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Synthesis and production of polyhydroxyalkanoates by halophiles: Current potential and future prospects

机译:嗜盐菌的合成和多羟基链烷酸酯的生产:当前的潜力和未来的前景

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摘要

Biodegradable materials with plastic or elastomeric properties are in great demand for a variety of applications. Polyhydroxyalkanoates (PHAs), polyesters synthesized by microorganisms, possess such desired features. Industrial production of PHAs is currently achieved using recombinant Escherichia coli. Nevertheless, recent research on halophiles, salt requiring microorganisms, has shown a remarkable potential for biotechnological production of PHAs. The halophilic archaeon Haloferax mediterranei accumulates a co-polymer, i.e., poly(3-hydroxybutyrate-co-3-hydroxyvalerate) in large amounts using glucose, starch, and hydrolyzed whey as carbon sources. Chemical composition and molecular weight of PHAs produced by H. mediterranei can be modified depending on the substrate utilized as precursor. Phylogenetic studies on haloarchaeal enzymes able to polymerize the components of PHAs (i.e., PHA synthases) reveal a novel cluster, with a close relationship with PHA polymerases of bacteria and archaea found in marine-related niches. On the other hand, sequences of PHA synthases of two halophilic bacteria are more closely affiliated to synthases of Proteobacteria. Several bacterial species of the family Halomonadaceae accumulate PHAs. Halomonas boliviensis reached PHA yields and volumetric productivities close to the highest reported so far. Furthermore, H. boliviensis and other Halomonas species are able to co-produce PHA and osmolytes, i.e., ectoines and hydroxyectoine, in one process.
机译:具有塑料或弹性体性质的可生物降解材料在各种应用中都非常需要。由微生物合成的聚酯多羟基链烷酸酯(PHA)具有这种所需的特性。目前,使用重组大肠杆菌可实现PHA的工业化生产。然而,最近对嗜盐菌(需要盐的微生物)的研究显示出在生物技术上生产PHAs的巨大潜力。嗜盐古细菌Haloferax mediterranei使用葡萄糖,淀粉和水解乳清作为碳源,积累了大量共聚物,即聚(3-羟基丁酸酯-co-3-羟基戊酸酯)。可以根据用作前体的底物来改变由地中海嗜血杆菌产生的PHA的化学组成和分子量。对能够聚合PHA组分(即PHA合成酶)的卤代古细菌酶的系统发生研究揭示了一种新型簇,与海洋相关壁ni中发现的细菌和古生菌的PHA聚合酶密切相关。另一方面,两种嗜盐细菌的PHA合成酶序列与变形杆菌的合成酶更紧密相关。 Halomonadaceae家族的几种细菌会积累PHA。玻利维亚盐单胞菌达到了PHA产量和容积生产力,接近迄今报道的最高水平。此外,玻利维氏杆菌和其他卤单胞菌属物种能够在一个过程中共同生产PHA和渗透压剂,即,胞外蛋白和羟基胞外蛋白。

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