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首页> 外文期刊>Diversity >Molecular Analysis of Bacterial Community DNA in Sludge Undergoing Autothermal Thermophilic Aerobic Digestion (ATAD): Pitfalls and Improved Methodology to Enhance Diversity Recovery
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Molecular Analysis of Bacterial Community DNA in Sludge Undergoing Autothermal Thermophilic Aerobic Digestion (ATAD): Pitfalls and Improved Methodology to Enhance Diversity Recovery

机译:进行自热嗜热好氧消化(ATAD)的污泥中细菌群落DNA的分子分析:陷阱和改进的方法以增强多样性的恢复

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Molecular analysis of the bacterial community structure associated with sludge processed by autothermal thermophilic aerobic digestion (ATAD), was performed using a number of extraction and amplification procedures which differed in yield, integrity, ability to amplify extracted templates and specificity in recovering species present. Interference to PCR and qPCR amplification was observed due to chelation, nuclease activity and the presence of thermolabile components derived from the ATAD sludge. Addition of selected adjuvant restored the ability to amplify community DNA, derived from the thermophilic sludge, via a number of primer sets of ecological importance and various DNA polymerases. Resolution of community profiles by molecular techniques was also influenced by the ATAD sludge extraction procedure as demonstrated by PCR-DGGE profiling and comparison of taxonomic affiliations of the most predominant members within 16S rRNA gene libraries constructed from ATAD DNA extracted by different methods. Several modifications have been shown to be necessary to optimize the molecular analysis of the ATAD thermal niche which may have general applicability to diversity recovery from similar environments.
机译:使用许多提取和扩增程序对与通过自热嗜热需氧消化(ATAD)处理的污泥相关的细菌群落结构进行分子分析,这些程序在产量,完整性,扩增提取模板的能力和回收存在物种的特异性方面有所不同。由于螯合,核酸酶活性和源自ATAD污泥的不耐热组分的存在,观察到了对PCR和qPCR扩增的干扰。通过许多具有生态重要性的引物组和各种DNA聚合酶,添加选定的佐剂可恢复扩增来自嗜热污泥的社区DNA的能力。 PCR-DGGE分析以及通过不同方法提取的ATAD DNA构建的16S rRNA基因文库中最主要成员的分类隶属关系的比较,也证明了分子技术对ATAD污泥提取程序的影响。已显示对ATAD热位的分子分析进行优化的必要几种修改,这些修改可能普遍适用于从相似环境中回收多样性。

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