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11.
The aim of this study was to investigate the bacterial communities on paclobutrazol [(2RS, 3RS)-1-(4-Chlorophenyl)-4, 4-dimethyl-2-(1H-1,2,4-triazol-1-yl) pentan-3-ol]–applied agricultural soils by denaturing gradient gel electrophoresis (DGGE) of polymerase chain reaction (PCR) amplified 16S rDNA gene fragments. Three different agricultural soil samples were collected from paclobutrazol applied mango and waxapple orchards, peanut fields and untreated rice fields as a control for DGGE analysis. The DGGE pattern of PCR- generated 16S rDNA gene fragments indicated that the bacterial populations from four paclobutrazol–applied soils of peanut fields were closely related to each other and two paclobutrazol–applied soils of mango and waxapple orchards harbored closely related bacterial communities. But, paclobutrazol–free agricultural soils comprised relatively a different bacterial group. However, the bacterial populations of mango and waxapple orchard are completely different from the bacterial communities of peanut field. Further purification and sequence analysis of 40 DGGE bands followed by phylogenetic tree assay showed similar results that soil bacteria from paclobutrazol applied mango and waxapple orchard are phylogenetically related. Based on the phylogenetic analysis, the clone M-4 was clad 100 % (bootstrap value) with Mycobacterium sp. The Mycobacterium sp. has been proved to degrade the phenolic compounds such as phenol, 4-chlorphenol, 2,4-dichlorophenol and paclobutrazol molecule containing chlorobenzene ring.  相似文献   
12.
为了提高污泥水解酸化过程中的挥发酸产量,获取污水脱氮除磷所需的内碳源,以深圳市罗芳污水厂的二沉池污泥为研究对象,采用不同的碱量对其进行预处理。通过测定碱预处理污泥水解酸化过程中的挥发酸浓度,并采用聚合酶链式反应-变性梯度凝胶电泳(polymerase chain reaction denature gradient gel electrophoresis,PCR-DGGE)技术对参与碱预处理污泥水解酸化产酸过程的主要微生物种群进行分析,结果表明,当碱投加量为0.20 g NaOH/g VSS时,初始溶出的蛋白浓度为1 780 mg/L;水解酸化15 d时,挥发酸总量达到3 473 mg/L;参与产酸的主要细菌属于Firmicutes、Proteobacteria、Bacteroidetes三个门类。  相似文献   
13.
高效氨氧化菌群富集、驯化及其动态变化规律分析   总被引:2,自引:2,他引:0  
利用选择性培养基对氨氧化菌群进行了连续驯化,得到了氨氮去除效率稳定的氨氧化菌群。采用平板菌落计数法结合聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE)技术考察了氨氧化菌群在连续传代过程中数量及群落结构的动态变化,并考察了pH值、碳源(HCO3-)浓度和氨氮浓度等因素对氨氧化菌群去除氨氮效率的影响。结果表明,通过连续驯化,氨氧化菌的比例由最初的1.8%提高到了31.3%。在碳源浓度为1.5 mg/L,NH4+-N初始浓度为200 mg/L,pH值为8的条件下,菌群对氨氮的去除率达99%以上。  相似文献   
14.
Triclopyr is a commonly used herbicide in the control of woody plants and can exhibit toxic effects to soil microorganisms. However, the impact on soils invaded by plant exotics has not yet been addressed. Here, we present the results of an 18-month field study conducted to evaluate the impact of triclopyr on the structure of fungal and bacterial communities in soils invaded by Acacia dealbata Link, through the use of denature gradient gel electrophoresis. After triclopyr application, analyses of bacterial fingerprints suggested a change in the structure of the soil bacterial community, whereas the structure of the soil fungal community remained unaltered. Bacterial density and F:B ratio values changed across the year but were not altered due to herbicide spraying. On the contrary, fungal diversity was increased in plots sprayed with triclopyr 5 months after the first application. Richness and diversity (H´) of both bacteria and fungi were not modified after triclopyr application.  相似文献   
15.
Biostimulation, bioaugmentation and dual-bioaugmentation strategies were investigated in this study for efficient bioremediation of water co-contaminated with 1,2-dichloroethane (1,2-DCA) and heavy metals, in a microcosm set-up. 1,2-DCA concentration was periodically measured in the microcosms by gas chromatographic analysis of the headspace samples, while bacterial population and diversity were determined by standard plate count technique and Polymerase chain reaction and denaturing gradient gel electrophoresis (PCR–DGGE) analysis, respectively. Dual-bioaugmentation, proved to be most effective exhibiting 22.43%, 26.54%, 19.58% and 30.49% increase in 1,2-DCA degradation in microcosms co-contaminated with As3+, Cd2+, Hg2+ and Pb2+, respectively, followed by bioaugmentation and biostimulation. Dual-bioaugmented microcosms also exhibited the highest increase in the biodegradation rate constant (k1) resulting in 1.76-, 2-, 1.7- and 2.1-fold increase in As3+, Cd2+, Hg2+ and Pb2+ co-contaminated microcosms respectively, compared to the untreated microcosms. Dominant bacterial strains obtained from the co-contaminated microcosms were found to belong to the genera Burkholderia, Pseudomonas, Bacillus, Enterobacter and Bradyrhizobium, previously reported for 1,2-DCA and other chlorinated compounds degradation. PCR–DGGE analysis revealed variation in microbial diversity over time in the different co-contaminated microcosms. Results obtained in this study have significant implications for developing innovative bioremediation strategies for treating water co-contaminated with chlorinated organics and heavy metals.  相似文献   
16.
人工接种堆肥和自然堆肥微生物区系与分子多态性的变化   总被引:5,自引:1,他引:5  
采用传统培养方法和PCR-DGGE技术研究了人工接种堆肥和自然堆肥微生物群落的演变过程。结果表明:(1)传统培养方法显示,两种堆肥堆制过程中微生物数量均呈“升高—降低—升高—降低”变化趋势,整个堆肥过程中细菌数量占优势。(2)DGGE图谱显示,两种堆肥不同时期存在不同的细菌种群,其条带数量亦呈“升高—降低—升高—降低”变化趋势。堆肥升温期条带丰富但优势条带不明显;堆肥高温期条带数量减少但出现优势条带,表明高温阶段以嗜热菌或耐高温菌为主;堆肥降温期条带数量再次增多;堆肥腐熟期条带数量少且无优势条带,表明腐熟阶段微生物种群数量少且代谢强度趋于平缓。(3)DGGE图谱表明,人工接种菌株成为堆肥高温期优势菌株。人工接种增加了堆肥中微生物总量,提高了堆肥微生物种群多样性,并且促进了堆肥菌群演替,从而缩短堆肥腐熟时间。  相似文献   
17.
考察改变进水COD浓度(11 000、 15 000、 30 000 mg/L)或水力停留时间(HRT为42 h、 25 h)对模拟高浓度有机废水微好氧连续小试处理效果的影响,并采用荧光原位杂交-流式细胞术(FISH-FCM)、聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE) 等分子生物学技术及Biolog FF微孔板法分析了不同处理阶段稳定期曝气柱污泥的微生态变化,以探讨进水COD浓度或HRT改变时微好氧处理效果变化的微生态机制.结果表明,在全部4个处理阶段,曝气柱污泥中酵母含量均保持在>99.9%的水平.随着进水COD浓度的上升,污泥浓度由2.0 g/L上升到7.3 g/L,COD比去除速度由2.3 kg/(kg·d)下降到1.7 kg/(kg·d),曝气柱污泥真菌群落结构多样性指数由2.05上升至2.19,代谢多样性指数由4.42上升至4.45;而随着HRT下降,污泥浓度从7.3 g/L下降至6.0 g/L,COD比去除速度从1.7 kg/(kg·d)上升至2.8 kg/(kg·d),真菌群落结构多样性指数和代谢多样性指数则分别从2.19和4.45降至0.79和4.36.作为提高进水有机负荷的主要措施,提高进水COD浓度和缩短HRT对于废水处理效果和曝气柱微生态存在截然相反的影响.  相似文献   
18.
Soil samples were collected from three plots under di erent land utilization patterns including degradation, farming, and restoration. The abundances of methanotrophs were quantified using real-time polymerase chain reaction (PCR) based on the pmoA and 16S rRNA genes, and the community fingerprint was analyzed using denaturing gradient gel electrophoresis (DGGE) aiming at pmoA gene. Significantly lower 16S rRNA and pmoA genes copies were found in the degradation treatment than in farming and restoration. Higher abundances of Type I than those of Type II methanotrophs were detected in all treatments. The treatment of farming was clearly separated from degradation and restoration according to the DGGE profile by cluster analysis. The lowest diversity indices were observed in the F (farming plot), suggesting that the community structure was strongly a ected by farming activities. There were significantly positive correlations between the copy numbers of pmoA also Type II-related 16S rRNA genes and soil available K content. Strong negative and positive correlations were found between Type I and soil pH, and available P content, respectively. We concluded that the vegetation cover or not, soil characteristics including pH and nutrients of P and K as a result of anthropogenic disturbance may be key factors a ecting methanotrophic communities in upland soil.  相似文献   
19.
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   
20.
镉胁迫下稻田土壤微生物基因多样性的DGGE分子指纹分析   总被引:22,自引:5,他引:17  
段学军  闵航 《环境科学》2004,25(5):122-126
采用现代分子生物学技术,避开传统的分离培养过程,探讨重金属镉污染条件下稻田土壤微生物种群的基因多样性.经过直接从土壤中抽提总DNA,并对总DNA中16S rDNA及其中 V3可变区序列作PCR扩增、变性梯度凝胶电泳(DGGE)分析等,对镉胁迫下稻田土壤总DNA、微生物种类分布进行了初步的研究,发现不同浓度镉胁迫下稻田土壤间的菌种有明显差异,DGGE技术可以用于污染环境下微生物多样性研究.同时对DGGE分子指纹图谱的生物信息学分析作了初步尝试,为污染环境下土壤微生物多样性研究提供了新的实验方法与依据.  相似文献   
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