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基于比较基因组学和代谢组学研究对酮古龙酸菌Hbe602互利共生机制及多样代谢的洞察

Insights into mutualism mechanism and versatile metabolism of Ketogulonicigenium vulgare Hbe602 based on comparative genomics and metabolomics studies.

作者信息

Jia Nan, Ding Ming-Zhu, Du Jin, Pan Cai-Hui, Tian Geng, Lang Ji-Dong, Fang Jian-Huo, Gao Feng, Yuan Ying-Jin

机构信息

Key Laboratory of Systems Bioengineering (Ministry of Education), School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, PR China.

SynBio Research Platform, Collaborative Innovation Centre of Chemical Science and Engineering (Tianjin), School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, PR China.

出版信息

Sci Rep. 2016 Mar 16;6:23068. doi: 10.1038/srep23068.

Abstract

Ketogulonicigenium vulgare has been widely used in vitamin C two steps fermentation and requires companion strain for optimal growth. However, the understanding of K. vulgare as well as its companion strain is still preliminary. Here, the complete genome of K. vulgare Hbe602 was deciphered to provide insight into the symbiosis mechanism and the versatile metabolism. K. vulgare contains the LuxR family proteins, chemokine proteins, flagellar structure proteins, peptides and transporters for symbiosis consortium. Besides, the growth state and metabolite variation of K. vulgare were observed when five carbohydrates (D-sorbitol, L-sorbose, D-glucose, D-fructose and D-mannitol) were used as carbon source. The growth increased by 40.72% and 62.97% respectively when K. vulgare was cultured on D-mannitol/D-sorbitol than on L-sorbose. The insufficient metabolism of carbohydrates, amino acids and vitamins is the main reason for the slow growth of K. vulgare. The combined analysis of genomics and metabolomics indicated that TCA cycle, amino acid and nucleotide metabolism were significantly up-regulated when K. vulgare was cultured on the D-mannitol/D-sorbitol, which facilitated the better growth. The present study would be helpful to further understand its metabolic structure and guide the engineering transformation.

摘要

普通酮古龙酸菌已广泛应用于维生素C两步发酵,且需要伴生菌株以实现最佳生长。然而,对普通酮古龙酸菌及其伴生菌株的了解仍处于初步阶段。在此,对普通酮古龙酸菌Hbe602的全基因组进行了解析,以深入了解其共生机制和多样的代谢。普通酮古龙酸菌含有用于共生菌群的LuxR家族蛋白、趋化因子蛋白、鞭毛结构蛋白、肽和转运蛋白。此外,当使用五种碳水化合物(D-山梨醇、L-山梨糖、D-葡萄糖、D-果糖和D-甘露醇)作为碳源时,观察了普通酮古龙酸菌的生长状态和代谢物变化。与在L-山梨糖上培养相比,普通酮古龙酸菌在D-甘露醇/D-山梨醇上培养时生长分别增加了40.72%和62.97%。碳水化合物、氨基酸和维生素代谢不足是普通酮古龙酸菌生长缓慢的主要原因。基因组学和代谢组学的联合分析表明,当普通酮古龙酸菌在D-甘露醇/D-山梨醇上培养时,三羧酸循环、氨基酸和核苷酸代谢显著上调,这促进了更好的生长。本研究将有助于进一步了解其代谢结构并指导工程改造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2724/4793288/b28a1a13ee2f/srep23068-f1.jpg

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