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聚(3-羟基丁酸酯-3-羟基己酸酯)[P(3HB-3HHx)]及其影响其生产的基因修饰综述。

A review on poly(3-hydroxybutyrate--3-hydroxyhexanoate) [P(3HB--3HHx)] and genetic modifications that affect its production.

作者信息

Tang Hui Jia, Neoh Soon Zher, Sudesh Kumar

机构信息

Ecobiomaterial Research Laboratory, School of Biological Sciences, Universiti Sains Malaysia, Pulau Pinang, Malaysia.

出版信息

Front Bioeng Biotechnol. 2022 Dec 5;10:1057067. doi: 10.3389/fbioe.2022.1057067. eCollection 2022.

Abstract

Polyhydroxyalkanoates (PHAs) have garnered global attention to replace petroleum-based plastics in certain applications due to their biodegradability and sustainability. Among the different types of PHAs, poly(3-hydroxybutyrate--3-hydroxyhexanoate) [P(3HB--3HHx)] copolymer has similar properties to commodity plastics, making them a suitable candidate to replace certain types of single-use plastics, medical devices, and packaging materials. The degradation rate of P(3HB--3HHx) is faster than the commercial petroleum-based plastics which take a very long time to be degraded, causing harmful pollution to both land and marine ecosystem. The biodegradability of the P(3HB--3HHx) is also dependent on its 3HHx molar composition which in turn influences the crystallinity of the material. Various metabolic pathways like the common PHA biosynthesis pathway, which involves and , β-oxidation, and fatty acids synthesis are used by bacteria to produce PHA from different carbon sources like fatty acids and sugars, respectively. There are various factors affecting the 3HHx molar composition of P(3HB--3HHx), like PhaCs, the engineering of PhaCs, and the metabolic engineering of strains. It is crucial to control the 3HHx molar composition in the P(3HB--3HHx) as it will affect its properties and applications in different fields.

摘要

聚羟基脂肪酸酯(PHA)因其生物可降解性和可持续性,在某些应用中取代石油基塑料而受到全球关注。在不同类型的PHA中,聚(3-羟基丁酸酯-3-羟基己酸酯)[P(3HB-3HHx)]共聚物具有与通用塑料相似的性能,使其成为替代某些类型一次性塑料、医疗设备和包装材料的合适候选物。P(3HB-3HHx)的降解速度比商业石油基塑料快,后者需要很长时间才能降解,会对陆地和海洋生态系统造成有害污染。P(3HB-3HHx)的生物可降解性还取决于其3HHx摩尔组成,而这又反过来影响材料的结晶度。细菌利用各种代谢途径,如常见的PHA生物合成途径(涉及和、β-氧化以及脂肪酸合成),分别从脂肪酸和糖等不同碳源生产PHA。有多种因素影响P(3HB-3HHx)的3HHx摩尔组成,如PhaCs、PhaCs的工程改造以及菌株的代谢工程。控制P(3HB-3HHx)中的3HHx摩尔组成至关重要,因为它会影响其在不同领域的性能和应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f384/9760699/b5e211ca1baa/fbioe-10-1057067-g001.jpg

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