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1.
【目的】从嗜盐古菌中筛选可产生生物絮凝剂的菌株,对发酵液、上清液、菌悬液、胞外聚合物的絮凝作用进行检测,筛选能够适应高盐废水处理,且具有广谱盐度及pH作用范围的微生物絮凝剂。【方法】以新疆乌勇布拉克干盐湖沉积物为研究对象,利用纯培养方法对嗜盐古菌进行分离,对絮凝菌株进行初筛及16S rRNA基因测序,构建系统进化树,初步判断菌株分类地位;复筛检测不同生物材料的絮凝效果;选择絮凝效果较好的生物材料,检测其盐度、pH的絮凝效果稳定性。【结果】采用纯培养方法共分离到28株嗜盐古菌,絮凝初筛共筛选出16株嗜盐古菌,分布于碱线菌属(Natrinema)、盐缓长菌属(Halopiger)和盐土生菌属(Haloterrigena)。菌株发酵液、上清液、菌悬液、胞外聚合物具有不同程度的絮凝效果。菌株A279-1、A133、RP33、NGA0064、RM-152、A389的发酵液、上清液的絮凝效果较好,其中菌株A389的发酵液絮凝率为61.06%,上清液为67.92%。所有菌株菌悬液的絮凝率达到80%以上。菌株所产胞外聚合物表现出较好的絮凝效果,菌株RM-152所产胞外聚合物的絮凝率最高,达89.86%,其次是A389 (81.53%)。菌株A389所产胞外聚合物的产量最大,达12.53 g/L,具有广泛的盐度和pH适应性。【结论】乌勇布拉克干盐湖沉积物中蕴含丰富的可产生微生物絮凝剂的嗜盐古菌资源。嗜盐古菌菌株发酵液、上清液、菌悬液及胞外聚合物均具有良好的絮凝作用,尤其是胞外聚合物表现出较好的絮凝效果,具有广谱的盐度和pH耐受性。嗜盐古菌所产生物絮凝剂的发现对于后续高盐废水功能材料开发具有重要应用价值。  相似文献   

2.
【背景】目前,微生物所产胞外多糖(exopolysaccharide,EPS)的理化性质及其在重金属吸附中的应用受到了广泛关注。【目的】研究红球菌HX-2所产胞外多糖的理化性质,并探究其对重金属的吸附情况。【方法】使用离子交换和凝胶色谱分离法对胞外多糖粗品进行纯化;利用苯酚硫酸法测胞外多糖中糖含量;用Bradford试剂盒检测胞外多糖中蛋白含量;使用甲醇萃取法检测胞外多糖中脂质含量;用高效液相色谱(high performance liquid chromatography,HPLC)法分析胞外多糖中单糖组成;用扫描电镜(scanningelectronmicroscopy,SEM)法观察多糖表面形态;通过等温吸附模型和动力学模型探究胞外多糖对重金属的吸附效果。【结果】测得胞外多糖主要成分EPS-G-1中总糖含量为78.43%,蛋白含量为8.31%,脂质含量为8.22%;纯化后胞外多糖中单糖组成为葡萄糖、甘露糖、半乳糖、葡萄糖醛酸和岩藻糖,质量比为27.31:26.67:24.83:15.85:4.80;通过等温吸附模型拟合得到HX-2所产胞外多糖对Cu~(2+)的最大吸附量为144.93 mg/g。【结论】红球菌HX-2所产胞外多糖对水体中Cu~(2+)具有良好的吸附作用,可用于工业废水中重金属离子的处理。  相似文献   

3.
电活性微生物是一类能够通过直接接触、导电菌毛或氧化还原介质与电极或者其他细胞进行胞外电子传递的微生物。而在这个过程中,胞外聚合物(extracellular polymeric substances, EPS)扮演着重要的角色。EPS是微生物生长过程中通过细胞裂解、水解分泌的高分子聚合物的混合物,主要由蛋白质、多糖和腐殖质等物质组成。来自电活性微生物的EPS的不同组成成分和特性会对EPS的电活性以及电活性微生物胞外电子传递产生一定的影响,同时在环境应用方面发挥重要作用。因此,为了更全面了解电活性微生物EPS的电活性及其对电活性微生物胞外电子传递的作用,本文总体介绍了电活性微生物EPS的电活性的直接表征方法,再从组成成分、化学性质、物理性质和空间分布4个方面综述了其对EPS电活性的影响及其在电子传递中的作用,介绍了当前电活性微生物EPS在染料废水脱色、重金属吸附、有机污染物的生物转化和渗滤液管理等方面的环境应用,并从表征方法、试验规模和互作机理研究等角度展望了未来的研究方向。  相似文献   

4.
生物膜胞外聚合物的检测技术与功能的研究进展   总被引:1,自引:0,他引:1  
生物膜胞外聚合物是黏附在生物膜周围,保证生物膜功能及完整性的生物合成聚合物。近几年,生物膜胞外聚合物的物理化学性质、生物功能及其检查技术备受关注。就生物膜胞外聚合物的组成、检测技术及功能几方面展开综述。  相似文献   

5.
微生物胞外多糖是一类由微生物产生的,有一定加工性能和/或人体健康增益效果的高分子聚合物。为了筛选胞外多糖高产的菌株并提高其多糖产量,以多糖含量为衡量指标,首先通过比较实验筛选目标菌株,然后采用生理生化和分子生物学的方法对该菌株进行菌种鉴定,最后运用单因素分析和响应面实验确定该菌株发酵脱脂乳产糖的最佳条件。结果表明,菌株B6的产糖能力显著高于其他常规乳酸菌,经鉴定为鼠李糖乳杆菌(CGMCC No.13310)。该菌株最优的产糖条件为发酵时间41 h,发酵温度39 ℃,脱脂乳浓度91 mg/mL,接种量5%(体积分数)。在此条件下获得的发酵乳中多糖含量可达354.5 mg/L,比优化前提高35.8%。  相似文献   

6.
目的从牧区传统乳制品中分离获得胞外多糖产量较高的菌株,并对胞外多糖的结构和功效进行初步研究,以期能为将来生产乳酸菌胞外多糖的可行性提供数据和依据。方法通过涂布平板法从内蒙古传统发酵乳制品中分离乳酸菌,并测定胞外多糖产出量,从中筛选胞外多糖高产菌株,通过生理生化试验和16S rRNA测序鉴定菌株。采用紫外光谱法和高效液相色谱法对胞外多糖的结构进行初步分析。通过测定胞外多糖的吸湿能力和保湿能力初步评价其吸湿保湿性能。结果共分离出90株菌株,筛选出1株胞外多糖高产菌株,并鉴定出该菌株为嗜热链球菌。通过分析得出该菌株产生的胞外多糖主要由4种单糖组成,分别为甘露糖、葡萄糖、半乳糖和阿拉伯糖,其摩尔比为0.25∶3.10∶3.70∶0.10,分子量范围为1.897×10~6~7.257×10~6 Da。通过保湿性能的测定,初步确定该嗜热链球菌产生的胞外多糖有良好的保湿性。结论本实验筛选出的胞外多糖高产菌株嗜热链球菌属于益生菌,有广泛的应用价值。  相似文献   

7.
产胞外多糖酵母菌株的筛选鉴定及发酵产糖   总被引:2,自引:0,他引:2  
【目的】微生物胞外多糖大多具有良好的功能和特性,但对酵母胞外多糖的研究甚少。本研究从自然界中筛选出产胞外多糖的酵母菌株,并对其发酵产糖条件进行初步研究。【方法】利用平板涂布法从自然界中分离得到酵母菌株,苯酚硫酸法测定菌株胞外多糖的产量,筛选出胞外多糖高产菌株,并对其进行5.8SrDNA分类鉴定,最后优化其产糖培养基组成。【结果】对从葡萄、蜜枣、土壤样品中分离得到的132株酵母进行筛选,最终得到3株高产胞外多糖的酵母菌株Z14、Z20和L25。经5.8S rDNA序列测定及系统发育分析,从左优红葡萄中分离得到的Z14和Z20与东方伊萨酵母(Issatchenkia orientalis)处于同一分支,相似性达到99%以上;从落叶松近表层土壤分离得到的L25与土生隐球酵母(Cryptococcus humicolus)处于同一分支,相似性为98.8%。经优化,利于Z20胞外多糖合成的最优发酵培养基配方为:葡萄糖8%,(NH4)SO40.2%,KH2PO40.1%,酵母浸粉0.1%,CaCl20.01%。在初始pH6.0,发酵温度28℃,摇床转数160 r/min条件下,在此培养基中发酵4 d后胞外多糖产量可达2.046 g/L,比复筛时的产量1.137 g/L提高了79.9%。【结论】文献已报道某些属的酵母可以生产胞外多糖,经本文研究发现Issatchenkia属的酵母也可以合成胞外多糖,并且改变基础产糖培养基的成分可以显着提高Z20胞外多糖的产量。  相似文献   

8.
刘颖  徐春厚 《微生物学通报》2011,38(8):1222-1227
以从红树林土壤分离并经紫外线和亚硝基胍复合诱变获得的SC27突变菌株作为目标菌,对其胞外代谢产物的活性与成分进行分析。结果表明:芽孢杆菌SC27产生乳酸,产量为5.04 g/L;发酵液蛋白酶、淀粉酶和纤维素酶活力分别为1 316.6、513.3和176.2 U/mL,未检测出脂肪酶;胞外代谢产物对革兰氏阳性菌的抑菌活性强,且抑菌活性物质可耐受高温及木瓜蛋白酶、蛋白酶K和胰蛋白酶处理;发酵液二氯甲烷萃取物的主要化学成分及相对含量为二丁基羟基甲苯(10.28%)、二甲基二氧基硅烷(7.87%)、2,4-二叔丁基苯酚(2.92%)和2个未确定化合物(4.47%、2.36%)。  相似文献   

9.
微生物成因的碳酸盐矿物研究进展   总被引:4,自引:0,他引:4  
微生物诱导碳酸盐类矿物沉淀是地质微生物学的研究热点之一.微生物主要通过其代谢活动促进细胞周围微环境pH值及水体[CO32-]的升高,最终表现为碳酸盐类矿物饱和指数的增加.此外,微生物及其分泌的胞外聚合物可作为碳酸盐晶核的成核位点,为碳酸盐矿物晶体的生长进一步提供有利条件.微生物成因与纯化学成因的碳酸盐类矿物相比具有不同的矿物特征(如形貌、微量元素含量及碳同位素等).深入了解微生物诱导碳酸钙沉淀的行为对理解地质时期微生物活动及其在二氧化碳的地质封存中的潜在应用具有指导意义.本文综述了微生物诱导碳酸盐矿物沉淀的机理、代谢过程,总结了该领域的最新进展,探讨了生物成因以及化学成因碳酸盐矿物的区别,最后指出了该项研究在微生物岩以及CO2地质封存上的一些可能的拓展方向.  相似文献   

10.
药用昆虫蜣螂对灵芝多糖生物合成的影响   总被引:4,自引:0,他引:4  
采用液体深层发酵方式,研究了几种药用昆虫对灵芝多糖生物合成的影响。结果表明,药用昆虫蜣螂在添加量为5g/L时能显著促进灵芝胞内多糖(IPS)和胞外多糖(EPS)的形成(P<0.05)。胞内多糖和胞外多糖的产量分别由对照的(1.93±0.09)g/L和(520.3±20.2)mg/L提高到(2.41±0.12)g/L和(608.9±20.2)mg/L。灵芝胞内多糖和胞外多糖在DEAE纤维素柱上都可分离得到5种主要组分,其中IPS-1和EPS-1分别为2类多糖的主要组分。进一步用凝胶柱分离显示,IPS-1由3个单个的组分组成,EPS-1由2个单个的组分组成。添加蜣螂发酵后,灵芝胞内多糖和胞外多糖中没有出现新的组分,且各组分的相对含量也没有显著变化(P>0.05),提示添加蜣螂发酵后,灵芝胞内多糖和胞外多糖主要组分的合成途径并未改变。  相似文献   

11.
There is a current need to develop low-cost strategies to degrade and eliminate industrially used colorants discharged into the environment. Colorants discharged into natural water streams pose various threats, including: toxicity, degradation of aesthetics and inhibiting sunlight penetration into aquatic ecosystems. Dyes and colorants usually have complex aromatic molecular structures, which make them very stable and difficult to degrade and eliminate by conventional water treatment systems. The results in this work demonstrated that heavy metal-resistant Rhodotorula mucilaginosa strain UANL-001L isolated from the northeast region of Mexico produce an exopolysaccharide (EPS), during growth, which has colorant adsorption potential. The EPS produced was purified by precipitation and dialysis and was then physically and chemically characterized by Scanning Electron Microscopy, Fourier Transform Infrared Spectroscopy, and chemical elemental analysis. Here, the ability of the purified EPS produced to adsorb methylene blue (MB), which served as a model colorant, is studied. MB adsorption by the EPS is found to follow Langmuir Adsorption Isotherm kinetics at 25°C. Further, by calculating the Langmuir constant the adsorption capabilities of the EPS produced by the Rhodotorula mucilaginosa strain UANL-001L is compared to that of other adsorbents, both, microbially produced and from agroindustrial waste. The total adsorption capacity of the EPS, from the Rhodotorula mucilaginosa strain UANL-001L, was found to be two-fold greater than the best bioadsorbents reported in the literature. Finally, apart from determining which heavy metals stimulated EPS production in the strain, the optimal conditions of pH, heavy metal concentration, and rate of agitation of the growing culture for EPS production, was determined. The EPS reported here has the potential of aiding in the efficient removal of colorants both in water treatment plants and in situ in natural water streams.  相似文献   

12.
Hyphomonas strain VP-6 is a prosthecate bacterium isolated from the Guayamas vent region and is a member of a genus of primary and common colonizers of marine surfaces. It adheres to solid substrata as a first step in biofilm formation. Fine-structure microscopy and the use of specific stains and lectins reveal that it synthesizes two different extracellular polymeric substances (EPS). One is a temporally synthesized, polar holdfast EPS, and the other is a capsular EPS that is present during the complete life cycle and surrounds the entire cell, including the prosthecum. The timing and location of Hyphomonas strain VP-6 EPS elaboration correlate with adhesion to surfaces, suggesting that the EPS serves not only as the biofilm matrix but also as a primary adhesin. The temporality and polarity of VP-6 EPS expression substantially differ from those properties of Hyphomonas strain MHS-3 EPS expression.  相似文献   

13.
Extracellular polymeric substances were extracted from the bacterial strain Pseudomonas putida and the fungal species Aureobasidium pullulans using three different methods (formaldehyde–NaOH, ethylenediaminetetraacetic acid (EDTA) and cation-exchange-resin). The composition of the extracellular polymeric substances (EPS) was analysed by biochemical and high-resolution solid state 13C nuclear magnetic resonance (NMR) spectroscopic methods. The EPS yield was strongly dependent on the extraction method, with the formaldehyde–NaOH method showing the best extraction efficiency. The NMR method revealed that when using the EDTA extraction method, about 40% of the EDTA accumulated in the EPS and that was responsible for the apparent high extraction yields. EPS protein content determined by the NMR method was up to 30% higher than the protein content determined using the biochemical (Lowry) method for P. putida and for A. pullulans. The average protein carbon content determined by the NMR method was approximately 70% of the total carbon content. NMR results could be supported by elemental analysis, which showed a high nitrogen content (~10%) in the EPS. The carbohydrate carbon content detected with both methods in the cell aggregates and the EPS was approximately 20% in each. In this study, quantitative 13C cross-polarisation magic angle spinning NMR spectroscopy was conducted on unlabeled cell strains, and EPS and could be used to quantify protein and carbohydrate of different samples.  相似文献   

14.
Yang X  Teng F  Zeng H  Liu Y 《Biofouling》2012,28(5):417-431
The impact of cranberry juice was investigated with respect to the initial adhesion of three isogenic strains of the bacterium Burkholderia cepacia with different extracellular polymeric substance (EPS) producing capacities, viz. a wild-type cepacian EPS producer PC184 and its mutant strains PC184rml with reduced EPS production and PC184bceK with a deficiency in EPS production. Adhesion experiments conducted in a parallel-plate flow chamber demonstrated that, in the absence of cranberry juice, strain PC184 had a significantly higher adhesive capacity compared to the mutant strains. In the presence of cranberry juice, the adhesive capacity of the EPS-producing strain PC184 was largely reduced, while cranberry juice had little impact on the adhesion behavior of either mutant strain. Thermodynamic modeling supported the results from adhesion experiments. Surface force apparatus (SFA) and scanning electron microscope (SEM) studies demonstrated a strong association between cranberry juice components and bacterial EPS. It was concluded that cranberry juice components could impact bacterial initial adhesion by adhering to the EPS and impairing the adhesive capacity of the cells, which provides an insight into the development of novel treatment strategies to block the biofilm formation associated with bacterial infection.  相似文献   

15.
Epipelic diatoms are important constituents of estuarine microphytobenthic biofilms. Field‐based investigations have shown that the production of carbohydrates by such taxa is ecologically important. However, limited information exists on the dynamics of carbohydrate production by individual species of epipelic diatoms. The production of low and high molecular weight extracellular carbohydrates in axenic cultures of five species of benthic estuarine diatoms, Cylindrotheca closterium (Ehrenberg), Navicula perminuta (Grun.) in Van Heurck, Nitzschia frustulum (Kütz.) Grunow, Nitzschia sigma (Kütz.) Grunow, and Surirella ovata (Kütz.) Grunow, were investigated. All species produced colloidal (water‐soluble) carbohydrates during growth, with maximal production occurring during stationary phase. During logarithmic growth, approximately 20% of extracellular carbohydrates consisted of polymeric material (extracellular polymeric substances [EPS]), but during stationary phase, EPS content increased to 34%–50%. Pyrolysis–mass spectrophotometry analysis showed differences in the composition of EPS produced during logarithmic and stationary phase. All species synthesized glucan as a storage carbohydrate, with maximum glucan accumulation during the transition from log to stationary phase. Short‐term labeling with 14C‐bicarbonate found that between 30 and 60% of photoassimilates were released as colloidal carbohydrate, with EPS consisting of approximately 16% of this colloidal fraction. When cells were placed in darkness, EPS production increased, and between 85 and 99% of extracellular carbohydrate produced was polymeric. Glucan reserves were utilized in dark conditions, with significant negative correlations between EPS and glucan for N. perminuta and S. ovata. Under dark conditions, cells continued to produce EPS for up to 3 days, although release of low molecular weight carbohydrates rapidly ceased when cells were dark treated. Three aspects of EPS production have been identified during this investigation: (1) production during rapid growth, which differs in composition from (2) EPS directly produced as a result of photosynthetic overflow during growth limiting conditions and (3) EPS produced for up to 3 days in the dark using intracellular storage reserves (glucans). The ecological implications of these patterns of production and utilization are discussed.  相似文献   

16.
Halomonas eurihalina strain H-28 is a moderately halophilic bacterium that produces an extracellular polysaccharide not only in media with glucose but also in media supplemented with hydrocarbons (n-tetradecane, n-hexadecane, n-octane, xylene, mineral light oil, mineral heavy oil, petrol, or crude oil). In this study we investigated yield production, chemical composition, viscosity, and emulsifying activity of exopolysaccharides (EPS) extracted from the different media used. The largest amounts of biopolymer were synthesized in media with glucose and n-hexadecane. Chemical composition varied with culture conditions; thus EPS from cultures grown in the presence of hydrocarbons had lower contents of carbohydrates and proteins than EPS from media with glucose. However, the percentages of uronic acids, acetyls, and sulfates were always higher than glucose EPS. Crude oil was the substrate most effectively emulsified. All EPS were capable of emulsifying crude oil more efficiently than the three control surfactants tested (Tween 20, Tween 80, and Triton X-100). All polymers gave low viscosity solutions. EPS H28 could be attractive for application in the oil industry and/or in bioremediation processes, bearing in mind not only its functional properties, but also the capacity of producer strain H-28 to grow in the presence of high salt concentrations and oil substrates.  相似文献   

17.
In microbial communities, extracellular polymeric substances (EPS), also called the extracellular matrix, provide the spatial organization and structural stability during biofilm development. One of the major components of EPS is protein, but it is not clear what specific functions these proteins contribute to the extracellular matrix or to microbial physiology. To investigate this in biofilms from an extremely acidic environment, we used shotgun proteomics analyses to identify proteins associated with EPS in biofilms at two developmental stages, designated DS1 and DS2. The proteome composition of the EPS was significantly different from that of the cell fraction, with more than 80% of the cellular proteins underrepresented or undetectable in EPS. In contrast, predicted periplasmic, outer membrane, and extracellular proteins were overrepresented by 3- to 7-fold in EPS. Also, EPS proteins were more basic by ~2 pH units on average and about half the length. When categorized by predicted function, proteins involved in motility, defense, cell envelope, and unknown functions were enriched in EPS. Chaperones, such as histone-like DNA binding protein and cold shock protein, were overrepresented in EPS. Enzymes, such as protein peptidases, disulfide-isomerases, and those associated with cell wall and polysaccharide metabolism, were also detected. Two of these enzymes, identified as β-N-acetylhexosaminidase and cellulase, were confirmed in the EPS fraction by enzymatic activity assays. Compared to the differences between EPS and cellular fractions, the relative differences in the EPS proteomes between DS1 and DS2 were smaller and consistent with expected physiological changes during biofilm development.  相似文献   

18.
The limited database on cold-active extracellular proteases from marine bacteria was expanded by successful purification and initial biochemical and structural characterization of a family M1 aminopeptidase (designated ColAP) produced by the marine psychrophile Colwellia psychrerythraea strain 34H. The 71-kDa enzyme displayed a low optimum temperature (19 degrees C) and narrow pH range (pH 6 to 8.5) for activity and greater thermolability than other extracellular proteases. Sequencing of the gene encoding ColAP revealed a predicted amino acid sequence with the highest levels of identity (45 to 55%) to M1 aminopeptidases from mesophilic members of the gamma subclass of the Proteobacteria and the next highest levels of identity (35 to 36%) to leukotriene A(4) hydrolases from mammalian sources. Compared to mesophilic homologs, ColAP had structural differences thought to increase the flexibility for activity in the cold; for example, it had fewer proline residues, fewer ion pairs, and a lower hydrophobic residue content. In addition to intrinsic properties that determine enzyme activity and stability, we also investigated effects of extracellular polymeric substances (EPS) from spent culture medium of strain 34H on ColAP activity at an environmentally relevant temperature (0 degrees C) and at 45 degrees C (the maximum temperature for activity). In both cases, ColAP stability increased significantly in the presence of EPS, indicating the importance of considering environmentally relevant extrinsic factors when enzyme structure and function are investigated.  相似文献   

19.
The influencing factors of extracellular polysaccharide(EPS)produced from a strain of lactic acid bacteria(LAB L15)were studied by using the phenol-H2SO4 method.It was demonstrated that the strain produced EPS at the most amount when it was incubated for 40-48 h and when the pH value was 4 under 30℃.Glucose was the most suitable carbon source for LAB-producing EPS.The rough EPS was obtained from L15 culture after centrifugation,dialysis,deprotein,decoloration,and ethanol-precipitation.The sample was at least composed of two polysaccharides mat were completely different in molecular weight and the amount.The purified EPS was passed through the SephadexG-200 colunm and it showed that it was a sample purified by thin layer chromatography.  相似文献   

20.
A mutant of Streptococcus mutans, GS-5, which differed in extracellular polysaccharide (EPS) produced from sucrose, was used to study the role of EPS in the production of dental caries. The mutant proved to be identical to the parent strain in sugar fermentation, growth rate, and serotype. Strain GS-5 synthesized an EPS, which in electron micrographs appeared to be of fibrillar structure, whereas the mutant produced no fibrillar material but only a globular EPS. Analysis of the EPS revealed that about 30% of the glucose units in the GS-5 polymer carried (1-3)-like bonds either as branch points or as part of the linear backbone and that the mutant material contained only about 3% of these linkages. When grown in sucrose broth, the proportion of the mutant culture adherent to the glass vessel was dramatically less than that of the parent strain. Caries scores produced in conventional rats by the mutant were significantly lower than those obtained with the parent strain. Since the only difference discovered between strain GS-5 and the mutant was the inability of the mutant to synthesize either a fibrillar EPS or an EPS with more than about 3% (1-3)-like linkages, it was concluded that the fibrillar EPS of strain GS-5 contained about 30% (1-3)-like linkages and was necessary for adherence of the bacteria to surfaces and for production of dental caries in test animals.  相似文献   

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