Mating Assay: Plating Below a Cell Density Threshold is Required for Unbiased Estimation of Plasmid Conjugation Frequency of RP4 Transfer Between E. coli Strains.

IF 3.3 3区 生物学 Q2 ECOLOGY Microbial Ecology Pub Date : 2024-08-28 DOI:10.1007/s00248-024-02427-7
Zhiming He, Barth F Smets, Arnaud Dechesne
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Abstract

Mating assays are common laboratory experiments for measuring the conjugation frequency, i.e. efficiency at which a plasmid transfers from a population of donor cells to a population of recipient cells. Selective plating remains a widely used quantification method to enumerate transconjugants at the end of such assays. However, conjugation frequencies may be inaccurately estimated because plasmid transfer can occur on transconjugant-selective plates rather than only during the intended mating duration. We investigated the influence of cell density on this phenomenon. We conducted mating experiments with IncPα plasmid RP4 harbored in Escherichia coli at a fixed cell density and mating conditions, inoculated a serial dilution of the mating mixture on transconjugant-selective plates or in transconjugant-selective broth, and compared the results to a model of cell-to-cell distance distribution. Our findings suggest that irrespective of the mating mode (liquid vs solid), the enumeration of transconjugants becomes significantly biased if the plated cell density exceeds 28 Colony Forming Unit (CFU)/mm2 (or 1.68•105 CFU/standard 9 cm Petri dish). This threshold is determined with a 95% confidence interval of ± 4 CFU/mm2 (± 2.46•104 CFU/standard 9 cm Petri dish). Liquid mating assays were more sensitive to this bias because the conjugation frequency of RP4 is several orders of magnitude lower in suspension compared to surface mating. Therefore, if selective plating is used, we recommend to plate at this density threshold and that negative controls are performed where donors and recipients are briefly mixed before plating at the same dilutions as for the actual mating assay. As an alternative, a liquid enumeration method can be utilized to increase the signal-to-noise ratio and allow for more accurate enumeration of transconjugants.

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交配试验:大肠杆菌菌株间 RP4 转移的质粒共轭频率的无偏估计需要低于细胞密度阈值的培养。
交配试验是测量共轭频率(即质粒从供体细胞群转移到受体细胞群的效率)的常见实验室实验。选择性接种仍是一种广泛使用的量化方法,用于在此类实验结束时统计转结合体。然而,由于质粒转移可能发生在转结合体选择性平板上,而不只是在预期的交配持续时间内,因此对结合频率的估计可能不准确。我们研究了细胞密度对这一现象的影响。我们在固定的细胞密度和交配条件下用大肠杆菌中的 IncPα 质粒 RP4 进行了交配实验,将交配混合物的系列稀释液接种到转结合体选择性平板或转结合体选择性肉汤中,并将结果与细胞间距离分布模型进行了比较。我们的研究结果表明,无论采用哪种交配模式(液态还是固态),如果平板细胞密度超过 28 菌落总数(CFU)/平方毫米(或 1.68-105 CFU/标准 9 厘米培养皿),转座子的计数就会出现明显偏差。该阈值的 95% 置信区间为 ± 4 CFU/mm2(± 2.46-104 CFU/标准 9 厘米培养皿)。液体交配试验对这一偏差更为敏感,因为与表面交配相比,RP4 在悬浮液中的共轭频率要低几个数量级。因此,如果使用选择性平板,我们建议在此密度阈值下进行平板,并进行阴性对照,即在平板前将供体和受体短暂混合,稀释度与实际交配试验相同。作为替代方法,可以使用液体枚举法来提高信噪比,从而更准确地枚举转共轭物。
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来源期刊
Microbial Ecology
Microbial Ecology 生物-海洋与淡水生物学
CiteScore
6.90
自引率
2.80%
发文量
212
审稿时长
3-8 weeks
期刊介绍: The journal Microbial Ecology was founded more than 50 years ago by Dr. Ralph Mitchell, Gordon McKay Professor of Applied Biology at Harvard University in Cambridge, MA. The journal has evolved to become a premier location for the presentation of manuscripts that represent advances in the field of microbial ecology. The journal has become a dedicated international forum for the presentation of high-quality scientific investigations of how microorganisms interact with their environment, with each other and with their hosts. Microbial Ecology offers articles of original research in full paper and note formats, as well as brief reviews and topical position papers.
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