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整合高通量焦磷酸测序和定量实时聚合酶链反应以分析复杂微生物群落。

Integrating high-throughput pyrosequencing and quantitative real-time PCR to analyze complex microbial communities.

作者信息

Zhang Husen, Parameswaran Prathap, Badalamenti Jonathan, Rittmann Bruce E, Krajmalnik-Brown Rosa

机构信息

Center for Environmental Biotechnology, Biodesign Institute, Arizona State University, Tempe, AZ, USA.

出版信息

Methods Mol Biol. 2011;733:107-28. doi: 10.1007/978-1-61779-089-8_8.

Abstract

New high-throughput technologies continue to emerge for studying complex microbial communities. In particular, massively parallel pyrosequencing enables very high numbers of sequences, providing a more complete view of community structures and a more accurate inference of the functions than has been possible just a few years ago. In parallel, quantitative real-time PCR (QPCR) allows quantitative monitoring of specific community members over time, space, or different environmental conditions. In this review, we discuss the principles of these two methods and their complementary applications in studying microbial ecology in bioenvironmental systems. We explain parallel sequencing of amplicon libraries and using bar codes to differentiate multiple samples in a pyrosequencing run. We also describe best procedures and chemistries for QPCR amplifications and address advantages of applying automation to increase accuracy. We provide three examples in which we used pyrosequencing and QPCR together to define and quantify members of microbial communities: in the human large intestine, in a methanogenic digester whose sludge was made more bioavailable by a high-voltage pretreatment, and on the biofilm anode of a microbial electrolytic cell. We highlight our key findings in these systems and how both methods were used in concert to achieve those findings. Finally, we supply detailed methods for generating PCR amplicon libraries for pyrosequencing, pyrosequencing data analysis, QPCR methodology, instrumentation, and automation.

摘要

用于研究复杂微生物群落的新型高通量技术不断涌现。特别是,大规模平行焦磷酸测序能够产生非常大量的序列,与仅仅几年前相比,它能提供更完整的群落结构视图以及对功能更准确的推断。同时,定量实时PCR(QPCR)可以对特定群落成员在时间、空间或不同环境条件下进行定量监测。在这篇综述中,我们讨论这两种方法的原理及其在生物环境系统微生物生态学研究中的互补应用。我们解释了扩增子文库的平行测序以及在焦磷酸测序运行中使用条形码区分多个样本的方法。我们还描述了QPCR扩增的最佳程序和化学方法,并阐述了应用自动化提高准确性的优势。我们提供了三个实例,在这些实例中我们同时使用焦磷酸测序和QPCR来定义和量化微生物群落成员:在人类大肠中、在一个通过高压预处理使其污泥生物可利用性更高的产甲烷消化器中以及在一个微生物电解池的生物膜阳极上。我们强调了在这些系统中的关键发现以及如何协同使用这两种方法来获得这些发现。最后,我们提供了用于生成焦磷酸测序的PCR扩增子文库、焦磷酸测序数据分析、QPCR方法、仪器设备及自动化的详细方法。

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