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用于产甲烷古菌定量分析的高产DNA提取方案的选择与优化

Selection and Optimization of High-Yielding DNA Isolation Protocol for Quantitative Analyses of Methanogenic Archaea.

作者信息

Cisek Agata Anna, Bąk Iwona, Stefańska Ilona, Binek Marian

机构信息

Department of Preclinical Sciences, Institute of Veterinary Medicine, Warsaw University of Life Sciences, Ciszewskiego 8, 02-786 Warsaw, Poland.

出版信息

Microorganisms. 2022 Feb 28;10(3):523. doi: 10.3390/microorganisms10030523.

Abstract

Methanogenic archaea are a functionally important component of the intestinal microbiota of humans and animals, participating in the utilization of detrimental hydrogen produced during gut fermentation. Despite this, archaeal DNA has rarely been found in intestinal microbiome analyses, which prompts the need to optimize detecting procedures of these microorganisms, including the DNA isolation step. Three commercially available kits for DNA isolation and one extra purification kit that removes PCR inhibitors were evaluated on chicken droppings. In addition, different variants of mechanical lysis and a double elution were tested to ensure the maximum efficiency of DNA isolation from archaea as well as bacteria. A quantitative real-time PCR was used to monitor the optimization progress. As a result, the combination of the selected Genomic Mini AX Bacteria+ kit with a 2-min-long sonication by ultrasonic probe and enzymatic pretreatment gave excellent extraction efficiency rates for DNA of methanogenic archaea (an approximate 50-fold increase compared to the standard enzymatic lysis described by the producer) and, at the same time, provided optimal protection of DNA extracted from bacteria susceptible to enzymatic lysis. The presented results indicate that the optimized protocol allows for highly efficient extraction of total DNA, which is well-suited for quantitative microbial analyses by real-time PCR.

摘要

产甲烷古菌是人和动物肠道微生物群中功能重要的组成部分,参与肠道发酵过程中产生的有害氢气的利用。尽管如此,在肠道微生物组分析中很少发现古菌DNA,这促使需要优化这些微生物的检测程序,包括DNA分离步骤。我们在鸡粪上评估了三种市售的DNA分离试剂盒和一种去除PCR抑制剂的额外纯化试剂盒。此外,还测试了机械裂解的不同变体和双重洗脱,以确保从古菌以及细菌中分离DNA的效率最大化。使用定量实时PCR监测优化过程。结果,所选的Genomic Mini AX Bacteria+试剂盒与超声探头进行2分钟的超声处理和酶预处理相结合,对产甲烷古菌的DNA具有优异的提取效率(与生产商描述的标准酶解相比增加了约50倍),同时,为从易受酶解的细菌中提取的DNA提供了最佳保护。呈现的结果表明,优化后的方案能够高效提取总DNA,非常适合通过实时PCR进行定量微生物分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7701/8950361/c50944614f8d/microorganisms-10-00523-g001.jpg

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