Luef Birgit, Luef Franz, Peduzzi Peter
Faculty of Life Sciences, Department of Freshwater Ecology, University of Vienna, Vienna, Austria.
Environ Microbiol Rep. 2009 Feb;1(1):78-85. doi: 10.1111/j.1758-2229.2008.00008.x.
Assessing viral production (VP) requires robust methodological settings combined with precise mathematical calculations. This contribution improves and standardizes mathematical calculations of VP and the assessment of the proportion of lysogenic cells in a sample. We present an online tool 'Viral Production Calculator' (vipcal, http://www.univie.ac.at/nuhag-php/vipcal) that calculates lytic production and the percentage of lysogenic cells based on data obtained from a viral reduction approach (VRA). The main advantage of our method lies in its universal applicability, even to different piecewise-linear curves. We demonstrate the application of our tool for calculating lytic VP and the proportion of lysogenic bacteria in an environmental sample. The program can also be used to calculate different parameters for estimating virus-induced mortality, including the percentage of lytically infected cells, lysis rate of bacteria, percentage of bacterial production lysed, proportion of bacterial loss per day, viral turnover time as well as dissolved organic carbon and nitrogen release. vipcal helps avoid differences in the calculation of VP and diverse viral parameters between studies and laboratories, which facilities interpretation of results. This tool represents a methodological step forward that can help improve our understanding of the role of viral activity in aquatic systems.
评估病毒产生量(VP)需要强大的方法设置以及精确的数学计算。本文改进并规范了VP的数学计算以及样本中溶原性细胞比例的评估。我们展示了一个在线工具“病毒产生计算器”(vipcal,http://www.univie.ac.at/nuhag-php/vipcal),它基于从病毒减少法(VRA)获得的数据来计算裂解产生量和溶原性细胞的百分比。我们方法的主要优势在于其普遍适用性,甚至适用于不同的分段线性曲线。我们展示了该工具在计算环境样本中裂解性VP和溶原性细菌比例方面的应用。该程序还可用于计算估计病毒诱导死亡率的不同参数,包括裂解感染细胞的百分比、细菌裂解率、被裂解的细菌产生量的百分比、每日细菌损失比例、病毒周转时间以及溶解有机碳和氮的释放量。vipcal有助于避免不同研究和实验室在VP计算及各种病毒参数计算上的差异,这便于结果的解释。该工具代表了方法学上的一个进步,有助于增进我们对病毒活动在水生系统中作用的理解。