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41.
Polychlorinated biphenyls (PCBs) are typical organic contaminants in the environment. It is indicated that plants and soil microorganisms have a positive synergistic effect on the remediation of PCB-contaminated soil. To investigate the effect of intercropping on arbuscular mycorrhizal (AM) fungal colonization and PCB remediation, a pot-cultivation experiment with two intercropping treatments, corn (Zea mays L.) / ryegrass (Lolium perenne L.) and corn/alfalfa (Medicago sativa L.), and a corn monoculture was conducted in a greenhouse. All treatments were inoculated with Funneliformis mosseae M47V. Plant biomass, root mycorrhizal colonization rate, concentration of PCBs and their homologs in soil, 16S rDNA gene abundance, and community composition measured by Terminal Restriction Fragment Length Polymorphism (T-RFLP) were determined after harvesting the plants. Intercropping significantly increased the root mycorrhizal colonization rate and plant biomass of corn (P < 0.05), as well as the available N content of the soil. A significant difference of the bacterial community composition was found among different treatments (P < 0.05). Compared with corn monoculture, corn/alfalfa intercropping significantly increased soil bacteria abundance (P < 0.05). The dissipation rates of total PCBs, as well as that of penta-chloro biphenyls were significantly increased in the intercropping treatments, when compared to the corn monoculture treatment. Moreover, corn/ryegrass intercropping has a significantly positive effect on the dissipation of tri-chloro biphenyls. Non-metric multidimensional scaling (NMDS) analysis indicated that the PCBs homologues composition were significantly correlated with the relative abundance of 128 bp and 148 bp T-RFs. Corn intercropping with ryegrass or alfalfa has a positive effect on root mycorrhizal colonization rate and plant biomass of corn. Inoculation of AM fungi in intercropping treatments significantly improved the efficiency of PCB remediation by promoting bacterial abundance and shifting the bacterial community composition. In conclusion, intercropping combined with AM fungi have positive synergistic effects on the remediation of PCB-contaminated soils. © 2018 Science Press. All rights reserved.  相似文献   
42.
硫铁填料和微电流强化再生水脱氮除磷的研究   总被引:5,自引:0,他引:5  
为提高再生水质量,在不同C/N和HRT条件下,对比分析硫铁复合填料和微电流作用强化再生水深度脱氮除磷效果.结果表明,硫铁复合填料和微电流作用均能够强化氮、磷的深度去除效果,且二者结合能够使反硝化系统pH值稳定在7.2~8.5之间.系统中TN主要靠异养反硝化、氢自养反硝化和硫自养反硝化作用去除,94.04%的TP是以生成磷酸铁沉淀的形式去除.分别从填料上取生物膜,进行Miseq高通量测序,构建细菌16S rRNA基因克隆文库.结果发现,在仅有海绵铁作用系统中,同时具有异养反硝化和氢自养反硝化功能的细菌所占比例达到29.47%;硫铁复合填料和硫铁微电流作用系统中,具有硫自养反硝化功能的Thiobacillus(硫杆菌属)所占比例分别达到60.47%和40.62%.因此,硫铁复合填料和微电流作用用于强化再生水深度脱氮除磷具有明显的优势.  相似文献   
43.
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   
44.
从岳阳巴陵石化公司环己酮生产车间总出水口的污泥中筛选到一株环己酮降解菌株,菌号为JDM-3-12;该菌能以环己酮为唯一碳源且能忍受5000 mg/L的环己酮,当环己酮的质量浓度为2000 mg/L时,在温度为30℃,转速为150 r/m in,pH=7的条件下,72小时内该菌株对环己酮的降解率达到97.91%。通过形态观察、生理生化特征检测和基于16S rRNA基因序列的系统发育分析,初步鉴定其为赤红球菌(Rhodococcus ruber)中的一个菌株,该菌最适生长温度为35℃,最适生长pH 7。  相似文献   
45.
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   
46.
基于Miseq测序与碳平衡的生物滴滤床降解甲苯研究   总被引:1,自引:0,他引:1       下载免费PDF全文
蒋海涛  龙超  翟建 《环境工程》2016,34(8):114-119
在甲苯进气浓度为1 640 mg/m3,进气负荷为198.11 g/(m3·h),系统停留时间(EBRT)为30 s的条件下,生物滴滤床对甲苯的去除率达到84%,去除负荷为166.41 g/(m3·h)。碳平衡计算表明:22.27%的输入碳源为微生物所同化,59.52%的碳以CO2形式排出,仅有2.46%的碳溶于营养液中。在出口气体中,以CO2形式存在的碳占79.08%,其余则以甲苯形式存在。经Miseq-16S rRNA测序平台分析可知,该生物反应器中的优势菌属为假单胞菌、丛毛单胞菌和红球菌属,优势菌门为变形菌门、拟杆菌门和酸杆菌门。其中,变形菌门和拟杆菌门在反应器中所占比例在经过驯化之后显示出相反的变化趋势。  相似文献   
47.
从不同反应器筛选、鉴别好氧反硝化菌   总被引:2,自引:5,他引:2       下载免费PDF全文
采用2个序批式反应器A和B,以硝态氮为唯一氮源,采用间歇曝气,以驯化、富集耐氧脱氮污泥.反应器A,其pH约为6.3,ρ(DO)为2.2~6.1 mg/L,碳氮比(ρ(C)/ρ(N),ρ(C)以ρ(CODCr)计)约为9;反应器B,其pH约为6.8~7.8,ρ(DO)为 2.2~3.0 mg/L,ρ(C)/ρ(N)约为15.2个反应器的ρ(NO3--N)均保持为80 mg/L.当2个反应器的总氮去除率达到60%以上,则认为完成好氧反硝化菌的富集.从2个反应器中共筛选得到20株BTB阳性菌,其中8株菌株的DNA样品经PCR成功扩增,进行16S rRNA测序.测序结果提交GenBank进行Blast同源性检索,并分析比对鉴别,判断8株菌株分属于假单胞菌(Pseudomonas),戴尔福特菌(Delftia),草螺菌(Herbaspirillum)和丛毛单胞菌(Comamonas)菌属.反硝化性能测定证实8株菌株均为好氧反硝化菌.   相似文献   
48.
碧流河水库细菌群落结构特征及其关键驱动因子   总被引:3,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   
49.
在中药废水生物活性污泥群落DGGE解析过程中,为了探讨16S rDNA通用引物的扩增效率和对污泥细菌群落的表征能力,选用包括简并性引物在内的11对通用引物扩增16S rDNA序列的4个可变区,并应用DGGE图谱评价不同引物的扩增效率和微生物种群多样性.结果表明,采用不同引物对进行DGGE分析时,微生物种群多样性存在着显...  相似文献   
50.
Temporal changes of dominant microbial populations in groundwater in response to the leachate from Shanghai Laogang Landfill were investigated. Concentrations of dissolved redox-relevant species in groundwater suggested that the dominating redox process had changed from denitrification to methane-production/sulfate-reduction due to landfilling. Dominant microbial populations were determined using restriction fragment length polymorphism(RFLP) analyses of 16S rRNA gene libraries, which were further studied by sequencing and phylogenetic analyses. The results indicated that obvious shifts of dominant microbial populations had occurred in groundwater in response to the pollution of leachate. The closest relatives of some dominant clones are accordant with the dominating redox processes determined by hydrochemical analyses, based on the GenBank‘s indications on the ability to perform redox reactions.  相似文献   
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