首页> 外文期刊>Journal of Microbiological Methods >DNA extraction from low-biomass carbonate rock: an improved method with reduced contamination and the low-biomass contaminant database
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DNA extraction from low-biomass carbonate rock: an improved method with reduced contamination and the low-biomass contaminant database

机译:从低生物量碳酸盐岩中提取DNA:一种减少污染和低生物量污染物数据库的改进方法

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摘要

Caves represent a unique environment in which to study subsurface geomicrobial interactions and processes. One of the primary techniques used to study such geologic samples is molecular phylogenetic analysis, but this technique is hampered by low microbial biomass and calcium in the host rock, often leading to poor and irreproducible DNA extraction. We describe an improved protocol to recover extremely low amounts of DNA from calcium-rich geologic samples. This protocol relies on the use of the synthetic DNA molecule poly-dIdC, to act both as blocking agent and carrier molecule to increase the yield of DNA, and dialysis to remove calcium inhibitors of PCR amplification. Further, we demonstrate that many traditionally used laboratory substrates contain microbial DNA that can be amplified through the polymerase chain reaction (PCR) and contaminate molecular phylogenetic profiles. While the number of potential contaminants can be minimized, it cannot be eliminated from extraction techniques. We have therefore established the low-biomass contaminant (LBC) database, which contains the 16S rRNA gene sequences of species that have been identified as common laboratory contaminants. These identified contaminants provide a reference database to allow investigators to critically evaluate certain species identified within their phylogenetic profile when examining such low-biomass environments.
机译:洞穴代表了研究地下地球微生物相互作用和过程的独特环境。用于研究此类地质样品的主要技术之一是分子系统发育分析,但是该技术受到宿主岩石中微生物生物量和钙含量低的阻碍,常常导致DNA提取质量差且无法再现。我们描述了一种从富含钙的地质样品中回收极少量DNA的改进方案。该方案依赖于使用合成DNA分子poly-dIdC充当封闭剂和载体分子,以增加DNA的产量,并进行透析以去除PCR扩增的钙抑制剂。此外,我们证明了许多传统上使用的实验室底物均含有微生物DNA,这些微生物DNA可通过聚合酶链反应(PCR)进行扩增并污染分子系统发育谱。虽然可以将潜在污染物的数量减至最少,但无法从萃取技术中消除。因此,我们建立了低生物量污染物(LBC)数据库,其中包含已被鉴定为常见实验室污染物的物种的16S rRNA基因序列。这些鉴定出的污染物提供了参考数据库,可让研究人员在检查这种低生物量环境时,能够严格评估在其系统发育谱中鉴定出的某些物种。

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