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An evaluation of terminal-restriction fragment length polymorphism (T-RFLP) analysis for the study of microbial community structure and dynamics

机译:评价末端限制性片段长度多态性(T-RFLP)分析以研究微生物群落结构和动力学

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A systematic evaluation of the value and potential of terminal-restriction fragment length polymorphism (T-RFLP) analysis for the study of microbial community structure has been undertaken. The reproducibility and robustness of the method has been assessed using environmental DNA samples isolated directly from PCB-polluted or pristine soil, and subsequent polymerase chain reaction (PCR) amplification of total community 16S rDNA. An initial investigation to assess the variability both within and between different polyacrylamide gel electrophoresis (PAGE) runs showed that almost identical community profiles were consistently produced from the same sample. Similarly, very little variability was observed as a result of variation between replicate restriction digestions, PCR amplifications or between replicate DNA isolations. Decreasing concentrations of template DNA produced a decline in both the complexity and the intensity of fragments present in the community profile, with no additional fragments detected in the higher dilutions that were not already present when more original template DNA was used. Reducing the number of cycles of PCR produced similar results. The greatest variation between profiles generated from the same DNA sample was produced using different Taq DNA polymerases, while lower levels of variability were found between PCR products that had been produced using different annealing temperatures. Incomplete digestion by the restriction enzyme may, as a result of the generation of partially digested fragments,lead to an overestimation of the overall diversity within a community. The results obtained indicate that, once standardized, T-RFLP analysis is a highly reproducible and robust technique that yields high-quality fingerprints consisting of fragments of precise sizes, which, in principle, could be phylogenetically assigned, once an appropriate database is constructed.
机译:对末端限制性片段长度多态性(T-RFLP)分析的价值和潜力进行了系统的评估,以研究微生物群落结构。使用直接从多氯联苯污染或原始土壤中分离的环境DNA样品,以及随后的聚合酶链反应(PCR)扩增总群落16S rDNA的方法,评估了该方法的重现性和耐用性。评估不同聚丙烯酰胺凝胶电泳(PAGE)内和之间的变异性的初步研究表明,同一样品始终产生几乎相同的群落特征。同样,由于重复限制性酶切消化,PCR扩增或重复DNA分离之间的差异,观察到的变异性很小。模板DNA浓度的降低使群落谱中存在的片段的复杂性和强度均下降,而在使用更多原始模板DNA的情况下,更高稀释度中未检测到其他片段。减少PCR的循环数产生相似的结果。使用不同的Taq DNA聚合酶可产生从同一DNA样品产生的图谱之间最大的差异,而在使用不同退火温度产生的PCR产物之间发现较低的变异性。由于部分消化的片段的产生,限制性内切酶的不完全消化可能导致对群落整体多样性的高估。所获得的结果表明,一旦标准化,T-RFLP分析是一种高度可重现且可靠的技术,可产生由精确大小的片段组成的高质量指纹,原则上,一旦构建了适当的数据库,就可以进行系统发育分配。

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