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1.
目的针对口腔舌苔细菌16S rDNA序列进行变性梯度凝胶电泳(denaturing gradient gel electrophoresis,DGGE)适用序列的筛选及电泳条件的优化。方法以DGGE图谱的高分辨率为指标,选择舌苔细菌DGGE分离最适的16S rDNA高变区、电泳电压和电泳时间,并采用优化的条件分析健康青年人舌苔细菌群落的分布。结果舌苔细菌16S rDNA V3高变区引物序列能获得更加丰富清晰的DGGE条带;基于该区,当变性剂浓度为30%~60%、电泳温度60℃、电压60 V和电泳时间14 h时能得到分辨率最佳的DGGE图谱。运用此优化条件对12个样本舌苔细菌群落的分析表明,舌苔微生物主要由厚壁菌门、梭杆菌门、拟杆菌门和变形菌门等组成。优化后的DGGE技术对舌苔细菌多样性的分析具有准确性、灵敏性和可重复性。结论 DGGE图谱显示,不同分析条件对图谱类型和细菌多样性指数均有所差异。利用优化的DGGE条件能有效分离舌苔细菌16S rDNA V3区序列,为口腔微生物群落结构分析提供可靠的技术支持,也为其他不同生态细菌的多样性分析提供参考。  相似文献   
2.
There are many PAH-degrading bacteria in mangrove sediments and in order to explore their degradation potential, surface sediment samples were collected from a mangrove area in Fugong, Longhai, Fujian Province of China. A total of 53 strains of PAH-degrading bacteria were isolated from the mangrove sediments, consisting of 14 strains of phenanthrene (Phe), 13 strains of pyrene (Pyr), 13 strains of benzo[a]pyrene (Bap) and 13 strains of mixed PAH (Phe + Pyr + Bap)-degrading bacteria. All of the individual colonies were identified by 16S rDNA sequencing. Based on the information of bacterial PCR-DGGE profiles obtained during enrichment batch culture, Phe, Pyr, Bap and mixed PAH-degrading consortia consisted of F1, F2, F3, F4 and F15 strains, B1, B3, B6, B7 and B13 strains, P1, P2, P3, P5 and P7 strains, M1, M2, M4, M12 and M13 strains, respectively. In addition, the degradation ability of these consortia was also determined. The results showed that both Phe and mixed PAH-degrading consortia had the highest ability to degrade the Phe in a liquid medium, with more than 91% being degraded in 3 days. But the biodegradation percentages of Pyr by Pyr-degrading consortium and Bap by Bap-degrading consortium were relatively lower than that of the Phe-degrading consortium. These results suggested that a higher degradation of PAHs depended on both the bacterial consortium present and the type of PAH compound. Moreover, using the bacterial community structure analysis method, where the consortia consist of different PAH-degrading bacteria, the information from the PCR-DGGE profiles could be used in the bioremediation of PAHs in the future.  相似文献   
3.
目的应用PCR-DGGE技术对结直肠癌患者肠道黏膜局部菌群多样性进行研究,为结直肠病变的防治提供微生态调节思路。方法收集正常对照组、结直肠息肉组及结直肠癌组患者各30例,采集结直肠黏膜局部肛拭子,提取细菌基因组DNA,采用PCR-DGGE对肠道黏膜局部菌群进行指纹图谱分析。结果正常对照组、结直肠息肉组和结直肠癌组患者PCR-DGGE指纹图谱分析显示3组肠道黏膜局部菌群多样性发生了显著的变化,3组肠道黏膜局部菌群发生了显著的菌群变迁。结论 PCR-DGGE分析结直肠癌患者肠道黏膜局部菌群多样性变化对监测肠道局部微生态变化在结直肠癌的发生过程中的作用具有重要价值。  相似文献   
4.
Spatial isolation is currently thought to represent one of the major factors resulting in bacteria genetic variation and population abundance. The bacterial diversity in a distinct environment Zoige Alpine Wetland located in the northeast of the Qinghai-Tibetan Plateau with the altitude 3400 m on average aroused our great attention. This area belongs to Qinghai-Tibetan cold climate zone with the mean annual temperature about 1 °C. Although several studies on bacterial diversity in Qinghai-Tibetan Plateau had been reported, there is no report on wetland water in this area. In this work, six water samples were collected and the water qualities including CODCr, NH4+-N, NO3--N, NO2--N, TN, TP, TOC were investigated, of which results indicated that more than 80% samples sorted as II–V class of surface water sources according to the National Water Quality Standard of China (GB3838-2002). Comparison of bacterial communities among the six samples was analyzed by DGGE of PCR-amplified 16S rDNA with universal bacterial primer sets. The profiles demonstrated that samples from the Flower Lake had more DNA bands than the Conservatory Station inferring higher diversity. In addition, the samples from the same environment shared similar compositions of bacterial communities. Bacterial community composition and predominant bacteria were analyzed by 16S rDNA clone library. The dominant group was Proteobacteria (51.6% of the total clones, which contained 24.2% alpha proteobacteria, 14.5% beta proteobacteria and 12.9% gamma proteobacteria). And the Bacteroidetes added to 17.7%, Verrucomicrobia to 4.8%. More than 24.2% of the total clones showed high similarity to uncultured bacteria. The above work provides some information on bacterial diversity for special site of spatial isolation.  相似文献   
5.
To establish an economical and environmentally friendly technology for ethylene removal from horticultural facilities and industrial point sources, a bench-scale natural zeolite biofiltration system was developed in this study. The system was evaluated for its performance in removing ethylene from an artificially contaminated air stream and characterized for its bacterial diversity under varied ethylene concentrations, and in different spatial stages of the filter. The biofilter enabled to approximately 100% remove ethylene at loading rates of 0.26-3.76 g m−3 h−1 when operated with inoculum containing enriched ethylene-degrading bacteria. The bacterial diversity and abundance varied with the height of the biofilter. Moreover, the occurrence and predominance of specific bacterial species varied with the concentrations of ethylene introduced into the biofilter, as observed by PCR-DGGE methods. Phylogenetic analysis indicated that the biofilter system supported a diverse community of ethylene-degrading bacteria, with high similarity to species in the classes Betaproteobacteria, Gammaproteobacteria, Bacilli, and Actinobacteria.  相似文献   
6.
目的 利用传统方法和分子生物学方法从viili中筛菌并对其特性进行研究.方法 采用MRS、YPD和脱脂乳营养琼脂3种平板从viili中分离出15株单菌,利用V3区通用引物和乳杆菌特异性引物对各单菌的PCR产物进行变性梯度凝胶电泳(denaturing gradient gel electrophoresis,DGGE)分析,将其归为5种不同菌.结果 16S DNA测序表明,5种单菌分别为Lactobacillus plantarum、Streptococcus thermophilus、Lactobacillus paracasei、Bacillus cereus和Lactobacillus delbrueckii subsp. bulgaricus.混合发酵实验表明:从viili中筛出的5种菌除Bacillus cereus外均有凝乳现象,其中Lactobacillus delbrueckii凝乳能力强,可在5 h内凝乳;Lactobacillus paracasei、Bacillus cereus和Lactobacillus plantarum组合产生的EPS量最多,高达186.71 mg/L,而Streptococcus thermophilus EPS产量仅为33.56 mg/L.结论 传统方法与分子生物学方法DGGE相结合,可以快速准确判断细菌种类;筛选菌特性研究结果表明,细菌之间的相互作用导致凝乳时间和EPS产量发生变化,其复合作用有待于进一步研究.  相似文献   
7.
PCR-DGGE技术在动物肠道微生态研究中的应用   总被引:2,自引:0,他引:2  
本文综述了PCR-变性梯度凝胶电泳(PCR-DGGE)分析微生物多态性的原理,还介绍了它的技术步骤、在动物肠道微生态研究中的主要应用以及优缺点,为更好的研究动物肠道微生物奠定了基础。  相似文献   
8.
9.
[目的]对双孢蘑菇培养料“后发酵”期间内的细菌群落结构进行了初步的研究,希望利用现代分子生态学的方法能快速、准确地对培养料发酵过程中的微生物群落结构进行动态的检测。[方法]采用变性梯度凝胶电泳(Denaturing Gradient Gel Electrophoresis,DGGE),对取自双孢蘑菇培养料“后发酵”不同时期的七份样品的特异性扩增细菌16S rDNA的V3可变区进行分析。[结果]双孢蘑菇培养料中的细菌组成要远远丰富于人们用传统的分离方法所获得的类群,“空气调节”时期的培养料中不仅检测到了前人用经典培养方法获得的Bacillus属嗜热细菌,还发现了一些未曾报道的Bacilli门的成员,如Trichococcus属、Planococcus属和Caryophanon属,以及γ-Proteobacteria亚纲。而在“后发酵”刚开始和即将结束的培养料中分别检测到了Thermus thermophilus和α-Proteobacteria亚纲的细菌,这些是近年来利用分子生物学方法在各类高温堆肥中发现的新类群;[结论]发现双孢蘑菇培养料“后发酵”过程中细菌的群落结构发生了明显的变化,在 双孢蘑菇培养料“后发酵”过程中还发现了大量目前尚未获得培养的细菌类群。  相似文献   
10.
Polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) technique was employed to examine the seasonal dynamic changes in bacterial community composition in the Inner Mongolia desert steppe using specific primers F954 and R1369. Bright and reproducible bands were sequenced, and the phylogenic tree was constructed. The results show that the bacterial community composition changed between different seasons. The specific bands were different between the sampling sites with light and heavy levels of degraded grassland. Three main types of bacteria constituting the microbial community in the Inner Mongolia desert steppe belonged to the α, γ andgd-sub phyla of Proteobacteria, Bacteroidetes and Acidobacteria. The unculturable bacteria accounted for 69% of the whole bacterial community of the Inner Mongolia desert steppe.  相似文献   
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