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废水中的分子技术:了解微生物群落、检测病原体及实时过程控制。

Molecular techniques in wastewater: Understanding microbial communities, detecting pathogens, and real-time process control.

作者信息

Gilbride K A, Lee D-Y, Beaudette L A

机构信息

Department of Chemistry and Biology, Ryerson University, 350 Victoria St. Toronto, ON, Canada M4B 2K3.

出版信息

J Microbiol Methods. 2006 Jul;66(1):1-20. doi: 10.1016/j.mimet.2006.02.016. Epub 2006 Apr 24.

Abstract

Traditionally, the detection of pathogens in water, wastewater, and other environmental samples is restricted by the ability to culture such organisms from complex environmental samples. During the last decade the use of molecular methods have supplied the means for examining microbial diversity and detecting specific organisms without the need for cultivation. The application of molecular techniques to the study of natural and engineered environmental systems has increased our insight into the vast diversity and interaction of microorganisms present in complex environments. In this paper, we will review the current and emerging molecular approaches for characterizing microbial community composition and structure in wastewater processes. Recent studies show that advances in microarray assays are increasing our capability of detecting hundreds and even thousands of DNA sequences simultaneously and rapidly. With the current progress in microfluidics and optoelectronics, the ability to automate a detection/identification system is now being realized. The status of such a system for wastewater monitoring is discussed.

摘要

传统上,水、废水及其他环境样本中病原体的检测受到从复杂环境样本中培养此类微生物能力的限制。在过去十年中,分子方法的应用为无需培养即可检测微生物多样性和特定生物体提供了手段。分子技术在自然和工程环境系统研究中的应用,加深了我们对复杂环境中微生物的巨大多样性和相互作用的理解。在本文中,我们将综述用于表征废水处理过程中微生物群落组成和结构的现有及新兴分子方法。近期研究表明,微阵列分析技术的进步正不断提高我们同时快速检测数百甚至数千个DNA序列的能力。随着微流体学和光电子学的当前进展,检测/识别系统的自动化能力正在得以实现。本文讨论了这种用于废水监测的系统的现状。

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