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在以葡萄糖作为额外碳源存在的情况下,泡囊假单胞菌在儿茶酚和苯酚降解过程中的FAME图谱。

FAME profiles in Pseudomonas vesicularis during catechol and phenol degradation in the presence of glucose as an additional carbon source.

作者信息

Mrozik Agnieszka, Piotrowska-Seget Zofia, Labuzek Sylwia

机构信息

Department of Biochemistry, University of Silesia, Katowice, Poland.

出版信息

Pol J Microbiol. 2007;56(3):157-64.

Abstract

The aim of this study was to evaluate the impact of catechol and phenol added to culture media separately and with glucose as an additional, easily-degradable carbon source on fatty acid methyl ester (FAME) composition in Pseudomonas vesicularis. Simultaneously, the degradation rates of aromatic substrates used were investigated in single and binary substrate systems. Both catechol and phenol treatments caused changes in the distribution of tested groups of fatty acids. The most noticeable changes included an increase in degree of fatty acid saturation, the appearance of branched and disappearance of hydroxy fatty acids as compared to the control sample with glucose. Under catechol or phenol treatment sat/unsat ratio showed the values of 8.63 and 11.38, respectively, whereas in control cells it reached the value of 2.66. The high level of saturation comes from the high content of cyclopropane fatty acids in bacteria under exposure to aromatic substrates, regardless of the presence of glucose. In these treatments their content was more than 3-fold higher compared to the control. It has been demonstrated that glucose supplementation of culture media containing single aromatic substrate extended the degradation rates of catechol and phenol by P. vesicularis, caused an increase in number of cells but did not significantly change the fatty acid profiles in comparison with bacteria growing on catechol and phenol added to the media individually.

摘要

本研究的目的是评估单独添加儿茶酚和苯酚以及添加葡萄糖作为额外的易降解碳源到培养基中,对泡囊假单胞菌脂肪酸甲酯(FAME)组成的影响。同时,研究了在单一和二元底物系统中所用芳香族底物的降解率。儿茶酚和苯酚处理均导致受试脂肪酸组分布发生变化。与含葡萄糖的对照样品相比,最显著的变化包括脂肪酸饱和度增加、出现支链脂肪酸以及羟基脂肪酸消失。在儿茶酚或苯酚处理下,饱和/不饱和比值分别为8.63和11.38,而对照细胞中的该比值为2.66。高饱和度水平源于暴露于芳香族底物的细菌中环丙烷脂肪酸含量高,无论葡萄糖是否存在。在这些处理中,其含量比对照高出3倍多。已证明,向含有单一芳香族底物的培养基中添加葡萄糖可延长泡囊假单胞菌对儿茶酚和苯酚的降解率,导致细胞数量增加,但与分别在添加到培养基中的儿茶酚和苯酚上生长的细菌相比,脂肪酸谱没有显著变化。

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