首页> 外文期刊>Applied Microbiology >Metabolic Engineering of Acinetobacter baylyi ADP1 for Improved Growth on Gluconate and Glucose
【24h】

Metabolic Engineering of Acinetobacter baylyi ADP1 for Improved Growth on Gluconate and Glucose

机译:巴氏不动杆菌ADP1的代谢工程用于改善葡萄糖酸盐和葡萄糖的生长

获取原文
       

摘要

A high growth rate in bacterial cultures is usually achieved by optimizing growth conditions, but metabolism of the bacterium limits the maximal growth rate attainable on the carbon source used. This limitation can be circumvented by engineering the metabolism of the bacterium. Acinetobacter baylyi has become a model organism for studies of bacterial metabolism and metabolic engineering due to its wide substrate spectrum and easy-to-engineer genome. It produces naturally storage lipids, such as wax esters, and has a unique gluconate catabolism as it lacks a gene for pyruvate kinase. We engineered the central metabolism of A. baylyi ADP1 more favorable for gluconate catabolism by expressing the pyruvate kinase gene ( pykF ) of Escherichia coli . This modification increased growth rate when cultivated on gluconate or glucose as a sole carbon source in a batch cultivation. The engineered cells reached stationary phase on these carbon sources approximately twice as fast as control cells carrying an empty plasmid and produced similar amount of biomass. Furthermore, when grown on either gluconate or glucose, pykF expression did not lead to significant accumulation of overflow metabolites and consumption of the substrate remained unaltered. Increased growth rate on glucose was not accompanied with decreased wax ester production, and the pykF -expressing cells accumulated significantly more of these storage lipids with respect to cultivation time.
机译:通常通过优化生长条件来实现细菌培养物中的高生长速率,但是细菌的代谢限制了所用碳源上可获得的最大生长速率。通过限制细菌的代谢可以避免这种局限性。拜氏不动杆菌由于其广泛的底物谱和易于设计的基因组,已成为研究细菌代谢和代谢工程的模型生物。它产生天然储存的脂质,例如蜡酯,并且由于缺乏丙酮酸激酶基因而具有独特的葡萄糖酸分解代谢。我们通过表达大肠埃希氏杆菌的丙酮酸激酶基因(pykF)设计了A.baylyi ADP1的中央代谢更利于葡萄糖代谢。在分批培养中以葡萄糖酸盐或葡萄糖作为唯一碳源进行培养时,这种修饰提高了生长速率。经过改造的细胞在这些碳源上达到固定相的速度约为携带空质粒的对照细胞的两倍,并产生了相似量的生物质。此外,当在葡萄糖酸盐或葡萄糖上生长时,pykF表达不会导致溢出代谢物的大量积累,并且底物的消耗保持不变。葡萄糖生长速率的增加并不会伴随蜡酯产量的降低,并且就培养时间而言,表达pykF的细胞积聚了更多的这些存储脂质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号