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Osmotic stress in colony and planktonic cells of Pseudomonas putida mt-2 revealed significant differences in adaptive response mechanisms

机译:恶臭假单胞菌mt-2菌落和浮游细胞的渗透压揭示了适应性反应机制的显着差异

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摘要

Planktonic cells and those grown on surfaces (or as colony biofilm) are known to show significant differences regarding growth behavior, cell physiology, gene expression and stress tolerance. In order to compare stress behavior of different growth forms, shake cultures for planktonic growth and agar plate cultivation for colony growth, were carried out with the well investigated model organism, Pseudomonas putida mt-2. Cells were exposed to sodium chloride to cause osmotic stress as one main environmental stressor bacteria have to cope with when growing in soil. Planktonic cells were more tolerant with a complete inhibition of growth at 0.7 M NaCl, compared to 0.5 M for agar-grown cells. Cell surface hydrophobicity, measured as water contact angles, was significantly higher for agar-grown cells (92°) than for planktonic cells (40°), and increased in the presence of NaCl. Agar-grown cells also showed a significantly higher degree of saturation of membrane fatty acids that increased in the presence of NaCl. These results demonstrate that planktonic and colony grown bacteria show different responses when confronted with osmotic stress suggesting that the tolerance and adaptive mechanisms are dependent on the environmental conditions as well as the initial physiological state.
机译:已知浮游细胞和在表面(或作为集落生物膜)上生长的细胞在生长行为,细胞生理,基因表达和胁迫耐受性方面显示出显着差异。为了比较不同生长形式的胁迫行为,使用经过充分研究的模型生物Pseudomonas putida mt-2进行了浮游生长的摇瓶培养和琼脂平板培养的菌落生长。细胞暴露于氯化钠中会引起渗透胁迫,这是一种在土壤中生长时必须应对的主要环境胁迫细菌。与琼脂生长细胞的0.5M相比,浮游生物细胞对0.7M NaCl的生长具有完全的抑制能力。琼脂生长细胞(92°)的细胞表面疏水性(以水接触角衡量)显着高于浮游细胞(40°),并且在存在NaCl的情况下增加。琼脂生长的细胞还表现出明显更高的膜脂肪酸饱和度,该饱和度在存在NaCl的情况下增加。这些结果表明,浮游细菌和菌落生长的细菌在面对渗透胁迫时表现出不同的响应,表明其耐受性和适应性机制取决于环境条件以及初始生理状态。

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