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Fatty-acid profiles and expression of the fabM gene in a fluoride-resistant strain of Streptococcus mutans

机译:脂肪酸谱和Fabm基因在氟化物致致致力株的毛坯基因的表达

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Objective: The aim of this study was to compare the membrane fatty acid profile and expression of the fabM gene in a fluoride-resistant Streptococcus mutans strain with those of its wild-type counterpart. Additionally, we aimed to investigate whether mutations were present in the fabM gene of the fluoride-resistant strain. Design: A fluoride-resistant strain of S. mutans was obtained by step-by-step induction in vitro. The fluoride-resistant strain and its wild-type counterpart were grown anaerobically in a brain heart infusion broth, harvested and resuspended in a salt solution for an acid survival assay and a pH-drop experiment. The membrane fatty acid profile was determined by gas chromatography-mass spectrometry. Expression of the fabM gene was quantified by realtime PCR. The fabM gene was also sequenced. Results: The ability of the fluoride-resistant strain to resist acid stress was greater than that of the wild-type strain. A significant difference in the amount of long-chain monounsatu-rated fatty acids between the fluoride-resistant strain and the wildtype strain was detected in acidic condition (P < 0.01). In addition, the level of fabM mRNA in the fluoride-resistant strain was significantly higher than that of the wild-type strain in the acidic condition as well (P < 0.01). However, the sequence of the fabM gene from the fluoride-resistant strain was 100% homologous with that from the wild-type strain. Conclusions: The membrane fatty acid profile and expression of the fabM gene in the fluoride-resistant strain were altered compared to the wild-type strain in acidic conditions, but no differences were found in the sequence of the fabM gene.
机译:目的:本研究的目的是将膜脂肪酸谱和Fabm基因的表达与其野生型对应物的那些进行比较耐氟化物链球菌。另外,我们的目的是研究氟化物菌株的Fabm基因是否存在突变。设计:通过体外逐步诱导获得S. mutans的氟化物株。耐氟菌株及其野生型对应物在脑心脏输注肉汤中,收获并重悬于酸性溶液中的酸性溶液中并重新悬浮于酸存活测定和pH滴实验。通过气相色谱 - 质谱法测定膜脂肪酸谱。通过实时PCR定量Fabm基因的表达。还测序Fabm基因。结果:耐氟耐抗酸应力的能力大于野生型菌株的能力。在酸性条件下检测氟化物菌株和野生型菌株之间的长链Monounsatu级脂肪酸量的显着差异(P <0.01)。此外,氟化物菌株中的Fabm mRNA水平也明显高于酸性条件下野生型菌株的水平(P <0.01)。然而,来自氟化物菌株的Fabm基因的序列与来自野生型菌株的100%同源。结论:与酸性条件下的野生型菌株相比,膜脂肪酸谱和Fabm基因的表达改变,但在Fabm基因的序列中没有发现差异。

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