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[甲基营养型兼性甲基杆菌G-10在甲醇-戊醇混合物上生长过程中不同分子量聚羟基丁酸酯/戊酸酯的生物合成]

[Biosynthesis of polyhydroxybutyrate/valerate with different molecular weights during the growth of Methylobacterium extorquens G-10 on a methanol-pentanol mixture].

作者信息

Ezhov V A, Doronina N V, Trotsenko Iu A

出版信息

Prikl Biokhim Mikrobiol. 2013 Mar-Apr;49(2):171-4. doi: 10.7868/s0555109913020049.

Abstract

The influence of the concentration and time of addition of cosubstrate (pentanol) on the molecular weight (MW) of the polyhydroxybutyrate/valerate (PHBV) copolymer synthesized by Methylobacterium extorquens G-10 during cultivation in a methanol-containing medium has been studied. It was shown that an increase in the pentanol concentration to 20% in a mixture with methanol stimulated the biosynthesis of PHBV with a MW of approximately 1500 kDa and increased the content of valerate up to 50%, especially when pentanol was added to the log phase culture. High pentanol concentrations are toxic for the producer and reduce the total yield of PHBV. An MW increase to 1500 kDa lowers the melting temperature (from 172 to 162 degrees C) and the crystallinity degree (from 63 to 8%) of the biopolymer but increases its elasticity. The revealed variability of PHBV properties extends considerably the potential application areas of synthetic bioplastics.

摘要

已研究了共底物(戊醇)的浓度和添加时间对扭脱甲基杆菌G-10在含甲醇培养基中培养期间合成的聚羟基丁酸酯/戊酸酯(PHBV)共聚物分子量(MW)的影响。结果表明,在与甲醇的混合物中,将戊醇浓度提高到20%会刺激分子量约为1500 kDa的PHBV的生物合成,并将戊酸酯含量提高到50%,特别是当戊醇添加到对数期培养物中时。高戊醇浓度对生产者有毒,并会降低PHBV的总产量。分子量增加到1500 kDa会降低生物聚合物的熔点(从172℃降至162℃)和结晶度(从63%降至8%),但会增加其弹性。所揭示的PHBV特性的变异性大大扩展了合成生物塑料的潜在应用领域。

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