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1.
以PBS降解菌HJ03(Alternariasp.)为出发菌株,通过紫外诱变,透明圈初筛及PBS薄膜复筛,获得一株降解能力增强且对温度和pH耐受力均得到提高的突变株HJ10。与出发菌株相比,HJ10在培养初期气生菌丝少,而培养7d时菌落致密且生长速度较快。经过连续继代培养7代后发现,突变株的降解活力保持了良好的遗传稳定性,其降解率较出发菌株提高百分比达14.4%以上;在最适降解温度范围内(25℃~30℃)和不适宜降解的温度条件下突变菌株Ⅻ10的降解率均高于出发菌株;各pH条件下,突变株对PBS的降解能力明显优于出发菌株,尤其在pH5.0时降解率提高了22.80%。  相似文献   

2.
以斜卧青霉(Penieillium decumbens)A10为出发菌株,经450Gy ^60Coγ-射线诱变处理,选育出一株具有较高纤维素酶活力且传代稳定的正突变株A50,发酵60h后,其CMC酶活和滤纸酶活分别为27.28IU/mL和1.98IU/mL,较出发菌株A10分别提高了33.2%和45.59%。对突变株A50的产酶组分进行研究,通过SDS—PAGE电泳分析,从蛋白质水平上证明突变株A50确实是A10在遗传物质上发生改变的菌株,其CMC酶活最适作用pH值为4.0,最适作用温度为60℃;而滤纸酶活的最适作用pH值为5.2,最适作用温度45℃,二者在一定范围内具有较高的稳定性。  相似文献   

3.
α-乙酰乳酸脱羧酶产生菌的微波诱变   总被引:1,自引:0,他引:1  
为获得α-乙酰乳酸脱羧酶的高产突变株,以产α-ALDC的枯草芽孢杆菌3226—5为出发菌株进行了诱变处理。经过微波(小火)物理诱变得到3株高产正突变株W181、W184、W195,经过多次传代实验,表明W181、W195是稳定的突变株。突变株W195的α-ALDC相对酶活(OD522)由出发菌株的0.35提高到0.617,提高了76%,突变株W181提高了66.9%。  相似文献   

4.
采用氮离子注入技术对耐热脂肪酶产生菌嗜热脂肪地芽孢杆菌(Geobacillus stearothermophilus)L4进行诱变,筛选获得酶活力有较大提高且传代稳定的正突变菌株L4-3;再对L4-3进行紫外线诱变,得到脂肪酶活力提高的正突变菌株L4-3-2,其脂肪酶活力达25.71U/mL,较原始菌株M提高511.9%。高产突变株L4-3-2所产脂肪酶的最适作用温度为50℃,70℃保温60min的剩余酶活为82%,最适作用pH为7.0~8.0,为一种耐热碱性脂肪酶。  相似文献   

5.
以拟康氏木霉(Trichoderma pseudokoningii)TH为出发菌株,经紫外诱变获得一抗高浓度葡萄糖阻遏突变株UV Ⅲ,其液体发酵最适产酶培养基为(W/V):豆皮粉3%,硝酸铵0.6%,磷酸二氢钠0.65%,硫酸镁0.25%,氯化钙0.15%,pH5.0;最佳发酵条件为:30℃,125r/min。发酵7d CMCase活力可达103.55IU/mL,滤纸酶活可达5.51IU/mL,β-葡萄糖苷酶活可达0.96IU/mL,分别比出发菌株TH提高了1.40、2.34、0.60倍。  相似文献   

6.
产果胶酶的菌种选育及发酵条件   总被引:8,自引:0,他引:8  
炭黑曲霉(Aspergillus carbonarius)AS 3.396经亚硝基胍和Co60r-射线诱变,获得一株高产果胶酶突变株G5512。该菌株的发酵滤液,以高酯果胶为底物的酶活力为860u/ml;以低酯果胶为底物的酶活力为1227u/ml。产酶活力水平约为原出发菌株的2—6倍。产酶最适培养条件为:起始pH4.0—4.5,30℃,72—90小时。酶作用最适条件为:高酯果胶为底物时,pH3.5,50℃;低酯果胶为底物时,pH4.5,50℃。pH稳定范围为2.0-6.5(高酯果胶)和4.5—5.0(低酯果胶)。酶在60℃保温15分钟,高酯果胶为底物的酶剩余活力71%,低酯果胶为底物的酶活力仅剩余1%。  相似文献   

7.
以渤海和黄海分离出400多株在低温条件下生长良好的菌株为出发菌株,利用常规筛选方法选出2株低温蛋白酶产生菌(Pseudorrtortas alcaligenes)。经UV、DES、NTG、EMS、LiCl单独及复合诱变,选育出一株(Pa040523)蛋白酶高产突变株。通过单因素实验,确定了Pa040523菌株蛋白酶发酵培养基为:玉米淀粉糖1.8%,尿素0.6%,磷酸氢二钾0.6%,磷酸二氖钾0.3%。该突变株低温蛋白酶产量为940.8U/mg。  相似文献   

8.
木聚糖酶高产菌株的诱变*   总被引:7,自引:0,他引:7  
出发菌株Aspergillus niger M1经过紫外线诱变得到一株木聚糖酶活力提高30%的突变株A.niger J506。木聚糖酶谱带检测发现,突变株成熟发酵液中有3种类型的木聚糖酶,而出发菌株中只有两种。经过正交试验得出突变株产酶的最佳发酵条件为:主碳源浓度4%、麸皮与玉米芯的比例为5:5、葡萄糖浓度0.1%、草酸铵浓度2.0%,培养基初始pH为5.0,250mL三角瓶的装液量为100mL。  相似文献   

9.
南昌霉素高产菌株的链霉素抗性基因突变诱变筛选研究   总被引:10,自引:0,他引:10  
通过对链霉素对南昌霉素(Nanchangmycin)产生菌NS-41-80菌株孢子的致死浓度测定基础上,采用诱变剂甲基磺酸乙酯(EMS)的不同诱发剂量对菌株孢子进行诱变处理,诱变处理的孢子涂布在含链霉素(10ug/mL)致死浓度的高氏平板上,获得了大量的链霉素抗性基因(str)突变株。然后从3,000株链霉素抗性基因(str)突变株中通过初筛获得比诱变出发菌株产素能力提高20%以上的菌株202株,再进一步通过摇瓶复筛,获得比出发菌株产素能力分别提高100%,200%,300%高产菌株为48株,7株和1株,分别为复筛菌和初筛菌株的23.76%和1.60%,3.46%和0.23%,0.5%和0.03%,将产素能力提高240%以上5个菌株连同出发菌株连续3批次进行摇瓶发酵结果,5个突变株的产素能力均比出发菌株的产素能力提高57%-96.4%,其中突变株80-5.3-165菌株摇瓶发酵单位达6,000ug/mL以上,3批次摇瓶平均发酵单位达5,855ug/mL,建立了南昌霉素高产菌株的链霉素抗性基因突变诱变快速高效的筛选方法。  相似文献   

10.
以短小杆菌(B.pumilus)B-97为出发菌株,经过连续两次紫外线诱变处理,分离得一突变株B-U-29。其酶活力为4.56U/ml,较出发菌株酶活力提高113.3%。对B-U-29菌株进行连续两次亚硝酸处理,分离得一正变稳定株B—H-29,酶活力为4.93u/ml,较出发菌株酶活力提高了20%。  相似文献   

11.
范礼斌  冉永禄 《蛇志》1994,6(1):29-30
利用化学修饰的方法研究了修饰后的PLA2与其酶活力之间的关系。结果表明色氨酸、精氨酸及氨基酸被修饰后PLA2酶活力均有不同程度的下降。  相似文献   

12.
聚乳酸材料在不同土壤环境中生物降解的菌群结构分析   总被引:1,自引:0,他引:1  
【目的】评价聚乳酸(Polylactic acid,PLA)材料在不同土壤环境中自然降解的效果,通过对3种不同土壤菌群结构的分析,找到能够对聚乳酸材料有降解作用的优势菌群。【方法】通过扫描电镜、断裂拉伸强度和CO2释放量测定来评价3种土壤对PLA材料的降解效果,并运用高通量测序技术,对3种土壤细菌群落进行基因组测序分析,检测3个样本细菌群落的差异性。【结果】PLA材料在沼泽地、芒果林地和稻田中的生物降解率分别为13.7%、10.6%和4.5%。3种土壤的样品分别获得11 110、11 236和8 848个OTU,共涉及细菌域的9个主要门和16个主要科。其中沼泽地土壤的微生物群落丰富度和多样性最高,稻田土壤最低。【结论】结合土壤的降解效果,土壤中生物群落丰富度和多样性越高,对PLA材料的降解作用越好。同时变形菌门(Proteobacteria)和拟杆菌门(Bacteroidetes)是降解聚乳酸材料的优势菌群。在科水平上,黄杆菌科(Flavobacteriaceae)、丛毛单胞菌科(Comamonadaceae)和噬纤维菌科(Cytophagaceae)的微生物对聚乳酸材料的降解最有潜力。这一研究成果为能有效降解聚乳酸材料的微生物资源的开发提供了理论依据。  相似文献   

13.
【背景】近年来,聚乳酸/聚己二酸-对苯二甲酸丁二酯(polylactide/polybutyleneadipateco-terephthalate,PLA/PBAT)可降解地膜得到了广泛的使用,然而材料使用对土壤微生物的影响却鲜有报道。【目的】以新疆土壤为例,研究PLA/PBAT地膜的使用对土壤中微生物群落结构的影响;并从土壤中筛选可降解PLA/PBAT的菌株,为土壤环境的原位修复提供技术支持。【方法】采用高通量测序的方法对比使用PLA/PBAT地膜前后土壤中细菌群落的结构变化;采用筛选培养基从土壤中分离、鉴定PLA/PBAT的降解菌,通过改变不同培养条件研究菌株降解效果。【结果】使用PLA/PBAT地膜后,土壤中酸杆菌门、芽单胞菌门的相对丰度上升,变形菌门、放线菌门的相对丰度下降,这可能是地膜降解过程中其中间产物对土壤pH及微生物的抑制作用所致;并从土壤中分离出一株PLA/PBAT降解菌XJ11,初步鉴定为Delftiatsuruhatensis,在外加1.5%胰蛋白胨的PLA/PBAT (规格1×1×0.05 cm)筛选培养基中,接种菌液1 mL,在pH为7.2、37°C、130 r/min的条件下,7d内PLA/PBAT的降解率可达6.87%。【结论】PLA/PBAT地膜的使用可以改变土壤细菌群落结构,从环境中筛选出高效的PLA/PBAT降解菌成为解决地膜污染的有效措施。  相似文献   

14.
Polylactide or poly(l-lactic acid) (PLA) is a commercially promising material for use as a renewable and biodegradable plastic. Three novel PLA-degrading enzymes, named PLAase I, II and III, were purified to homogeneity from the culture supernatant of an effective PLA-degrading bacterium, Amycolatopsis orientalis ssp. orientalis. The molecular masses of these three PLAases as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis were 24.0, 19.5 and 18.0 kDa, with the pH optima being 9.5, 10.5 and 9.5, respectively. The optimal temperature for the enzyme activities was 50-60 degrees C. All the purified enzymes could degrade high-molecular-weight PLA film as well as casein, and the PLA-degrading activities were strongly inhibited by serine protease inhibitors such as phenylmethylsulfonyl fluoride and aprotinin, but were not susceptive to chymostatin and pepstatin. Taken together, these data demonstrated that A. orientalis ssp. orientalis produces multiple serine-like proteases to utilize extracellular polylactide as a sole carbon source.  相似文献   

15.
The effect of phospholipase A2 (PLA2) inhibitor, quinacrine, on the activity of hydrolytic enzymes in Tetrahymena pyriformis homogenate, was investigated. The activity of all of the enzymes studied (acid phosphatase, N-acetyl-beta-glusosaminidase, glucosidase, galactosidase and esterase) was significantly reduced in the presence of quinacrine. Since there are no data on the inhibitory effect of PLA2 and PLA2 influenced metabolic pathways to the hydrolytic enzymes, the direct effect of quinacrine on the hydrolytic enzymes (of Tetrahymena) can be supposed. This is supported by the fact that the other PLA2 inhibitor, 4-bromophenacyl bromide, did not influence phosphatase activity.  相似文献   

16.
The optimal physical factors affecting enzyme production in an airlift fermenter have not been studied so far. Therefore, the physical parameters such as aeration rate, pH, and temperature affecting PLA-degrading enzyme production by Actinomadura keratinilytica strain T16-1 in a 3 l airlift fermenter were investigated. The response surface methodology (RSM) was used to optimize PLA-degrading enzyme production by implementing the central composite design. The optimal conditions for higher production of PLA-degrading enzyme were aeration rate of 0.43 vvm, pH of 6.85, and temperature at 46° C. Under these conditions, the model predicted a PLA-degrading activity of 254 U/ml. Verification of the optimization showed that PLA-degrading enzyme production of 257 U/ml was observed after 3 days cultivation under the optimal conditions in a 3 l airlift fermenter. The production under the optimized condition in the airlift fermenter was higher than un-optimized condition by 1.7 folds and 12 folds with un-optimized medium or condition in shake flasks. This is the first report on the optimization of environmental conditions for improvement of PLA-degrading enzyme production in a 3 l airlift fermenter by using a statistical analysis method. Moreover, the crude PLA-degrading enzyme could be adsorbed to the substrate and degraded PLA powder to produce lactic acid as degradation products. Therefore, this incident indicates that PLA-degrading enzyme produced by Actinomadura keratinilytica NBRC 104111 strain T16-1 has a potential to degrade PLA to lactic acid as a monomer and can be used for the recycle of PLA polymer.  相似文献   

17.
The crystal structure of the phospholipase A2 (PLA2) heterodimer from Naja naja sagittifera reveals the presence of a new PLA2-like protein with eight disulphide bridges. The heterodimer is formed between a commonly observed group I PLA2 having seven characteristic disulfide bonds and a novel PLA2-like protein (Cys-PLA2) containing two extra cysteines at two highly conserved sites (positions 32 and 49) of structural and functional importance. The crystals of the heterodimer belong to tetragonal space group P41212 with cell dimensions, a = b = 77.7 A and c = 68.4 A corresponding to a solvent content of 33%, which is one of the lowest values observed so far in the PLA2 crystals. The structure has been solved with molecular replacement method and refined to a final R value of 21.6% [Rfree = 25.6%]. The electron density revealed the presence of cysteines 32 and 49 that are covalently linked to give rise to an eighth disulphide bridge in the PLA2-like monomer. A non-protein high-quality electron density was also observed at the substrate-binding site in the PLA2-like protein that has been interpreted as N-acetylglucosamine. The overall tertiary folds of the two monomers are similar having all features of PLA2-type folding. A zinc ion is detected at the interface of the heterodimer with fivefold coordination while another zinc ion was found on the surface of Cys-PLA2 with sixfold coordination. The conformations of the calcium-binding loops of both monomers are significantly different from each other as well as from those in other group I PLA2s. The N-acetylglucosamine molecule is favorably placed in the substrate-binding site of Cys-PLA2 and forms five hydrogen bonds and several van der Waals interactions with protein atoms, thus indicating a strong affinity. It also provides clue of the possible mechanism of sugar recognition by PLA2 and PLA2-like proteins. The formation of heterodimer seems to have been induced by zinc ion.  相似文献   

18.
目的 构建产天然防腐剂苯乳酸的工程菌。方法 分析超耐热菌(Aquifex aeolicus,A.aeolicus )D-乳酸脱氢酶(D-LDH)的三维构象,并与构建的可视化突变体三维模型进行对比,通过比较酶活性中心氨基酸残基与底物的空间构象,优选最佳模型进行定点突变,克隆、表达和苯乳酸发酵实验。结果 优选到F49A和Y297S两个单突变模型和一个F49A/Y297S双突变模型;分别进行定点突变和工程菌构建,三个突变工程菌,均能发酵产生苯乳酸。结论 可视化定点突变乳酸脱氢酶可作为构建高产苯乳酸工程菌的有效方法。  相似文献   

19.
The association between lipoprotein‐associated phospholipase A2 (Lp‐PLA2) G994T gene polymorphism and the risk of ischemic stroke is unclear. The aim of this study is to investigate the influence of Lp‐PLA2 G994T genetic variant on the pathogenesis of ischemic stroke in Chinese population. A total of 348 patients with a clinical diagnosis of ischemic stroke and 260 gender‐matched control subjects under physical examination were recruited from hospitals and genotyped for G994T gene polymorphism. The results showed that there was a significant difference in the genotype distribution between the two groups and people with GT or TT genotype were associated with the higher risk of ischemic stroke even after adjusting the effects of potential confounding factors. In addition, both ischemic stroke patients and control subjects carrying T allele showed relatively lower Lp‐PLA2 activity and higher oxLDL level. Therefore, Lp‐PLA2 G994T gene polymorphism may be an independent risk factor of ischemic stroke in Chinese population.  相似文献   

20.
We previously described that recombinant interleukin-1beta (IL-1beta) induced the significant release of substance P (SP) via a cyclooxygenase (COX) pathway in primary cultured rat dorsal root ganglion (DRG) cells. In the present study, we examined the involvement of two types of phospholipase A2 (PLA2) enzymes, which lie upstream of COX in the prostanoid-generating pathway, in the IL-1beta-induced release of SP from DRG cells. The expression of type IIA secretory PLA2 (sPLA2 -IIA) mRNA was undetectable by ribonuclease protection assay in non-treated DRG cells, while in DRG cells incubated with 1 ng/mL of IL-1beta, the expression was induced in a time-dependent manner. On the other hand, type IV cytosolic PLA2 (cPLA2 ) mRNA was constitutively expressed in the non-treated DRG cells, and treatment with 1 ng/mL of IL-1beta for 3 h significantly increased the levels of cPLA2 mRNA. The IL-1beta-induced SP release was significantly inhibited by the sPLA2 inhibitor, thioetheramide phosphorylcholine (TEA-PC), and the cPLA2 inhibitor, arachidonyl trifluoromethyl ketone (AACOCF3 ). Furthermore AACOCF3 suppressed the induction of sPLA2 -IIA mRNA expression induced by IL-1beta. These observations suggested that two types of PLA2, sPLA2 -IIA and cPLA2, were involved in the IL-1beta-induced release of SP from DRG cells, and that the functional cross-talk between the two enzymes might help to control their activity in the prostanoid-generating system in DRG cells. These events might be key steps in the inflammation-induced hyperactivity in primary afferent neurons of spinal cord.  相似文献   

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