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Non-invasive in situ monitoring and quantification of TOL plasmid segregational loss within pseudomonas putida biofilms

机译:恶臭假单胞菌生物膜内TOL质粒分离损失的非侵入性原位监测和定量

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Methods for the detection of plasmid loss in natural environments have typically relied on replica plating, selective markers and PCR. However, these traditional methods have the limitations of low sensitivity, underestimation of specific cell populations, and lack of insightful data for non-homogeneous environments. We have developed a non-invasive microscopic analytical method to quantify local plasmid segregational loss from a bacterial population within a developing biofilm. The probability of plasmid segregational loss in planktonic and biofilm cultures of Pseudomonas putida carrying the TOL plasmid (pWWO::gfpmut3b) was determined directly in situ, in the absence of any applied selection pressure. Compared to suspended liquid culture, we report that the biofilm mode of growth enhances plasmid segregational loss. Results based on a biofilm-averaged analysis reveal that the probability of plasmid loss in biofilm cultures (0.016±0.004) was significantly greater than that determined in planktonic cultures (0.0052±0.0011). Non-invasive assessments showed that probabilities of plasmid segregational loss at different locations in a biofilm increased dramatically from 0.1% at the substratum surface to 8% at outside layers of biofilm. Results suggest that higher nutrient concentrations and subsequentially higher growth rates resulted in higher probability of plasmid segregational loss at the outer layers of the biofilm.
机译:在自然环境中检测质粒丢失的方法通常依赖于复制板,选择性标记和PCR。然而,这些传统方法的局限性在于灵敏度低,对特定细胞群的估计不足以及缺乏非均质环境的有洞察力的数据。我们已经开发出了一种非侵入性的微观分析方法,可以量化来自正在发展的生物膜内细菌种群的局部质粒偏析损失。在没有施加任何选择压力的情况下,直接原位测定携带TOL质粒(pWWO :: gfpmut3b)的恶臭假单胞菌浮游生物膜和生物膜培养物中质粒分离的可能性。与悬浮液培养相比,我们报道了生物膜的生长方式增强了质粒的分离损失。基于生物膜平均分析的结果表明,在生物膜培养物中质粒丢失的可能性(0.016±0.004)显着大于在浮游培养中确定的质粒损失的可能性(0.0052±0.0011)。非侵入性评估表明,生物膜中不同位置的质粒分离损失的概率从基质表面的0.1%急剧增加到生物膜外层的8%。结果表明,较高的营养物浓度和随后较高的生长速率导致在生物膜外层的质粒偏析损失的可能性较高。

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