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Identification of phenyldecanoic acid as a constituent of triacylglycerols and wax ester produced by Rhodococcus opacus PD630

机译:作为rhodococcus opacus pd630产生的三酰基甘油和蜡酯的苯二丁酸的鉴定

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Phenyldecane supported growth and lipid accumulation of Rhodococcus opacus PD630 during cultivation under nitrogen-limiting conditions. The results of this study suggested that the hydrocarbon phenyldecane was degraded by monoterminal oxidation, followed by β-oxidation of the alkyl side-chain to phenylacetic acid, and by an additional degradative route for the oxidation of the latter to intermediates of the central metabolism. α-Oxidation of phenyldecanoic acid also occurred to some extent. Phenyldecanoic acid, the monoterminal oxidation product, was also utilized for the biosynthesis of a novel wax ester and novel triacylglycerols. The formation of the wax ester phenyldecylphenyldecanoate probably resulted from the condensation of phenyldecanoic acid and phenyldecanol, which were produced as metabolites during the catabolism of phenyldecane. Two types of triacylglycerol were detected in phenyldecane-grown cells of strain PD630. Triacylglycerols containing only odd- and even-numbered aliphatic fatty acids, as well as triacylglycerols in which one fatty acid was replaced by a phenyldecanoic acid residue, occurred. Other phenyl intermediates, such as phenylacetic acid, phenylpropionic acid, 4-hydroxyphenylpropionic acid, protocatechuate and homogentisic acid, were excreted into the medium during cultivation on phenyldecane. On the basis of the results obtained, pathways for the catabolism and assimilation of phenyldecane by R. opacus PD630 are discussed.
机译:在氮气限制条件下培养期间,PhenyldeCane支持rhodococcus opacus pd630的生长和脂质积累。该研究的结果表明,通过单调氧化,烃苯二甲酸碳酸盐降解,然后通过烷基侧链对苯乙酸的β-氧化,并通过另外的降解途径用于氧化后者至中央代谢的中间体。在一定程度上也发生了苯二甲酸的α-氧化。苯基二癸酸,单调氧化产物,也用于新型蜡酯和新型三酰基甘油的生物合成。蜡酯苯基苯基苯基的形成可能是由于苯基二癸酸和苯基甲酚的缩合而导致,该苯甲苯二酚在苯甲醛的分解代谢期间被制造为代谢物。在菌株PD630的苯二氯癸烷细胞中检测到两种类型的三酰基甘油。三酰基甘油仅含有奇数和偶数脂族脂肪酸,以及三酰基甘油,其中发生了一种脂肪酸的脂肪酸替代的苯二氯酸残基。其他苯基中间体,例如苯基乙酸,苯基丙酸,4-羟基苯基丙酸,Protocatechue和同型酸,在培养的培养基中排出培养基。在获得的结果的基础上,讨论了CACACUS PD630的分解代谢和苯妥的分解和同化的途径。

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