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1.
生物膜(biofilm,BF)是细菌为了适应生存环境的需要而形成的与浮游细胞相对应的生存形式,是细菌生来具有的本领。不同的细菌形成生物膜的能力是不同的,铜绿假单胞菌极易形成生物膜,临床许多生物医学材料相关感染和某些慢性顽固性感染性疾病都与之密切相关,在生物膜中的细菌不仅耐抗生素还可耐抗体的杀菌作用,危害性严重。  相似文献   

2.
铜绿假单胞菌超微结构观察佳木斯医学院附一院感染科154002高庆伟郭丽曼齐淑芳邱守义佳木斯医学院微生态学教研室杨景云华西医科大学传染科黄安华曹钟梁雷秉钧PA做为呼吸道感染的重要条件致病菌,广泛分布于自然界,亦常存在于上呼吸道、肠道、皮肤等处。可以通过...  相似文献   

3.
铜绿假单胞菌(Pseudomonas aerugionsa)的外排泵系统RND是它产生耐重金属离子胁迫的一个重要原因。阐述了编码RND外排泵czcCBA基因的作用机制,以期为下一步工作奠定基础。  相似文献   

4.
铜绿假单胞菌最佳电转化条件的研究   总被引:5,自引:0,他引:5  
以临床分离的一株铜绿假单胞菌 (Pseudomonasaeruginosa)PA68作受体菌 ,将具有卡那霉素抗性标记的质粒pSMC2 8通过电转化导入到受体菌中 ,研究细胞生长状态、电击电压、细胞浓度、感受态细胞的贮备方式对转化效率的影响。结果表明 ,在细胞生长至OD5 40 =0 7~ 0 8时收集菌体 ,在低温 (2℃ )条件下 ,制备浓度为 10 11个细胞 mL的感受态细胞 ,在较高的电压 (2 6kV)电击下 ,能获得较高的转化效率。最高可达 1 68× 10 8个转化子 μgDNA(CFU μgDNA)。用此优化的转化条件 ,在国际上首次成功地将Mu转座复合物导入到P .aeruginosa中 ,并获得 2 4× 10 4 CFU μgDNA的高转化效率。由于Mu转座重组技术具有随机单点插入的优点 ,克服了传统转座子能在染色体上迁移的缺点 ,保证了表型的改变与转座子插入位点所在的基因突变的一一对应关系 ,为进一步研究P .aerugi nosa的基因组功能奠定基础  相似文献   

5.
6.
双组分系统是存在于原核和少部分真核生物细胞中的信号转导系统,主要由组氨酸蛋白激酶和反应调节蛋白组成,通过感应外界环境信号、信号输入、磷酸基团传递、信号输出等环节调节基因表达,使细胞能更加适应环境变化。铜绿假单胞菌为条件致病菌,其双组分系统构成多样、功能复杂且参与介导耐药性产生,因此铜绿假单胞菌的双组分系统日益引起人们关注。本文对铜绿假单胞菌双组分系统的组成、信号转导机制、种类、研究方法及其临床意义进行了综述。  相似文献   

7.
铜绿假单胞菌外毒素A(P .aeruginosaExotoxinA ,PEA)是该菌最重要的致病、致死性物质。目前对PEA已经进行了深入的理论研究 ,PEA的结构、生物学活性以及医学应用前景都已比较明确 ,从而推动了PEA的生产和纯化研究。PEA在天然情况下产量极低 ,通常每毫升培养物中PEA的产量在纳克水平以下。大量制备高纯度PEA的工作有赖于高效表达性工程菌株的建立。本研究将构建好的 pMAL PEA原核分泌型表达载体转化大肠杆菌BL2 1,利用摇瓶发酵研究PEA工程菌的最优表达条件 ,摇瓶发酵的最优培养条件为 :温度 30℃ ,摇床转速16 0r/min ,在含 0 …  相似文献   

8.
铜绿假单胞菌分型研究进展   总被引:4,自引:0,他引:4  
铜绿假单胞菌(特别是多重耐药菌株)是引起医院内感染,甚至大规模暴发流行的重要条件致病菌,本文对铜绿假单胞菌流行病学研究常用的两种分型方法(表型分型法及基因分型法)的研究现况和进展进行了简要介绍。  相似文献   

9.
假单胞菌胞外多糖发酵条件的研究   总被引:6,自引:0,他引:6  
研究了假单胞菌(Pseudomonassp.6)利用木糖产胞外多糖的发酵条件。实验表明KH2PO4,O2和高碳氮比对多糖合成有促进作用,在发酵后期补加木糖有助于多糖产量的提高  相似文献   

10.
外毒素A(PEA)是铜绿假单胞菌最主要的一种毒力因子,它具有ADP-核糖基化转移酶活性,通过对延伸因子-2(eEF-2)的ADP-核糖基化抑制细胞的的蛋白质合成而导致细胞死亡。PEA由613个氨基酸组成,分子量66kD;其编码结构基因toxA位于细菌染色体上,为单一顺反子。本文着重综述近年来对PEA的基因表达及表达调控的研究进展,为利用基因工程手段获得高纯度PEA的工作理清一条思路。  相似文献   

11.
Our results demonstrated that Pseudomonas aeruginosa serine protease IV degraded apolipophorin III from the haemolymph of Galleria mellonella larvae. ApoLp-III protein was degraded in a stepwise manner. Four intermediate forms of 15, 13.3, 11.9 and 9.5 kDa were detected after 30 min digestion while only one of 5.6 kDa was released after 1-h incubation time. N-terminal amino acid sequence analysis of 5.6 kDa peptide revealed that it was released from apoLp-III after cleavage between lysine 70 and 71. ApoLp-III degradation by protease IV was inhibited by 1 mM TLCK but not 1 mM EDTA, additionally demonstrating that digestion was catalysed by a serine protease. Our data also indicated apoLp-III degradation in vivo during P. aeruginosa infection of G. mellonella larvae.  相似文献   

12.
A protease with staphylolytic activity from Pseudomonas aeruginosa PAKS I   总被引:1,自引:0,他引:1  
The supernatant from broth cultures of Pseudomonas aeruginosa PAKS I contains two different enzymes with staphylolytic activity. One of them, namely staphylolytic enzyme, seems to be specific for glycine-rich cross-links present in the cell wall of different Gram-positive bacteria and has been previously characterized. In addition to the staphylolytic activity, the second protein which we propose to be a staphylolytic protease, has proteolytic activity against casein. This enzyme is approximately 33 kDa, has an isoelectric point ranging from 7.3 to 8.1 and an optimum pH value of 8.0 for casein hydrolysis. Staphylolytic protease was detected in the extracellular medium after 12 h of cell growth. Immunocytochemical studies suggest that the protease is located within the periplasmic space of P. aeruginosa.  相似文献   

13.
The extracellular protease of Pseudomonas fluorescens NC 3 was optimally active at 40°C in a reaction mixture containing: 50 mM HEPES (N-2-hydroxyethylpiperazine-N′-2-ethanesulfonic acid) buffer (pH 6.6), 0.5 mM CaCl2, and 25 mg hide powder azure in 5 ml total volume. Divalent cation chelators, i.e., EDTA, o-phenanthroline, citrate or phosphate, inhibited the enzyme. Protease production by P. fluorescens NC 3 was initiated during late-logarithmic-growth phase in a sodium caseinate medium and reached its maximum at the onset of the stationary phase.  相似文献   

14.
15.
An alkaline protease produced by Pseudomonas aeruginosa MN1, isolated from an alkaline tannery waste water, was purified and characterized. The enzyme was purified 25-fold by gel filtration and ion exchange chromatography to a specific activity of 82350 U mg−1. The molecular weight of the enzyme was estimated to be 32000 daltons. The optimum pH and temperature for the proteolytic activity were pH 8.00 and 60°C, respectively. Enzyme activity was inhibited by EDTA suggesting that the preparation contains a metalloprotease. Enzyme activity was strongly inhibited by Zn2+, Cu2+ and Hg2+(5 mM), while Ca2+ and Mn2+ resulted in partial inhibition. The enzyme is different from other Pseudomonas aeruginosa alkaline proteases in its stability at high temperature; it retained more than 90% and 66% of the initial activity after 15 and 120 min incubation at 60°C. Journal of Industrial Microbiology & Biotechnology (2000) 24, 291–295. Received 09 June 1999/ Accepted in revised form 24 January 2000  相似文献   

16.
The feasibility of the simultaneous production of polyhydroxyalkanoates (PHAs) and rhamnolipids, as a novel approach to reduce their production costs, was demonstrated by the cultivation of Pseudomonas aeruginosa IFO3924. Fairly large amounts of PHAs and rhamnolipids were obtained from the bacterial cells and the culture supernatant, respectively. Decanoate was a more suitable carbon source than ethanol and glucose for the simultaneous production, although glucose was suitable for cell growth without an induction period under pH control. The kind of carbon source affected PHA monomer composition markedly and PHA molecular weight slightly. Monorhamnolipids and dirhamnolipids were included in the rhamnolipids extracted from the culture supernatant using decanoate, glucose, or ethanol as the carbon source. Both PHAs and rhamnolipids were synthesized after the growth phase. PHA content in the cell reached a maximum when the carbon source was exhausted. After exhaustion of the carbon source, PHA content decreased rapidly, but rhamnolipid synthesis, which followed PHA synthesis, continued. This resulted in a time lag for the attainment of maximum levels of PHAs and rhamnolipids. The reusability of the cells used in rhamnolipid production was evaluated in the repeated batch culture of P. aeruginosa IFO3924 for the simultaneous production of PHAs and rhamnolipids. High concentrations of rhamnolipids in the culture supernatant were attained at the end of both the first and second batch cultures. High PHA content was achieved in the resting cells that were finally harvested after the second batch. Simultaneous production of PHAs and rhamnolipids will enhance the availability of valuable biocatalysts of bacterial cells, and dispel the common belief that the production cost of PHAs accumulated intracellularly is almost impossible to become lower than that of cells themselves.  相似文献   

17.
Abstract The structures of O-specific polysaccharides obtained by mild acid degredation of lipopolysaccharides (LPS) from seven Pseudomonas aeruginosa Fisher's immunotypes have been studied. The polysaccharides consist mainly of monoamino and diamino sugars, frequently also carrying acidic functions. Some of the sugars were detected in nature for the O-specific polysaccharides of the immunotypes 2, 3, 4, 5 and 6 are identical to those of the polysaccharides of the 011; 0(2a)2c; 01; 010a, 10b and 07a, 7d Lányi-Bergan serological subgroups respectively, whereas no analogues have been found for the immunotypes 1 and 7. Some cross-reactions between the LPS of different immunotypes were observed in passive haemagglutination tests; the results of inhibition of passive haemagglutination and agar gel immunoprecipitation point, however, to a specificity of the LPS. Many of the LPS of the seven Pseudomonas aeruginosa immunotypes manifest rather a high cross-protective activity in active immunization tests in mice. The nature of the cross-protective activity of the LPS is discussed.  相似文献   

18.
19.
Aim: To boost short‐chain‐length‐long‐chain‐length polyhydroxyalkanoate (SCL‐LCL‐PHA) co‐polymer yield in Pseudomonas aeruginosa MTCC 7925 by manipulating culture conditions. Methods and Results: Stationary phase culture of P. aeruginosa MTCC 7925 was subjected to various doses of different carbons and, N and P deficiencies. Enhanced co‐polymer yield was recorded under ethanol‐ and glucose‐supplemented cultures. Interaction of ethanol with N‐deficiency boosted co‐polymer accumulation maximally. Conclusions: The sludge‐isolated P. aeruginosa MTCC 7925 demonstrated good capability to synthesize SCL‐LCL‐PHA co‐polymer from unrelated carbon sources. Supplementation of ethanol under N‐deficiency boosted the co‐polymer yield up to 69% of dry cell weight, which is significantly higher when compared with other SCL‐MCL‐PHA co‐polymer accumulating bacterial species. Significance and Importance of the Study: This is the first report on P. aeruginosa MTCC 7925, which is capable of accumulating LCL 3‐hydroxyhexadecanoate and 3‐hydroxyoctadecanoate units with SCL 3‐hydroxybutyrate and 3‐hydroxyvalerate as constituents of PHAs. This opens up new possibilities for various industrial applications owing to the superior properties of this new co‐polymer.  相似文献   

20.
Abstract Pyoverdine, the yellow-green fluorescent pigment produced by Pseudomonas aeruginosa , is a highly efficient siderophore. Pyoverdine-deficient ( pvd ) mutants of P. aeruginosa PAO isolated after mutagenesis were non-fluorescent and unable to grow in the presence of 2.8 mM ethylenediamine-di-( o -hydroxyphenylacetate) (EDDHA). Addition of purified pyoverdine to media containing EDDHA restored growth of pvd mutants. 6 pvd mutations were mapped between catA and mtu -9002 (at 65–70 min on the chromosome map) by R68.45-mediated conjugation. 2 slightly leaky pvd mutations were localised between argC and strA (at 35 min) by transduction. Thus, we have identified at least 2 genes or gene clusters required for pyoverdine production in P. aeruginosa .  相似文献   

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