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首页> 外文期刊>Applied and Environmental Microbiology >Formation of Polyesters by Pseudomonas oleovorans: Effect of Substrates on Formation and Composition of Poly-(R)-3-Hydroxyalkanoates and Poly-(R)-3-Hydroxyalkenoates
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Formation of Polyesters by Pseudomonas oleovorans: Effect of Substrates on Formation and Composition of Poly-(R)-3-Hydroxyalkanoates and Poly-(R)-3-Hydroxyalkenoates

机译:假单胞菌形成聚酯:底物对聚(R)-3-羟基链烷酸酯和聚(R)-3-羟基链烯酸酯的形成和组成的影响

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Pseudomonas oleovorans grows on C6 to C12n-alkanes and 1-alkenes. These substrates are oxidized to the corresponding fatty acids, which are oxidized further via the β-oxidation pathway, yielding shorter fatty acids which have lost one or more C2 units. P. oleovorans normally utilizes β-oxidation pathway intermediates for growth, but in this paper we show that the intermediate 3-hydroxy fatty acids can also be polymerized to intracellular poly-(R)-3-hydroxyalkanoates (PHAs) when the medium contains limiting amounts of essential elements, such as nitrogen. The monomer composition of these polyesters is a reflection of the substrates used for growth of P. oleovorans. The largest monomer found in PHAs always contained as many C atoms as did the n-alkane used as a substrate. Monomers which were shorter by one or more C2 units were also observed. Thus, for C-even substrates, only C-even monomers were found, the smallest being (R)-3-hydroxyhexanoate. For C-odd substrates, only C-odd monomers were found, with (R)-3-hydroxyheptanoate as the smallest monomer. 1-Alkenes were also incorporated into PHAs, albeit less efficiently and with lower yields than n-alkanes. These PHAs contained both saturated and unsaturated monomers, apparently because the 1-alkene substrates could be oxidized to carboxylic acids at either the saturated or the unsaturated ends. Up to 55% of the PHA monomers contained terminal double bonds when P. oleovorans was grown on 1-alkenes. The degree of unsaturation of PHAs could be modulated by varying the ratio of alkenes to alkanes in the growth medium. Since 1-alkenes were also shortened before being polymerized, as was the case for n-alkanes, copolymers which varied with respect to both monomer chain length and the percentage of terminal double bonds were formed during nitrogen-limited growth of P. oleovorans on 1-alkenes. Such polymers are expected to be useful for future chemical modifications.
机译:油假单胞菌生长在C6至C12n-烷烃和1-烯烃上。这些底物被氧化为相应的脂肪酸,然后通过β-氧化途径被进一步氧化,产生了较短的脂肪酸,这些脂肪酸失去了一个或多个C2单元。 P. oleovorans通常利用β-氧化途径的中间体进行生长,但是在本文中,我们证明了当培养基中含有限制性的3-羟基脂肪酸时,中间体3-羟基脂肪酸也可以聚合为细胞内的聚-(R)-3-羟基链烷酸酯(PHA)。必需元素的量,例如氮。这些聚酯的单体组成反映了用于油橄榄假单胞菌生长的底物。在PHA中发现的最大单体始终包含与用作底物的正构烷烃一样多的碳原子。还观察到短一个或多个C 2单元的单体。因此,对于C-even底物,仅发现C-even单体,最小的是(R)-3-羟基己酸酯。对于C奇数的底物,仅发现C奇数的单体,其中(R)-3-羟基庚酸酯是最小的单体。 1-烯烃也被掺入了PHA中,尽管效率低且收率低于正构烷烃。这些PHA既包含饱和单体,也包含不饱和单体,这显然是因为1-烯烃底物可以在饱和或不饱和末端被氧化为羧酸。当油菜单胞菌在1-烯烃上生长时,高达55%的PHA单体包含末端双键。可以通过改变生长培养基中烯烃与烷烃的比例来调节PHA的不饱和度。由于1-烯烃在聚合前也被缩短了,正链烷也是如此,因此,在P. oleovorans在1的氮限制下生长的过程中,形成了随单体链长和末端双键百分比而变化的共聚物。 -烯烃。预期此类聚合物可用于将来的化学修饰。

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