首页> 外文期刊>Microbial Cell Factories >Disruption of poly (3-hydroxyalkanoate) depolymerase gene and overexpression of three poly (3-hydroxybutyrate) biosynthetic genes improve poly (3-hydroxybutyrate) production from nitrogen rich medium by Rhodobacter sphaeroides
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Disruption of poly (3-hydroxyalkanoate) depolymerase gene and overexpression of three poly (3-hydroxybutyrate) biosynthetic genes improve poly (3-hydroxybutyrate) production from nitrogen rich medium by Rhodobacter sphaeroides

机译:聚(3-羟基链烷酸酯)解聚酶基因的破坏和三个聚(3-羟基丁酸酯)生物合成基因的过表达提高了球形红球菌从富氮培养基中生产聚(3-羟基丁酸酯)的能力

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Due to various environmental problems, biodegradable polymers such as poly?(3-hydroxybutyrate) (PHB) have gained much attention in recent years. Purple non-sulfur (PNS) bacteria have various attractive characteristics useful for environmentally harmless PHB production. However, production of PHB by PNS bacteria using genetic engineering has never been reported. This study is the first report of a genetically engineered PNS bacterial strain with a high PHB production. We constructed a poly?(3-hydroxyalkanoate) depolymerase (phaZ) gene-disrupted Rhodobacter sphaeroides HJ strain. This R. sphaeroides HJΔphaZ (pLP-1.2) strain showed about 2.9-fold higher volumetric PHB production than that of the parent HJ (pLP-1.2) strain after 5?days of culture. The HJΔphaZ strain was further improved for PHB production by constructing strains overexpressing each of the eight genes including those newly found and annotated as PHB biosynthesis genes in the KEGG GENES Database. Among these constructed strains, all of gene products exhibited annotated enzyme activities in the recombinant strain cells, and HJΔphaZ (phaA3), HJΔphaZ (phaB2), and HJΔphaZ (phaC1) showed about 1.1-, 1.1-, and 1.2-fold higher volumetric PHB production than that of the parent HJΔphaZ (pLP-1.2) strain. Furthermore, we constructed a strain that simultaneously overexpresses all three phaA3, phaB2, and phaC1 genes; this HJΔphaZ (phaA3/phaB2/phaC1) strain showed about 1.7- to 3.9-fold higher volumetric PHB production (without ammonium sulfate; 1.88?±?0.08?g?l?1 and with 100?mM ammonium sulfate; 0.99?±?0.05?g?l?1) than those of the parent HJ (pLP-1.2) strain grown under nitrogen limited and rich conditions, respectively. In this study, we identified eight different genes involved in PHB biosynthesis in the genome of R. sphaeroides 2.4.1, and revealed that their overexpression increased PHB accumulation in an R. sphaeroides HJ strain. In addition, we demonstrated the effectiveness of a phaZ disruption for high PHB accumulation, especially under nitrogen rich conditions. Furthermore, we showed that PNS bacteria may have some unidentified genes involved in poly?(3-hydroxyalkanoates) (PHA) biosynthesis. Our findings could lead to further improvement of environmentally harmless PHA production techniques using PNS bacteria.
机译:由于各种环境问题,近年来,诸如β-(3-羟基丁酸酯)(PHB)之类的可生物降解的聚合物备受关注。紫色无硫(PNS)细菌具有多种吸引人的特性,可用于无害环境的PHB生产。但是,从未报道过使用基因工程技术通过PNS细菌生产PHB。该研究是PHB产量高的基因工程PNS细菌菌株的首次报道。我们构建了一种聚α(3-羟基链烷酸酯)解聚酶(phaZ)基因破坏球形球形红细菌HJ菌株。培养5天后,这种球形红球菌HJΔphaZ(pLP-1.2)菌株的PHB产量比亲代HJ(pLP-1.2)菌株高2.9倍。通过构建超表达八个基因的菌株,包括在KEGG GENES数据库中新发现并注释为PHB生物合成基因的HJΔphaZ菌株,进一步提高了PHB的生产能力。在这些构建的菌株中,所有基因产物在重组菌株细胞中均显示出带注释的酶活性,HJΔphaZ(phaA3),HJΔphaZ(phaB2)和HJΔphaZ(phaC1)的PHB体积约高1.1倍,1.1倍和1.2倍。产量高于亲本HJΔphaZ(pLP-1.2)菌株。此外,我们构建了一个同时同时表达所有三个phaA3,phaB2和phaC1基因的菌株。这种HJΔphaZ(phaA3 / phaB2 / phaC1)菌株的PHB产量高出约1.7到3.9倍(无硫酸铵;1.88≤±0.08≤g≤l≤1,含100μmM硫酸铵;0.99≤±3。分别比在有限氮条件和富氮条件下生长的亲本HJ(pLP-1.2)菌株高0.05?g?l?1)。在这项研究中,我们确定了8个不同的基因参与球形芽孢杆菌2.4.1的PHB生物合成,并揭示了它们的过表达增加了球形芽孢杆菌HJ菌株中的PHB积累。此外,我们证明了phaZ破坏对于高PHB积累的有效性,尤其是在富氮条件下。此外,我们表明PNS细菌可能具有一些参与聚α(3-羟基链烷酸酯)(PHA)生物合成的基因。我们的发现可能会导致使用PNS细菌的对环境无害的PHA生产技术的进一步改进。

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