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首页> 外文期刊>Biotechnology Progress >Identification of Gene Disruptions for Increased Poly-3-hydroxybutyrate Accumulation in Synechocystis PCC 6803
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Identification of Gene Disruptions for Increased Poly-3-hydroxybutyrate Accumulation in Synechocystis PCC 6803

机译:脉管囊菌PCC 6803中增加聚3-羟基丁酸积累的基因破坏的鉴定。

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摘要

Inverse metabolic engineering (IME) is a combinatorial approach for identifying genotypes associated with a particular phenotype of interest. In this study, gene disruptions that increase the biosynthesis of poly-3-hydroxybutyrate (PHB) in the photosynthetic bacterium Synechocystis PCC6803 were identified. A Synechocystis mutant library was constructed by homologous recombination between the Synechocystis genome and a mutagenized genomic plasmid library generated through transposon insertion. Using a fluorescence-activated cell sorting-based high throughput screen, high PHB accumulating mutants from the library grown in different nutrient conditions were isolated and characterized. While several mutants isolated from the screen had increased PHB accumulation, transposon insertions in only two ORFs could be linked to increased PHB production. Disruptions of sll0461, coding for gamma-glutamyl phosphate reductase (proA), and sll0565, a hypothetical protein, resulted in increased accumulation in standard growth media and acetate supplemented media. These genetic perturbations have increased PHB accumulation in Synechocystis and serve as markers for engineering increased polymer production in higher photosynthetic organisms.
机译:逆向代谢工程(IME)是用于识别与特定目标表型相关的基因型的组合方法。在这项研究中,确定了破坏光合细菌圆藻PCC6803中聚-3-羟基丁酸酯(PHB)生物合成的基因破坏。通过集囊藻基因组和通过转座子插入产生的诱变的基因组质粒文库之间的同源重组,构建集囊藻突变体文库。使用基于荧光激活细胞分选的高通量筛选,从在不同营养条​​件下生长的文库中分离并鉴定了高PHB积累突变体。虽然从筛选中分离出的几个突变体具有增加的PHB积累,但只有两个ORF的转座子插入可能与PHB产生增加有关。编码γ-谷氨酰磷酸还原酶(proA)的sll0461和一种假设的蛋白sll0565的破坏导致在标准生长培养基和醋酸盐补充培养基中的积累增加。这些遗传扰动增加了集胞藻中的PHB积累,并充当了在高光合生物中工程化提高聚合物产量的标记。

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