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1.
斑玉蕈育种中漆酶转化体系建立的初步研究   总被引:1,自引:0,他引:1  
漆酶具有降解木质素,氧化降解酚类物质,抑制杂菌,改善出菇品质等作用。采用酶学与原生质体融合相结合的技术,建立斑玉蕈育种中漆酶转化体系,将漆酶活性较高、生长速度较快的凤尾菇原生质体经高温灭活与斑玉蕈原生质体融合,通过RB-PDA平板显色技术筛选出具有漆酶活性较高的两融合菌株Ⅲ18C、Ⅲ2A,并对其进行了拮抗试验、RAPD分子标记、漆酶基因扩增等研究。结果表明,筛选出的两融合菌株与两亲本具有明显的拮抗线,随即引物扩增的条带与两亲本有明显的差异,并扩增出漆酶基因的一个片段。同时也表明利用漆酶转化体系筛选融合菌株具有目标明确、准确、快速的优点。  相似文献   

2.
Phloroglucinol, thymol, and violuric acid (VIO) were selected as laccase mediators after screening 14 different compounds with indigo carmine (indigoid dye) as a substrate. With the presence of these three mediators, a nearly complete decolorization (90-100%) was attained in 1 h. Thus, these three compounds were used as mediators for the decolorization of other four dyes. The results indicated that VIO was effective mediator in decolorization of Remazol brilliant blue R (RBBR, anthraquinoid dye) and Coomassie brilliant blue G-250 (CBB, triphenylmethane dyes), and Acid red (diazo dye). In presence of VIO, the four dyes described above attained 70% decolorization. Thymol was able to mediate decolorization of RBBR and Azure A (heterocyclic dye). Phloroglucinol has no mediating capability in decolorization of the four dyes analyzed. Mediator concentration, pH, and copper ion have an effect on the decolorization of the RBBR. Our data suggested that the decolorization capabilities of laccase/mediator system were related to the types of mediator, the dye structure and decolorization condition.  相似文献   

3.
Dye decolorizing potential of the white rot fungus Ganoderma lucidum KMK2 was demonstrated for recalcitrant textile dyes. G. lucidum produced laccase as the dominant lignolytic enzyme during solid state fermentation (SSF) of wheat bran (WB), a natural lignocellulosic substrate. Crude enzyme shows excellent decolorization activity to anthraquinone dye Remazol Brilliant Blue R (RBBR) without redox mediator whereas diazo dye Remazol Black-5 (RB-5) requires a redox mediator. Polyacrylamide gel electrophoresis (PAGE) of crude enzyme confirms that the laccase enzyme was the major enzyme involved in decolorization of either dyes. Native and SDS-PAGE indicates that the presence of single laccase with molecular weight of 43 kDa. N-Hydroxybenzotriazole (HBT) at a concentration of 1 mM was found as the best redox mediator. RB-5 (50 mg l−l) was decolorized by 62% and 77.4% within 1 and 2 h, respectively by the crude laccase (25 U ml−1). RBBR (50 mg l−l) was decolorized by 90% within 20 h, however, it was more efficient in presence of HBT showing 92% decolorization within 2 h. Crude laccase showed high thermostability and maximum decolorization activity at 60 °C and pH 4.0. The decolorization was completely inhibited by the laccase inhibitor sodium azide (0.5 mM). Enzyme inactivation method is a good method which averts the undesirable color formation in the reaction mixture after decolorization. High thermostability and efficient decolorization suggest that this crude enzyme could be effectively used to decolorize the synthetic dyes from effluents.  相似文献   

4.
一色齿毛菌漆酶的酶学特性及染料脱色研究   总被引:1,自引:1,他引:0  
染料由于具有复杂的化学结构通常难以降解。本文从白腐菌一色齿毛菌LS0547中纯化出胞外漆酶并用于染料脱色实验。SDS-PAGE结果显示纯化的漆酶分子量大小为63.7kDa。漆酶氧化底物ABTS的最适pH为2.2,最适温度为50℃。叠氮钠可强烈抑制漆酶活性,半胱氨酸和二硫苏糖醇可部分抑制漆酶活性。漆酶氧化ABTS,丁香醛连氮和2,6-二甲氧基苯酚的米氏常数分别为0.217,0.306和0.199mmol/L。粗酶和纯化的漆酶用于不同化学结构的染料的脱色研究,结果表明一色齿毛菌纯化漆酶可快速对RB亮蓝进行脱色,偶氮胭脂红和结晶紫的脱色效果低于RB亮蓝,测试的三种染料均可在没有介体存在的条件下被漆酶脱色,显示出一色齿毛菌漆酶在染料废水处理中的应用前景。  相似文献   

5.
对革兰氏阳性的地衣芽孢杆菌(Bacilluslicheniformis)H19和革兰氏阴性的2-酮基-L-古龙酸产生菌S19的原生质体的制备条件进行了研究,并采用聚乙二醇作诱导剂进行了两菌株的原生质体融合,用链霉素作为抗性标记对融合子进行了选择。从17株产生2-酮基-L-古龙酸的融合子中选出了一株连续传代八次产酸高且产量稳定的融合子15号。融合子15号具有两个亲本菌株所具有的一些特性。  相似文献   

6.
Decolorization of an anthraquinone-type dye using a laccase formulation   总被引:7,自引:0,他引:7  
Decolorization of the dye Remazol Brilliant Blue R (RBBR) was studied, as it is representative of an important class of recalcitrant anthraquinone-type dyes. For this purpose a commercial laccase formulation (CLF) containing laccase, a redox mediator and a non-ionic surfactant was used. Small molecular weight components were removed from the CLF by gel filtration, which made it possible to compare the effect of its laccase alone. Apart from slightly better thermostability of the CLF as compared with the laccase alone, the pH and temperature profiles were similar regardless of the presence of the small molecular weight components. The laccase alone did not decolorize RBBR. A small molecular weight redox mediator (HBT) was necessary for decolorization to occur. A comparison of the kinetics of RBBR decolorization using the CLF and its laccase alone is reported. Provided that a redox mediator is included, it is suggested that laccase may be suitable for the wastewater treatment of similar anthraquinone dyes.  相似文献   

7.
In this study crude laccases from the white‐rot fungi Cerrena unicolor and Trametes hirsuta were tested for their ability to decolorize simulated textile dye baths. The dyes used were Remazol Brilliant Blue R (RBBR) (100 mg/L), Congo Red (12.5 mg/L), Lanaset Grey (75 mg/L) and Poly R‐478 (50 mg/L). The effect of redox mediators on dye decolorization by laccases was also assessed. C. unicolor laccase was able to decolorize all the dyes tested. It was especially effective towards Congo Red and RBBR with 91 and 80% of color removal in 19.5 h despite the fact that simulated textile dye baths were used. Also Poly R‐478 and Lanaset Grey were partially decolorized (69 and 48%, respectively). C. unicolor laccase did not need any mediators for removing the dyes. However, T. hirsuta laccase was only able to decolorize simulated Congo Red and RBBR dye baths (91 and 45%, respectively) in 19.5 h without mediators. When using mediators the decolorization capability was enhanced substantially, e.g. Poly R‐478 was decolorized by 78% in 25.5 h. On the whole, both laccases showed potential to be used in industrial applications.  相似文献   

8.
A crude laccase mixture preparation from Pleurotus ostreatus cultures supplemented with copper and ferulic acid was used to decolorize the anthraquinonic dye Remazol Brilliant Blue R (RBBR). Performance of this enzymatic system was tested, and a maximum of 70% decolorization was achievable under optimal conditions. The crude preparation was immobilized by entrapment in copper alginate beads attaining 65% yield of laccase activity. Stability of the immobilized laccases was remarkably increased in comparison with that of the free enzyme preparation. Efficiency of the immobilized system was evaluated during stepwise dye additions in batch operations. Under the best conditions, 70% RBBR decolorization was achieved even after 20 cycles, although decolorization time exponentially increased after the 10th cycle. Different fixed-bed bioreactors were prepared and analyzed in continuous decolorization processes. The best performance was obtained by decreasing the amount of enzyme loaded and by improving laccase retention using chitosan-coated alginate beads.  相似文献   

9.
《Process Biochemistry》2007,42(10):1429-1435
In this study, decolorization of Remazol Brillant Blue Royal (RBBR) and Drimaren Blue CL-BR (DB) was investigated using three white rot fungi named as Pleurotus ostreatus (P. ostreatus), Coriolus versicolor (C. versicolor) and Funalia trogii (F. trogii). Decolorization studies were continued for 48 h under static conditions at 30 °C and pH 5.0. The degree of pH, dry mycelium weight (DMW), dye concentration, laccase activity and protein content were analyzed; the enzyme responsible for decolorization was detected for both dyes. Maximum and minimum decolorizations were obtained by F. trogii and P. ostreatus, respectively. Both dyes at all concentrations were found to be toxic for P. ostreatus growth, whereas only DB above 60 mg/L was found to be toxic for C. versicolor growth. Maximum and minimum laccase activities were detected in decolorization media of F. trogii and P. ostreatus, respectively. Results of activity staining following SDS-PAGE showed that laccase is the only enzyme that is responsible for decolorization of DB and RBBR.  相似文献   

10.
Twenty-six species of ammonia fungi comprising 71 strains were screened for ligninolytic activity using agar plate tests. The tests comprised a wood powder plate test, the Bavendamm reactions, and a Remazol Brilliant blue R (RBBR) decolorization test. The wood powder plate test detected phenol oxidases of Coprinus spp., whereas this method obviously detected no activities from facultative mycorrhizal fungi, such as Hebeloma radicosoides and ectomycorrhiza: H. spoliatum and H. vinosophyllum. With quantitative assays of ligninolytic activity, Coprinus phlyctidosporus, C. echinosporus, Lyophyllum tylicolor, Lepista nuda, L. tarda, Calocybe leucocephala, and Crucispora rhombisperma, which grow on oak-leaf litter, the major phenol-oxidizing enzyme was a laccase. The concentration of urea affected laccase activity; however, urea was not the obligate nitrogen source for the laccase production.  相似文献   

11.
Remazol brilliant blue R (RBBR) is an anthraquinone dye derived from anthracene that is decolorized by a white rot fungus, Phlebia brevispora. Interestingly, P. brevispora produces two phenomena of yellowish and pinkish colors during the degradation of RBBR. Here, we characterized the decolorization of RBBR by P. brevispora. The fungus was significantly different between the two colors via UV spectrophotometry, and the morphology of the hyphae observed in the respective color culture was also entirely different. Moreover, both of the two ligninolytic enzymes, laccase and manganese‐dependent peroxidase (MnP), were remarkably stimulated in the yellowish culture at the beginning of the decolorization. It is possible that the RBBR decolorizing mechanism might be primarily related to the amount of laccase and MnP produced in the yellowish culture. Thus, the decolorized color may be rapidly estimated at initial period of incubation. In addition, GeneFishing technology revealed that two genes were differentially expressed in yellowish culture.  相似文献   

12.
原生质体融合技术构建棕榈油酸高产酵母菌株   总被引:6,自引:0,他引:6  
采用原生质体融合技术进行产棕榈油酸酵母Saccharomy cescerevisiaeNo.12.926和产脂酵母RhodotorulaNo.12.908的融合研究,获得了棕榈油酸高产酵母工程菌株。实验结果表明,原生质体形成的最佳条件为:对数期酵母No.12.926和No.12.908用2%蜗牛酶于30℃分别酶解1.5和2h。在最佳条件下,酵母No.12.926和No.12.908原生质体形成率分别为94%和80%,再生率分别为75%和60%。原生质体融合由聚乙二醇诱导。将得到的融合子进行多次传代培养优选,获得了遗传性状稳定的融合菌株。融合子的生物量为亲株的两倍多,其细胞形态和菌落颜色与亲株有差别。产脂和产棕榈油酸分析表明,融合子的产脂量为菌体干重的48.53%,其中棕榈油酸占油脂总量的47.29%,为菌体干重的22.95%。  相似文献   

13.
Trametes trogii BAFC 463 culture fluids (containing 110 U ml−1 laccase; 0.94 U ml−1 manganese peroxidase), as well as its purified laccase were capable of decolorizing azoic, indigoid, triphenylmethane, anthraquinonic and heterocyclic dyes, in the absence of redox mediators. Six dyes: RBBR, Indigo Carmine, Xylidine, Malachite Green, Gentian Violet and Bromophenol Blue were almost completely degraded (more than 85% decolorization after 1 d) by either laccase or T. trogii itself in culture, proving the role of the enzyme in dye decolorization. The purified laccase also decolorized 65% of Fast Blue RR and 30% of Azure B and Methylene Blue after 24 h. The use of redox mediators significantly increased the decolorization rates (90% decolorization of Azure B after 1 h). 1-hydroxybenzotriazole resulted the best redox mediator, but the natural mediator p-hydroxybenzoic acid also demonstrated its efficiency for dye decolorization. Due to their ability to decolorize recalcitrant dyes without addition of redox mediators, high laccase activities, high thermostability and efficient decolorization at 70 °C and pH 7.0, even in the presence of high concentrations of heavy metals (100 mM Cu+2, Pb+2 or Cd+2) or in a synthetic dyebath, T. trogii culture fluids could be effectively used to decolorize synthetic dyes from effluents.  相似文献   

14.
原生质体电融合酵母多倍体生理特性的研究   总被引:5,自引:0,他引:5  
对原生质体电融合技术获得的11株酵母多倍体融合株,进行了一系列生理特性的分析比较.结果发现,在电融合过程中,融合株的细胞体积及DNA含量并不随着核倍性呈线性递增.而是有其特殊的变化规律。当糖化酵母sta1、sta2和sta3在细胞核中各自纯合时,明显表现出表达的剂量效应。其中sta1、sta2纯合的融合株.在YEPS培养中,GA分泌可被淀粉大量诱导,表现出一定的二次生长特性。从分析结果推测,在亲株5301-14D及HU-TY—1A中可能有对GA分泌不利的因素。  相似文献   

15.
Hybrids between a strain of Bacillus subtilis isolated in our laboratory and having the ability to degrade xylan and other complex polysaccharides and Corynebacterium acetoacidophilum, a lysine producer, were prepared by protoplast fusion. Based on distinctive parental biochemical characteristics the fusants were grouped into 9 categories, viz. BC1 through BC9. Three of the hybrids, BC5, BC7a and BC7b, were tested for their ability to produce xylanase and lysine. Both BC7a and BC7b produced xylanase but BC5 did not, however all of them produced lysine albeit to different degrees. These results demonstrate that intergeneric gene transfer takes place through protoplast fusion between these 2 important genera of bacteria and some of the fusants inherit the useful traits of both the parents.  相似文献   

16.
目的:采用双亲灭活原生质体技术制备粘质沙雷氏菌和红曲霉的跨界产色素融合子,并测定其抑菌活性。方法:经0.2%溶菌酶处理获得粘质沙雷氏菌的原生质体并热灭活;经混合酶(0.8%溶菌酶+1.2%蜗牛酶+1.6%纤维素酶)处理获得红曲霉的原生质体并紫外灭活;用含25%PEG的原生质体融合剂进行促融合与再生。观察融合子的菌落形态和色素合成能力,测定融合子色素提取物对金黄色葡萄球菌的抑制活性。结果:在优化条件下,粘质沙雷氏菌原生质体的形成率为92.58%,红曲霉原生质体形成数约为106个/mL,两菌原生质体灭活率均为100%。共获得13个融合子,9个能产红色素,融合率为1×10-5%。其中8个融合子的95%乙醇提取物对金黄色葡萄球菌表现出不同程度的抑制。结论:采用双亲灭活原生质体技术,能够制备具有抑菌活性的粘质沙雷氏菌和红曲霉的跨界产色素融合子。  相似文献   

17.
周林  朱爽  潘敏芬  蔡泽加  许尧滨 《生物磁学》2011,(8):1436-1439,1435
目的:采用双亲灭活原生质体技术制备粘质沙雷氏菌和红曲霉的跨界产色素融合子,并测定其抑菌活性。方法:经0.2%溶菌酶处理获得粘质沙雷氏菌的原生质体并热灭活;经混合酶(0.8%溶菌酶+1.2%蜗牛酶+1.6%纤维素酶)处理获得红曲霉的原生质体并紫外灭活;用含25%PEG的原生质体融合剂进行促融合与再生。观察融合子的菌落形态和色素合成能力,测定融合子色素提取物对金黄色葡萄球菌的抑制活性。结果:在优化条件下,粘质沙雷氏菌原生质体的形成率为92.58%,红曲霉原生质体形成数约为106个/mL,两菌原生质体灭活率均为100%。共获得13个融合子,9个能产红色素,融合率为1×10-5%。其中8个融合子的95%乙醇提取物对金黄色葡萄球菌表现出不同程度的抑制。结论:采用双亲灭活原生质体技术,能够制备具有抑菌活性的粘质沙雷氏菌和红曲霉的跨界产色素融合子。  相似文献   

18.
Levin L  Forchiassin F  Ramos AM 《Mycologia》2002,94(3):377-383
Trametes trogii, a white rot basidiomycete involved in wood decay worldwide, produces several ligninolytic enzymes, laccase being the dominant one, with higher titers than those reported for most other white rot fungi studied up to date. The effect of copper on in vitro production of extracellular ligninolytic activities was studied. CuSO(4)·5H(2)O concentrations from 1.6 μM to 1.5 mM were tested in a synthetic medium with glucose 20 g/L and asparagine 3 g/L. The addition of copper (up to 1 mM) did not affect growth but strongly stimulated ligninolytic enzyme production; faster decolorization of the polymeric dye Poly R-478 was observed as well. Maximal production of manganese peroxidase, laccase, and glyoxal oxidase [1.28 U/mL, 93.8 U/mL (with a specific activity of 720 U/mg protein), and 0.46 U/mL respectively] was attained with 1 mM CuSO(4)·5H(2)O. However, higher copper concentrations inhibited growth and notably decreased manganese peroxidase production, although they did not affect laccase secretion. Laccase activity in the culture filtrate was maximal at 50 C and pH 3.4, and the enzyme was completely stable at pH 4.4 and above, and at 30 C for up to 5 d. Denaturing polyacrylamide gel electrophoresis of extracellular culture fluids showed two laccase activity bands (mol wt 38 and 60 kDa respectively). The pattern of isoenzyme production was not affected by medium composition but differed with culture age.  相似文献   

19.
[目的]分离获得产漆酶的细菌菌株,研究漆酶的酶学性质并应用于染料脱色.[方法]利用含铜的富集培养基筛选产漆酶细菌;通过形态特征、生理生化试验及16SrDNA序列分析等方法进行鉴定;以丁香醛连氮为底物测定漆酶的酶学性质;通过测定染料在最大吸收波长下吸光值的变化评价漆酶对染料的脱色效果.[结果]从森林土壤中筛选到一株漆酶高产菌株LS05,初步鉴定为解淀粉芽孢杆菌(Bacillus amyloliquefaciens);菌株LS05的芽孢漆酶以丁香醛连氮为底物的最适pH为6.6,最适温度为70℃;该酶具有较好的稳定性,经70℃处理10h或在pH 9.0条件下放置10d后可保留活性.对抑制剂SDS和EDTA具有一定的抗性,在碱性条件下可有效脱色不同的工业染料,RB亮蓝、活性黑和靛红1h内的脱色率达93%以上.[结论]Bacillus amyloliquefaciens LS05的芽孢漆酶在高温和碱性条件下稳定性强,相对于真菌漆酶具有更好的工业应用特性,可有效用于工业染料废水的处理.  相似文献   

20.
In the present study laccase production potential of a photosynthetic, non nitrogen fixing cyanobacteria Arthrospira maxima (SAE-25780) was investigated for their probable use in synthetic dye decolorization which poses environmental pollution problem in aquatic bodies. A. maxima (SAE-25780) showed a constitutive production of laccase which increased up to 80% in the presence of inducer guaiacol. The optimal condition for laccase was 30 °C, 10 mM sucrose as a carbon source, 10 mM sodium nitrate as a nitrogen source, and 2 mM copper as metal activator. The partially purified laccase showed 84% and 49% decolorization potential for the two anthroquinonic dyes-Reactive Blue 4 and Remazol Brilliant Blue R, respectively (RBBR) within 96 h without any mediator. Therefore the laccase extracted from A. maxima (SAE-25780) can be used efficiently in bioremediation of synthetic dyes from paper, pulp and textile industries.  相似文献   

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