentation period, inoculum size, different nitrogen sources, vitamins and surfactants on phytase production by these two strains were evaluated. Phytase yield was highest (1.87 U in LF1 and 1.57 U in LH1) in solid-state fermentation. Enzyme production in both the isolates increased in an optimum pH range of 5.5–6.5. Minimum phytase production was observed at 50 °C, while maximum production was obtained at 40 °C. To standardize the fermentation period for phytase production, production rate was measured at 12-h intervals up to 120 h. Enzyme production increased for 72 h of fermentation in both strains, and decreased thereafter. The enzyme production increased with increased inoculum size up to 3.0 percentage points for the strain LF1 and up to 2.0 % for the strains LH1. Ammonium sulphate as the nitrogen source was most effective in LF1, while beef extract proved useful to maximize enzyme production by LH1.  相似文献   

19.
Cloned and expressed fungal phyA gene in alfalfa produces a stable phytase.   总被引:10,自引:0,他引:10  
The phyA gene from Aspergillus ficuum that codes for a 441-amino-acid full-length phosphomonoesterase (phytase) was cloned and expressed in Medicago sativa (alfalfa) leaves. The expressed enzyme from alfalfa leaves was purified to homogeneity and biochemically characterized, and its catalytic properties were elucidated. The expressed phytase in alfalfa leaves retained all the biochemical properties of the benchmark A. ficuum phytase. Although the characteristic bi-hump pH optima were retained in the cloned phytase, the optimal pH shifted downward from 5.5 to 5.0. Also, the recombinant phytase was inhibited by the pseudo-substrate myo-inositol hexasulfate and also by antibody raised against a 20-mer peptide belonging to fungal phytase. The expressed phytase in alfalfa could also be modified by phenylglyoxal. Taken together, the results indicate that fungal phytase when cloned and expressed in alfalfa leaves produces stable and catalytically active phytase while retaining all the properties of the benchmark phytase. This affirms our view that "molecular biofarming" could be an alternative means of producing stable hydrolytic enzymes such as phytase.  相似文献   

20.
The ability of eight strains of Aspergillus niger to produce citric acid by the solid surface method were found to correlate with their capabilities to synthesize intracellular enzymes which degrade phytates (phytase and acid phosphatase). Another high correlation was observed between phytase and acid phosphatase activities bound to the cell walls of mycelia.  相似文献   

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