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Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) co-produced with l-isoleucine in Corynebacterium glutamicum WM001

机译:聚(3-羟基丁酸酯-CO-3-羟基羟基戊烷)用L-异亮氨酸在棒状杆菌WM001中共产生

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摘要

Abstract Background Co-production of polyhydroxyalkanoate (PHA) and amino acids makes bacteria effective microbial cell factories by secreting amino acids outside while accumulating PHA granules inside. Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) is one of the PHAs with biocompatibility and fine mechanical properties, but its production is limited by the low level of intracellular propionyl-CoA. Results l-Isoleucine producing Corynebacterium glutamicum strain WM001 were analyzed by genome and transcriptome sequencing. The results showed that the most over-expressed genes in WM001 are relevant not only to l-isoleucine production but also to propionyl-CoA accumulation. Compared to the wild-type C. glutamicum ATCC13869, the transcriptional levels of the genes prpC2, prpD2, and prpB2, which are key genes relevant to propionyl-CoA accumulation, increased 26.7, 25.8, and 28.4-folds in WM001, respectively; and the intracellular level of propionyl-CoA increased 16.9-fold in WM001. When the gene cluster phaCAB for PHA biosynthesis was introduced into WM001, the recombinant strain WM001/pDXW-8-phaCAB produced 15.0 g/L PHBV with high percentage of 3-hydroxyvalerate as well as 29.8 g/L l-isoleucine after fed-batch fermentation. The maximum 3-hydroxyvalerate fraction in PHBV produced by WM001/pDXW-8-phaCAB using glucose as the sole carbon source could reach 72.5%, which is the highest reported so far. Conclusions Genome and transcriptome analysis showed that C. glutamicum WM001 has potential to accumulate l-isoleucine and propionyl-CoA pool. This was experimentally confirmed by introducing the phaCAB gene cluster into WM001. The recombinant strain WM001/pDXW-8-phaCAB produced high levels of PHBV with high 3-hydroxyvalerate fraction as well as l-isoleucine. Because of its high level of intracellular propionyl-CoA pool, WM001 might be used for producing other propionyl-CoA derivatives.
机译:摘要通过在内外分泌氨基酸,聚羟基烷烷(PHA)和氨基酸的外羟基烷酸酯(PHA)和氨基酸的共同制备使细菌有效的微生物细胞工厂。聚(3-羟基丁酸酯-CO-3-羟基戊烷)(PHBV)是具有生物相容性和精细机械性能的PHA之一,但其生产受细胞内丙酰基-COA的低水平的限制。结果通过基因组和转录组测序分析L-异氨氨酸产生谷氨酸菌株WM001。结果表明,WM001中最表达的基因不仅与L-异亮氨酸产生相关,还与丙氨基 - 辅酶积累相关。与野生型C.Glutamicum ATCC13869相比,基因PRPC2,PRPD2和PRPB2的转录水平分别是与丙酰基-COA积累的关键基因,分别增加了26.7,25.8和28.4倍的WM001;并且在WM001中的丙酰基-CoA的细胞内水平增加了16.9倍。当将Pha生物合成的基因簇phaCab引入WM001时,重组菌株Wm001 / pdxw-8-氏植物在喂食后,具有高百分比的3-羟基戊戊戊烯和29.8g / L L-异亮率产生15.0g / L pHACAB发酵。使用葡萄糖作为唯一碳源的WM001 / PDXW-8-PHACAB产生的PHBV中的最大3-羟基戊级分数可达到72.5%,这是到目前为止的最高报道。结论基因组和转录组分析表明,C.谷氨酰胺WM001具有积累L-异亮氨酸和丙氨基池的潜力。通过将Phacab基因簇引入WM001来实验证实。重组菌株WM001 / PDXW-8-PHACAB产生高水平的PHBV,具有高3-羟基戊级分数以及L-异亮氨酸。由于其高水平的细胞内丙酰基-CoA池,WM001可用于生产其他丙酰基-COA衍生物。

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