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首页> 外文期刊>Microbial Cell Factories >Production and characterization of two medium-chain-length polydroxyalkanoates by engineered strains of Yarrowia lipolytica
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Production and characterization of two medium-chain-length polydroxyalkanoates by engineered strains of Yarrowia lipolytica

机译:通过解脂耶氏酵母工程菌株生产和表征两种中等链长的聚羟基链烷酸酯

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The oleaginous yeast Yarrowia lipolytica is an organism of choice for the tailored production of various compounds such as biofuels or biopolymers. When properly engineered, it is capable of producing medium-chain-length polyhydroxyalkanoate (mcl-PHA), a biobased and biodegradable polymer that can be used as bioplastics or biopolymers for environmental and biomedical applications. This study describes the bioproduction and the main properties of two different mcl-PHA polymers. We generated by metabolic engineering, strains of Y. lipolytica capable of accumulating more than 25% (g/g) of mcl-PHA polymers. Depending of the strain genetic background and the culture conditions, we produced (i) a mcl-PHA homopolymer of 3-hydroxydodecanoic acids, with a mass-average molar mass (Mw) of 316,000?g/mol, showing soft thermoplastic properties with potential applications in packaging and (ii) a mcl-PHA copolymer made of 3-hydroxyoctanoic (3HO), decanoic (3HD), dodecanoic (3HDD) and tetradecanoic (3TD) acids with a Mw of 128,000?g/mol, behaving like a thermoplastic elastomer with potential applications in biomedical material. The ability to engineer Y. lipolytica to produce tailored PHAs together with the range of possible applications regarding their biophysical and mechanical properties opens new perspectives in the field of PHA bioproduction.
机译:产油酵母解脂耶氏酵母是为各种化合物(如生物燃料或生物聚合物)量身定制生产的一种选择生物。经过适当的工程设计,它能够生产中链长度的聚羟基链烷酸酯(mcl-PHA),这是一种生物基和可生物降解的聚合物,可用作环境和生物医学应用的生物塑料或生物聚合物。这项研究描述了两种不同的mcl-PHA聚合物的生物生产和主要特性。我们通过代谢工程生成了解脂耶氏酵母菌株,这些菌株能够积累超过25%(g / g)的mcl-PHA聚合物。根据菌株的遗传背景和培养条件,我们制备了(i)3-羟基十二烷酸的mcl-PHA均聚物,重均摩尔质量(Mw)为316,000?g / mol,显示出具有潜在的柔软热塑性特性(ii)由MHC为128,000?g / mol的3-羟基辛酸(3HO),癸酸(3HD),十二烷酸(3HDD)和十四烷酸(3TD)制成的mcl-PHA共聚物,其行为类似于热塑性塑料弹性体在生物医学材料中的潜在应用。改造解脂耶氏酵母以生产定制的PHA的能力以及有关其生物物理和机械性质的可能应用范围,为PHA生物生产领域开辟了新的前景。

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