Chen F, Lu J R, Binder B J, Liu Y C, Hodson R E
Center of Marine Biotechnology, University of Maryland Biotechnology Institute, Baltimore, Maryland 21202, USA.
Appl Environ Microbiol. 2001 Feb;67(2):539-45. doi: 10.1128/AEM.67.2.539-545.2001.
A novel nucleic acid stain, SYBR Gold, was used to stain marine viral particles in various types of samples. Viral particles stained with SYBR Gold yielded bright and stable fluorescent signals that could be detected by a cooled charge-coupled device camera or by flow cytometry. The fluorescent signal strength of SYBR Gold-stained viruses was about twice that of SYBR Green I-stained viruses. Digital images of SYBR Gold-stained viral particles were processed to enumerate the concentration of viral particles by using digital image analysis software. Estimates of viral concentration based on digitized images were 1.3 times higher than those based on direct counting by epifluorescence microscopy. Direct epifluorescence counts of SYBR Gold-stained viral particles were in turn about 1.34 times higher than those estimated by the transmission electron microscope method. Bacteriophage lysates stained with SYBR Gold formed a distinct population in flow cytometric signatures. Flow cytometric analysis revealed at least four viral subpopulations for a Lake Erie sample and two subpopulations for a Georgia coastal sample. Flow cytometry-based viral counts for various types of samples averaged 1.1 times higher than direct epifluorescence microscopic counts. The potential application of digital image analysis and flow cytometry for rapid and accurate measurement of viral abundance in aquatic environments is discussed.
一种新型核酸染料SYBR Gold被用于对各类样品中的海洋病毒颗粒进行染色。用SYBR Gold染色的病毒颗粒产生明亮且稳定的荧光信号,可通过冷却电荷耦合器件相机或流式细胞仪进行检测。SYBR Gold染色病毒的荧光信号强度约为SYBR Green I染色病毒的两倍。利用数字图像分析软件对SYBR Gold染色病毒颗粒的数字图像进行处理,以计算病毒颗粒的浓度。基于数字化图像的病毒浓度估计值比落射荧光显微镜直接计数法的结果高1.3倍。SYBR Gold染色病毒颗粒的落射荧光直接计数结果又比透射电子显微镜法的估计值高约1.34倍。用SYBR Gold染色的噬菌体裂解物在流式细胞术特征中形成一个独特的群体。流式细胞术分析显示,伊利湖样品中有至少四个病毒亚群,佐治亚州沿海样品中有两个亚群。各类样品基于流式细胞术的病毒计数平均比落射荧光显微镜直接计数高1.1倍。本文讨论了数字图像分析和流式细胞术在快速准确测量水生环境中病毒丰度方面的潜在应用。