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11.
一株反硝化菌的分离鉴定和系统发育分析   总被引:3,自引:0,他引:3  
从反硝化反应器中分离到一株异养型兼氧反硝化细菌,命名为菌株JIN1,分离菌株为革兰氏染色阴性杆状。茵落颜色为乳白色。该菌株能以硝酸钠为唯一氮源进行反硝化作用并产生亚硝酸。部分长度的16SrDNA序列分析表明,分离菌株JIN1与Aquaspirillum菌具有99%相似,与Microvirgulaaerodenitrificans菌具有99%相似。其生化性状与Aquaspirillum菌不相符。系统发育学分析表明菌株JIN1与Microvirgulaaerodenitrificans菌关系最近。故确认菌株JIN1属Microvirgulaaerodenitrificans菌。  相似文献   
12.
An aerobic bacterium, capable of degrading the new chloronicotine pesticide acetamiprid, was isolated from the sludge of pesticide factory after successive enrichment cultures and named strain FH2 which is a Gram-negative, rod-shaped, obligate aerobic org  相似文献   
13.
The dynamics of total and active microbial communities were studied in seawater microcosms amended with crude or diesel oil at different temperatures (25, 10 and 4 °C) in the presence/absence of organic fertilization (Inipol EAP 22). Total and hydrocarbon-degrading microbes were enumerated by fluorescence microscopy and Most Probable Number (MPN) method, respectively. Total (16S rDNA-based) vs. active (16S rRNA) bacterial community structure was monitored by Capillary-Electrophoresis Single Strand Conformation Polymorphism (CE-SSCP) fingerprinting. Hydrocarbons were analyzed after 12 weeks of incubation by gas chromatography-mass spectrometry. Total and hydrocarbon-degrading microbial counts were highly influenced by fertilization while no important differences were observed between temperatures. Higher biodegradation levels were observed in fertilized microcosms. Temperature and fertilization induced changes in structure of total bacterial communities. However, fertilization showed a more important effect on active bacterial structure. The calculation of Simpson's diversity index showed similar trends among temperatures whereas fertilization reduced diversity index of both total and active bacterial communities.  相似文献   
14.
Mishra RR  Prajapati S  Das J  Dangar TK  Das N  Thatoi H 《Chemosphere》2011,84(9):1231-1237
Two Gram (+) bacterial strains, BSB6 and BSB12, showing resistance and potential for Se(IV) reduction among 26 moderately halotolerant isolates from the Bhitarkanika mangrove soil were characterized by biochemical and 16S rDNA sequence analyses. Both of them were strictly aerobic and able to grow in a wide range of pH (4-11), temperature (4-40 °C) and salt concentration (4-12%) having an optimum growth at 37 °C, pH ∼7.5 and 7% salt (NaCl). The biochemical characteristics and 16S rDNA sequence analysis of BSB6 and BSB12 showed the closest phylogenetic similarity with the species Bacillus megaterium. Both the strains effectively reduced Se(IV) and complete reduction of selenite (up to 0.25 mM) was achieved within 40 h. SEM with energy dispersive X-ray and TEM analyses revealed the formation of nano size spherical selenium particles in and around the bacterial cells which were also supported by the confocal micrograph study. The UV-Vis diffuse reflectance spectra and XRD of selenium precipitates revealed that the selenium particles are in the nanometric range and crystalline in nature. These bacterial strains may be exploited further for bioremediation process of Se(IV) at relatively high salt concentrations and green synthesis of selenium nanoparticles.  相似文献   
15.
复合生物膜-活性污泥反应器同步脱氮除磷   总被引:2,自引:0,他引:2  
通过实验研究比较了复合生物膜-活性污泥反应器(HY)和传统活性污泥反应器(AS)的脱氮除磷效果。结果表明,在水力停留时间(HRT)16 h、污泥龄12~15 d、水温19~21℃、pH 6.3~7.8的条件下,复合生物反应器比活性污泥反应器运行更稳定,未发生污泥膨胀。在相同运行条件下,复合生物反应器对COD、TN和TP的去除率分别为95%、91%和98%,而活性污泥反应器对COD、TN和TP的去除率分别为85%、84%和90%。稳定工况下复合生物反应器的比硝化、比反硝化速率,比吸磷、比释磷速率均高于活性污泥反应器,且微生物相更加丰富。通过建立16S rDNA克隆文库发现生物膜和活性污泥的微生物群落结构均具有高度多样性,但生物膜微生物的微生物相比活性污泥更复杂。  相似文献   
16.
渤海排污口邻近海域异养细菌的组成与分布   总被引:1,自引:0,他引:1  
对渤海4个重点监测排污口(北塘、大蒲河、弥河和虞河)邻近海域异养细菌的组成和分布进行了调查研究。结果表明,分离到的各排污口邻近海域的细菌隶属于变形菌门(Proteobacteria)、厚壁菌门(Firmicutes)、放线菌门(Acti-nobacteria)和拟杆菌门(Bacteroidetes)4个细菌类群,其中变形菌门的细菌最丰富。各排污口的优势菌有所不同,北塘、弥河2个采样点的优势菌分别为Bacillus sp.、Pseudoalteromonas sp.,大蒲河采样点的优势菌为Vibrio sp.和Oceanospirillum sp.,虞河采样点的优势菌为 Shewanella sp.和 Bacillus sp.。多维尺度分析表明,北塘和虞河采样点的细菌种群特征较相近,细菌种群分布特征可能与排污口的海洋环境有一定的相关性。  相似文献   
17.
The metabolic fate of 14C-phenyl-labeled herbicide clodinafop-propargyl (CfP) was studied for 28 days in lab assays using a soil from Germany (Ap horizon, silt loam, and cambisol). Mineralization amounted to 12.40% of applied 14C after 28 days showing a distinct lag phase until day 7 of incubation. Portions of radioactivity extractable by means of 0.01 M CaCl2 solution (bioavailable fraction) decreased rapidly and were 4.41% after 28 days. Even immediately after application, only 57.31% were extracted with the aqueous solvent. Subsequent extraction using accelerated solvent extraction (ASE; acetonitrile/water 4:1, v/v) released 39.91% of applied 14C with day 0 and 26.16% with day 28 of incubation from the samples. Non-extractable portions of radioactivity thus, increased with time amounting to 11.99% (day 0) and 65.00% (day 28). A remarkable increase was observed between 14 and 28 days correlating with the distinct increase of mineralization. No correlation was found throughout incubation with general microbial activity as determined by DMSO reduction. Analysis of the CaCl2 and ASE extracts by radio-TLC, radio-HPLC and GC/MS revealed that CfP was rapidly cleaved to free acid clodinafop (Cf), which was further (bio-) transformed; DT50 values (based on radio-TLC detection of the parent compound) were far below 1 day (CfP) and about 7 days (Cf). TLC analysis pointed to 2-(4-hydroxyphenoxy)-propionic acid as further metabolite. Due to fractionation of non-extractable residues, most of the 14C was associated with fulvic and humic acids, portions in humin fractions and non-humics were moderate and low, respectively. Using a special strategy, which included pre-incubation of the soil with CfP and then mineralization of 14C-CfP as criterion, a microorganism was isolated from the soil examined. The microorganism grew using CfP as sole carbon source with concomitant evolution of 14CO2. The bacterium was characterized by growth on commonly used carbon sources and by 16S rDNA sequence analysis. The sequence exhibited high similarity with that of Rhodococcus wratislaviensis (99.56%; DSM 44107, NCIMB 13082).  相似文献   
18.
慢生根瘤菌交叉结瘤及其系统发育关系的研究   总被引:6,自引:1,他引:6  
选用包括6株花往根瘤菌[Bradyrhizobium sp.(Arachis)]在内的13株慢生根瘤菌,进行了6种豆科植物结瘤试验及共系统发育分析。研究结果表明,慢生根瘤菌与试验的豆科宿主植物间普遍存在交叉结瘤,还发现有些菌株在原宿主外的豆科植物根部形成类根瘤的现象。16S rDNA和23S rDNA的PCR-RFLP分析揭示出这些菌株rDNA基因的差异性,不同宿主来源的慢生根瘤菌株可以同属一个rDNA类型,而从同一宿主中分离的根瘤菌菌株可分属多种不同的rDNA类型,研究结果表明,采用rDNA PCR-RFLP等遗传背景分析的手段,可能筛选出广谱的根瘤菌力株,表4参8。  相似文献   
19.
通过富集不同来源堆肥过程中的腐殖质还原菌,并分析比较其异化铁还原能力差异,发现其电子转移能力从大到小依次为:蛋白类>纤维素类>木质素类.相关性分析表明,Leucobacter、Clostridium sensu stricto和Sporosarcina是极显著影响异化铁还原的腐殖质还原菌属.利用冗余分析探究关键腐殖质还原菌与堆肥过程微环境因子的响应关系,结果发现可溶性有机氮是影响这些关键腐殖质还原菌变化的主要微环境因素.在此基础上,基于堆肥微环境因子与关键腐殖质还原菌菌群结构之间的响应关系,提出一种促进异化铁还原相关的腐殖质还原菌生长的调控方法.本研究可以深入了解堆肥中影响腐殖质还原菌群落的关键因素,而且对于环境中污染物生物地球化学循环也具有重要的生态学意义.  相似文献   
20.
碧流河水库细菌群落结构特征及其关键驱动因子   总被引:9,自引:6,他引:3  
王欢  赵文  谢在刚  魏杰  姜洋 《环境科学》2018,39(8):3660-3669
为了解碧流河水库细菌群落结构及其多样性变化,探讨环境因子对其的影响,于2016~2017年应用16S r DNA高通量测序技术,分析比较了碧流河水库一年周期内4个季节的细菌群落结构及其多样性差异,使用冗余分析(redundancy analysis,RDA)探讨水体环境因子与细菌群落结构及其多样性的关系.结果表明,全年碧流河水库细菌群落多样性指数(ShannonWiener指数)平均达6.9,冬季夏季春季秋季.序列比对结果显示,除了分类地位不明确的菌群和稀有菌群外,共发现了细菌44门115纲184目368科865属,优势菌门为变形菌门Proteobacteria 34.16%,蓝菌门Cyanobacteria 24.35%,放线菌门Actinobacteria 13.35%,拟杆菌门Bacteroidetes 12.42%.优势菌门变形菌门中优势菌纲为β-变形菌纲β-Proteobacteria18.34%,优势菌属为unidentified_Chloroplast 17.73%;RDA结果表明不同菌群受环境因子影响不同,悬浮物(TSS)、透明度(SD)、酸碱度(p H)、活性磷(ADP)、溶氧(DO)、总磷(TP)、亚硝酸氮(NO-2-N)为影响群落分布主要的环境因子,其中夏季菌群与NO-2-N、ADP、TP和TSS显著正相关.  相似文献   
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