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Monitoring Bacterial Biodiversity in Surface Sediment Using Terminal Restriction Fragment Length Polymorphism Analysis (T-RFLP): Application to Coastal Environment

机译:利用末端限制片段长度多态性分析(T-RFLp)监测表层沉积物中的细菌生物多样性:在沿海环境中的应用

摘要

By using traditional bacterial culture methods, only less than 1% of bacteria from environmental samples can be cultivated for biodiversity and microbial ecology studies. In recent years, however, rapid development in molecular biology and ecology has enabled us to explore genetic diversity of bacteria in environmental samples using culture-independent approaches. For example, the recent emergence of (ribosomal DNA) terminal restriction fragment length polymorphism (T-RFLP) analysis has made it become feasible to investigate bacterial diversity more accurately, reliably, speedily and at cheaper cost in coastal sediment samples. This brief paper provides an overview of pros and cons of the molecular approach, T-RFLP, in analyzing the diversity of bacteria in surface sediments of contrasting coastal environments in sub-tropical region. We used the terminal restriction fragment length polymorphism (T-RFLP) analysis to track the changes of bacterial community compositions in surface sediments collected from five sites along a pollution gradient at six sampling occasions (2004 to 2006) in subtropical Hong Kong waters. Our application of this technique in coastal environments illustrates the feasibility and the power of this novel approach for environmental monitoring and ecosystem recovery studies.
机译:通过使用传统的细菌培养方法,只能培养不到1%的环境样品细菌用于生物多样性和微生物生态学研究。但是,近年来,分子生物学和生态学的快速发展使我们能够使用与培养无关的方法来探索环境样品中细菌的遗传多样性。例如,最近出现的(核糖体DNA)末端限制性片段长度多态性(T-RFLP)分析使在沿海沉积物样品中更准确,可靠,快速且以较低的成本研究细菌多样性成为可能。这篇简短的文章概述了分子方法T-RFLP在分析亚热带地区沿海环境对比的表层沉积物中细菌多样性方面的优缺点。我们使用末端限制性片段长度多态性(T-RFLP)分析来跟踪在亚热带香港水域六个采样点(2004年至2006年)沿污染梯度从五个地点采集的表面沉积物中细菌群落组成的变化。我们在沿海环境中应用此技术说明了这种新颖方法在环境监测和生态系统恢复研究中的可行性和功能。

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