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A modular method for the extraction of DNA and RNA, and the separation of DNA pools from diverse environmental sample types

机译:提取DNA和RNA以及从各种环境样品类型中分离DNA池的模块化方法

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摘要

A method for the extraction of nucleic acids from a wide range of environmental samples was developed. This method consists of several modules, which can be individually modified to maximize yields in extractions of DNA and RNA or separations of DNA pools. Modules were designed based on elaborate tests, in which permutations of all nucleic acid extraction steps were compared. The final modular protocol is suitable for extractions from igneous rock, air, water, and sediments. Sediments range from high-biomass, organic rich coastal samples to samples from the most oligotrophic region of the world's oceans and the deepest borehole ever studied by scientific ocean drilling. Extraction yields of DNA and RNA are higher than with widely used commercial kits, indicating an advantage to optimizing extraction procedures to match specific sample characteristics. The ability to separate soluble extracellular DNA pools without cell lysis from intracellular and particle-complexed DNA pools may enable new insights into the cycling and preservation of DNA in environmental samples in the future. A general protocol is outlined, along with recommendations for optimizing this general protocol for specific sample types and research goals.
机译:开发了一种从多种环境样品中提取核酸的方法。该方法由几个模块组成,可以对它们进行单独修改,以最大程度地提高DNA和RNA提取或DNA池分离的产量。基于精心设计的测试模块,其中比较了所有核酸提取步骤的排列。最终的模块化协议适用于从火成岩,空气,水和沉积物中提取。沉积物的范围从高生物量,富含有机物的沿海样品到世界海洋中最富营养化地区的样品,以及科学海洋钻探研究过的最深的钻孔。与广泛使用的商业试剂盒相比,DNA和RNA的提取率更高,这表明优化提取程序以匹配特定样品特征的优势。无需细胞裂解即可将可溶性细胞外DNA池与细胞内和颗粒复合的DNA池分离的能力可能会为未来环境样品中DNA的循环和保存提供新的见解。概述了通用方案,并提供了针对特定样品类型和研究目标优化此通用方案的建议。

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