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101.
Bacterial biofilm development is conditioned by complex processes involving bacterial attachment to surfaces, growth, mobility, and exoproduct production. The marine bacterium Pseudoalteromonas sp. strain D41 is able to attach strongly onto a wide variety of substrates, which promotes subsequent biofilm development. Study of the outer‐membrane and total soluble proteomes showed ten spots with significant intensity variations when this bacterium was grown in biofilm compared to planktonic cultures. MS/MS de novo sequencing analysis allowed the identification of four outer‐membrane proteins of particular interest since they were strongly induced in biofilms. These proteins are homologous to a TonB‐dependent receptor (TBDR), to the OmpW and OmpA porins, and to a type IV pilus biogenesis protein (PilF). Gene expression assays by quantitative RT‐PCR showed that the four corresponding genes were upregulated during biofilm development on hydrophobic and hydrophilic surfaces. The Pseudomonas aeruginosa mutants unable to produce any of the OmpW, OmpA, and PilF homologues yielded biofilms with lower biovolumes and altered architectures, confirming the involvement of these proteins in the biofilm formation process. Our results indicate that Pseudoalteromonas sp. D41 shares biofilm formation mechanisms with human pathogenic bacteria, but also relies on TBDR, which might be more specific to the marine environment.  相似文献   
102.
采用富集培养法从工业油污土壤中分离到1株能以石油为惟一碳源而生长的细菌菌株,采用正交设计实验对该菌株的降解条件进行了初步研究。结果表明,最佳降解条件为NH_4Cl 4.0 g/LL,K_2HPO_4 1.5 g/L,pH 8.0,NaCl 15.0 g/L。在最佳条件下,浓度为1 mL/L的原油可在4 d内降解50%以上。  相似文献   
103.
Stark spectroscopy is a powerful technique to investigate the electrostatic interactions between pigments as well as between the pigments and the proteins in photosynthetic pigment–protein complexes. In this study, Stark spectroscopy has been used to determine two nonlinear optical parameters (polarizability change Tr(Δα) and static dipole-moment change |Δμ| upon photoexcitation) of isolated and of reconstituted LH1 complexes from the purple photosynthetic bacterium, Rhodospirillum (Rs.) rubrum. The integral LH1 complex was prepared from Rs. rubrum S1, while the reconstituted complex was assembled by addition of purified carotenoid (all-trans-spirilloxanthin) to the monomeric subunit of LH1 from Rs. rubrum S1. The reconstituted LH1 complex has its Qy absorption maximum at 878 nm. This is shifted to the blue by 3 nm in comparison to the isolated LH1 complex. The energy transfer efficiency from carotenoid to bacteriochlorophyll a (BChl a), which was determined by fluorescence excitation spectroscopy of the reconstituted LH1 complex, is increased to 40%, while the efficiency in the isolated LH1 complex is only 28%. Based on the differences in the values of Tr(Δα) and |Δμ|, between these two preparations, we can calculate the change in the electric field around the BChl a molecules in the two situations to be E Δ ≈ 3.4 × 105 [V/cm]. This change can explain the 3 nm wavelength shift of the Qy absorption band in the reconstituted LH1 complex.  相似文献   
104.
Bacterium MEY43, an isolate from soil, produced aldehyde oxidase when it was cultivated in a medium containing methanol as a sole source of carbon and energy. The methylotrophic bacterium was identified as Brevibacillus sp. Its cultivation in media containing other substrates, such as ethanol and glucose, resulted in little production of the enzyme. Aldehyde oxidase purified from a cell-free extract of the bacterium was a hetero-trimeric protein comprised of large, medium, and small subunits with molecular masses of 87, 35, and 19 kDa, respectively. Its UV/visible spectrum and the presence of molybdenum, 5′-CMP, flavin adenine dinucleotide, iron, and acid-labile sulfur suggested that the enzyme belonged to the xanthine oxidase family. The enzyme acted on a wide range of aliphatic and aromatic aldehydes. The K m value for formaldehyde was 32 mM, whereas those for the other aldehydes tested were below 0.2 mM. When 10 mM glutaraldehyde was treated with 2.0 units of the enzyme ml−1 in the presence of 100 units ml−1 catalase for 120 min, the concentration of the aldehyde decreased to below a detectable level.  相似文献   
105.
海绵细菌B25W最佳产抗培养基及发酵条件的研究   总被引:2,自引:2,他引:0  
从辽宁海域的繁茂膜海绵(Hymeniacidonperleve)中分离到1株解淀粉类芽孢杆菌(Paenibacillusamyloliquefaciens),定名为海绵细菌B25W。它产生的抗生素用白色念珠菌(Candidaalbicans)为指示菌,通过单因子和均匀设计实验,发现菌株最佳产抗摇瓶发酵培养基:玉米面0.34%,豆饼粉1.66%,葡萄糖0.1%,ZnSO40.04%,MgSO40.02%,KH2PO40.04%;发酵条件:种龄12h,接种量10%,发酵时间20h,初始pH6.0,250mL三角瓶内含25mL培养基,往复式摇床,116次/min,振幅11cm,培养温度28℃。应用二剂量法(以制霉菌素为标样)测定B25W抗生素的相对效价为13680u/mL,比优化前效价(8444u/mL)提高了62%。  相似文献   
106.
107.
从湖南、云南采集的19份酸性土壤样品分离到50株放线菌,在pH4.5和pH7.0的培养基上都能生长.从新疆、青海、云南的14份碱性土壤样品中分离到38株放线菌,在pH10.0和pH7.0的培养基上均能生长.因此,这些菌株属于中度嗜酸或中度嗜碱放线菌.利用脉冲电泳技术和普通凝胶电泳在其中12株放线菌中检测到线型质粒,其中3株放线菌中检测到环型质粒.这是首次在中度嗜酸和中度嗜碱的放线菌中报道线型和环型质粒.  相似文献   
108.
含奥氏酮嗜盐紫色硫细菌的分离鉴定及系统发育分析   总被引:4,自引:1,他引:3  
[目的]为挖掘我国紫色硫细菌物种和光合蛋白基因资源.[方法]采用Pfennig紫色硫细菌无机选择性培养基和琼脂稀释法.[结果]从青岛东风盐场分离获得一株含奥氏酮、耐高浓度硫化物、嗜盐耐碱紫色硫细菌菌株283-1.该菌株能氧化硫化物产生硫粒储存在细胞内、嗜盐、细胞含有奥氏酮类胡萝卜素、细菌叶绿素a强吸收峰位于830 nm处、运动、不产生气囊,表明属于Marichromatium属.16S rDNA序列同源性比较和系统发育分析也表明这一点.但该菌株能在1%~15%NaCl、7.5 mmol/L 高浓度硫化物、45℃、5000lux、pH9.0条件下生长良好,能很好的光同化C3和C4有机酸和葡萄糖酸钠等特性,与Marichromatium属4个种有明显不同.[结论]菌株283-1是Marichromatium属一个新分离物,编号 Marichromatium sp.283-1.  相似文献   
109.
110.
紫细菌是研究细菌光合作用的重要生物。介绍了紫细菌光合机构捕光色素蛋白复合体Ⅰ(light-harvesting I)、捕光色素蛋白复合体Ⅱ(light-harvesting II)和光化学反应中心(reaction center)的结构, 并探讨了其光合作用基因的转录调控机制, 重点阐述了PpsR/AppA系统对紫细菌光合作用基因的转录调控。  相似文献   
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