Czechowska Kamila, Johnson David R, van der Meer Jan Roelof
Department of Fundamental Microbiology, Bâtiment Biophore, University of Lausanne, 1015 Lausanne, Switzerland.
Curr Opin Microbiol. 2008 Jun;11(3):205-12. doi: 10.1016/j.mib.2008.04.006. Epub 2008 Jun 16.
Flow cytometry (FCM) is emerging as an important tool in environmental microbiology. Although flow cytometry applications have to date largely been restricted to certain specialized fields of microbiology, such as the bacterial cell cycle and marine phytoplankton communities, technical advances in instrumentation and methodology are leading to its increased popularity and extending its range of applications. Here we will focus on a number of recent flow cytometry developments important for addressing questions in environmental microbiology. These include (i) the study of microbial physiology under environmentally relevant conditions, (ii) new methods to identify active microbial populations and to isolate previously uncultured microorganisms, and (iii) the development of high-throughput autofluorescence bioreporter assays.
流式细胞术(FCM)正逐渐成为环境微生物学中的一项重要工具。尽管迄今为止,流式细胞术的应用在很大程度上局限于微生物学的某些特定专业领域,如细菌细胞周期和海洋浮游植物群落,但仪器和方法学方面的技术进步正使其越来越受欢迎,并扩大其应用范围。在这里,我们将重点关注一些近期流式细胞术的发展,这些发展对于解决环境微生物学中的问题很重要。其中包括:(i)在与环境相关的条件下研究微生物生理学;(ii)识别活跃微生物种群和分离以前未培养微生物的新方法;(iii)高通量自发荧光生物报告测定法的发展。