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首页> 外文期刊>International Journal of Food Microbiology >Effects of static magnetic fields on growth and membrane lipid composition of Salmonella Typhimurium wild-type and dam mutant strains.
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Effects of static magnetic fields on growth and membrane lipid composition of Salmonella Typhimurium wild-type and dam mutant strains.

机译:静磁场对沙门氏菌野生型鼠伤寒沙门氏菌和达姆突变型菌株生长和膜脂质组成的影响。

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This study was carried out to explore the adaptive mechanisms of S. Typhimurium particularly, the implication of the Dam methyltransferase in the remodelling of membrane lipid composition to overcome magnetic field stress. With this aim, we focused our analyses on the increase in viable numbers and membrane lipid modifications of S. Typhimurium wild-type and dam mutant cells exposed for 10 h to static magnetic fields (SMF; 200 mT). For the wild-type strain, exposure to SMF induced a significant decrease (P < 0.05) of CFU at 6 h, followed by an increase between 8 and 10 h. Growth of the dam mutant was significantly affected (P < 0.05) after 6 h and no recovery was observed until 10 h, highlighting a different behavior of SMF stressed wild-type and dam mutant strains. SMF significantly affected the phospholipid proportions in the two strains. The most affected were those of the acidic phospholipids, cardiolipins (CL). In the dam strain the phospholipid response to SMF followed a globally similar trend as in the wild-type with however lower effects, leading mainly to an unusual accumulation of CL. This would in part explain the different behavior of the wild-type and the dam strain. Results showed a significant increase of membrane cyclic fatty acids Cyc17 and Cyc19 in the wild-type strain but only the Cyc17 in the dam strain and a meaningful increase of the total unsaturated fatty acids (UFAs) to total saturated fatty acids (SFAs) ratios of the exposed cells compared to controls from 3 to 9 h (P < 0.05) for both strains. The net increase of the total UFAs to total SFAs ratios seemed to result mainly from the increase of (C18:1) proportion (P < 0.05) and to a lower extent from that of (C16:1) (P < 0.05). These modifications of cyclic and unsaturated fatty acid proportions constitute an adaptive response to SMF stress in S. Typhimurium wild-type and dam mutants to maintain an optimum level of membrane fluidity under SMF
机译:本研究旨在探讨 S 的适应机制。特别是鼠伤寒,Dam甲基转移酶在克服膜脂质成分重塑磁场应力方面的意义。为此,我们将分析重点放在 S 的存活数量增加和膜脂修饰上。鼠伤寒野生型和dam突变细胞暴露于静磁场(SMF; 200 mT)10 h。对于野生型菌株,暴露于SMF会使6小时的CFU显着降低( P <0.05),然后在8至10 h之间升高。 dam突变体的生长在6小时后受到显着影响( P <0.05),直到10 h才观察到恢复,突出显示了SMF胁迫的野生型和dam突变株的不同行为。 SMF显着影响两个菌株中的磷脂比例。受影响最严重的是酸性磷脂心磷脂(CL)。在大坝菌株中,对SMF的磷脂反应总体上与野生型相似,但影响较小,主要导致CL的异常积累。这将部分解释野生型和大坝毒株的不同行为。结果表明,野生型菌株中膜环脂肪酸Cyc17和Cyc19显着增加,但大坝菌株中膜环脂肪酸Cyc17显着增加,并且总饱和脂肪酸(SFA)的总不饱和脂肪酸比率显着增加。两种菌株在3到9 h( P <0.05)与对照相比,暴露的细胞。总UFA与总SFA之比的净增加似乎主要是由于(C18:1)比例的增加( P <0.05),而幅度较小的是(C16:1) ( P <0.05)。环状和不饱和脂肪酸比例的这些修饰构成了对 S 中SMF应力的适应性响应。鼠伤寒野生型和大坝突变体在SMF下保持最佳的膜流动性水平

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