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Biosynthesis of Novel Aromatic Copolyesters from Insoluble 11-Phenoxyundecanoic Acid by Pseudomonas putida BM01

机译:恶臭假单胞菌BM01从不溶性11-苯氧基十一烷酸生物合成新型芳香共聚酯

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摘要

Two types of novel aromatic copolyesters were synthesized from 11-phenoxyundecanoic acid (11-POU) as the sole carbon source and the cosubstrates 11-POU and octanoate, respectively, by isolated Pseudomonas putida BM01 that is known to accumulate high concentrations of medium-chain-length polyesters. Insoluble 11-POU was recrystallized in situ in buffer by alkaline treatment and pH adjustment, followed by autoclaving. The resulting microcrystals, whose structure was different from that of the commercially available crystalline powder, suspended in media were rapidly consumed by the bacterium. Synthesized polymers were characterized by gas chromatography, nuclear magnetic resonance spectroscopy, and differential scanning calorimetry. The aromatic copolyesters synthesized from 11-POU were composed of two monomer units consisting of 3-hydroxy-5-phenoxyvalerate (5POHV) as the major component (72 to 85 mol%) and 3-hydroxy-7-phenoxyheptanoate (7POHH) as the minor component (15 to 28 mol%). The aromatic copolyesters showed a crystalline melting transition at 70(deg)C. When the bacterium was grown on the cosubstrates 11-POU and octanoate, the bacterium synthesized the copolyesters composed of aromatic and aliphatic monomers poly(5POHV-co-7POHH-co-3-hydroxy-9-phenoxynonanoate-co-3-hydroxyalkanoates) . The addition of octanoate in the feed shifted the major monomer unit in the polymer from 5POHV to 7POHH. A further-fragmented metabolite, 3-phenoxypropionate, whose concentration reached a steady state at the time of greatest polyester accumulation, was detected in the medium. The metabolic pathway of 11-POU is suggested.
机译:通过分离的恶臭假单胞菌BM01合成了两种类型的新型芳香族共聚酯,分别由11-苯氧基十一烷酸(11-POU)作为唯一碳源和共底物11-POU和辛酸酯合成,已知恶臭假单胞菌BM01会积聚高浓度的中链长聚酯。不溶性11-POU通过碱处理和pH调节在缓冲液中原位重结晶,然后进行高压灭菌。悬浮在培养基中的结构与市售结晶粉末不同的微晶体被细菌迅速消耗。通过气相色谱,核磁共振波谱和差示扫描量热法对合成的聚合物进行了表征。由11-POU合成的芳族共聚酯由两个单体单元组成,其中3-羟基-5-苯氧基戊酸酯(5POHV)为主要成分(72至85 mol%)和3-羟基-7-苯氧基庚酸酯(7POHH)为单体微量成分(15至28摩尔%)。芳族共聚酯在70℃下显示出晶体熔融转变。当细菌在共底物11-POU和辛酸酯上生长时,细菌合成了由芳族和脂族单体聚(5POHV-co-7POHH-co-3-羟基-9-苯氧基壬酸酯-co-3-羟基链烷酸酯)组成的共聚酯。在进料中添加辛酸酯将聚合物中的主要单体单元从5POHV转移到7POHH。在培养基中检测到另一片代谢物3-苯氧基丙酸酯,其浓度在最大聚酯积累时达到稳态。建议11-POU的代谢途径。

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