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Adaptive response of Rhodococcus opacus PWD4 to salt and phenolic stress on the level of mycolic acids

机译:不透明红球菌PWD4对盐和酚胁迫下霉菌酸水平的适应性反应

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摘要

Mycolata form a group of Gram-positive bacteria with unique cell envelope structures that are known for their high tolerance against antibiotics and both aromatic and aliphatic hydrocarbons. An important part of the unique surface structure of the mycolata is the presence of long chain α-alkyl-β-hydroxy fatty acids, the mycolic acids. In order to investigate the adaptive changes in the mycolic acid composition, we investigated the composition of mycolic acids during the response both to osmotic stress caused by NaCl and to 4-chlorophenol in Rhodococcus opacus PWD4. This bacterium was chosen as it is known to adapt to different kinds of stresses. In addition, it is a potential biocatalyst in bioremediation as well as for biotechnological applications. In the present study, cells of R. opacus PWD4, grown in liquid cultures, responded to toxic concentrations of NaCl by increasing the ratio between mycolic acids and membrane phospholipid fatty acids (MA/PLFA-ratio). Cells reacted to both NaCl and 4-chlorophenol by decreasing both the average chain length and the unsaturation index of their mycolic acids. These changes in mycolic acid composition correlated with increases in cell surface hydrophobicity and saturation of membrane fatty acids, demonstrating the relation between mycolic acid and phospholipid synthesis and their contribution to cell surface properties of R. opacus PWD4.
机译:霉菌形成一组革兰氏阳性细菌,它们具有独特的细胞包膜结构,以对抗生素以及芳香族和脂肪族烃的高耐受性而著称。霉菌独特表面结构的重要组成部分是长链α-烷基-β-羟基脂肪酸(霉菌酸)的存在。为了研究霉菌酸成分的适应性变化,我们调查了不透明红球菌PWD4对NaCl引起的渗透胁迫和4-氯苯酚的响应过程中霉菌酸的成分。选择这种细菌是因为已知它可以适应各种压力。此外,它在生物修复以及生物技术应用中也是潜在的生物催化剂。在本研究中,在液体培养物中生长的不透明假单胞菌PWD4细胞通过增加霉菌酸和膜磷脂脂肪酸的比例(MA / PLFA-比率)对NaCl的毒性浓度作出反应。细胞通过降低其霉菌酸的平均链长和不饱和指数而与NaCl和4-氯苯酚反应。霉菌酸组成的这些变化与细胞表面疏水性和膜脂肪酸饱和度的增加有关,证明了霉菌酸和磷脂合成之间的关系以及它们对不透明假单胞菌PWD4的细胞表面特性的贡献。

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