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Sampling Culturable Heterotrophs from Microcosms: a Statistical Analysis

机译:从微观世界采样可培养的异养菌:统计分析

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The contributions of different sources of error in sampling mixed and unmixed bacterial microcosms were evaluated by using analysis of variance. Culturable heterotrophic bacteria from a turbid freshwater impoundment were sampled from 9-liter tanks that were unagitated or mixed with magnetic stirrers or pumps and from dilution bottles that were unagitated or agitated with a mechanical shaker. Axenic cultures of Enterobacter aerogenes were also sampled from manually shaken test tubes. In both agitated and unagitated tanks and in unagitated dilution bottles, dilutions made from the same sampling pipette were significantly different, showing a clumping of bacteria on the scale of millimeters. Also, microcosms within a single experiment differed from one another by a large margin. Dilution mean squares and tank or bottle mean squares were homogeneous for all types of tanks and unagitated bottles, indicating that the gentle mixing provided by pumps and stir bars did not reduce either millimeter scale or intermicrocosm variability over what prevailed in unagitated microcosms. By contrast, the vigorously shaken bottles and test tubes showed no millimeter scale variability. Intermicrocosm variability was undetectable in test tubes and two orders of magnitude less in shaken bottles than in unshaken bottles. When these facts are coupled with the inherent statistical advantage of replicating large rather than small experimental units, it is concluded that sampling error in the enumeration of aquatic bacteria in microcosms will be reduced by using numerous, small, violently agitated microcosms with a minimum of subsampling per microcosm.
机译:通过使用方差分析评估混合和未混合细菌微观世界中不同误差来源的贡献。从浑浊的淡水蓄水池中培养出的可培养的异养细菌,取自未搅拌或用磁力搅拌器或泵混合的9升水箱,以及未搅拌或用机械振荡器搅拌的稀释瓶。还从手动摇动的试管中取样了产气肠杆菌的无菌培养物。在搅拌罐和未搅拌罐中以及在未搅拌的稀释瓶中,使用同一采样移液器制成的稀释液均存在显着差异,显示出细菌的团聚程度为毫米级。同样,单个实验中的微观世界相差很大。对于所有类型的罐和未搅拌的瓶子,稀释均方和罐或瓶的均方均一,表明与未搅拌的微观世界相比,泵和搅拌棒提供的温和混合不会降低毫米级或微观间的变异性。相反,剧烈摇动的瓶子和试管则没有毫米级的变化。在试管中无法检测到微观间的差异,与未摇动的瓶子相比,摇动的瓶子的微观间差异小两个数量级。当这些事实与复制大型实验单位而不是小型实验单位的固有统计优势相结合时,得出的结论是,通过使用大量,小型,剧烈搅动的微观世界并减少二次采样,可以减少微观世界中水生细菌计数的抽样误差。每个缩影。

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