Research on the targeted improvement of the yield of a new VB12-producing strain, Ensifer adhaerens S305, based on genomic and transcriptomic analysis

生物 转录组 拉伤 基因 小桶 16S核糖体RNA 遗传学 RNA序列 基因表达 解剖
作者
Yongheng Liu,Wei Huang,Qi Wang,Cilang Ma,Yongyong Chang,Jianyu Su
出处
期刊:BMC Biotechnology [BioMed Central]
卷期号:23 (1) 被引量:4
标识
DOI:10.1186/s12896-023-00824-3
摘要

Abstract Background Vitamin B 12 (VB 12 ) has a wide range of applications and high economic value. In this study, a new strain with high VB 12 production potential, Ensifer adhaerens S305, was identified in sewage. Because E. adhaerens strains have become the main strains for VB 12 production via fermentation in recent years, the directional modification of the S305 strain to obtain a strain suitable for the industrial production of VB 12 has great potential and commercial value. Results 16S rRNA and genome-wide phylogenetic tree analysis combined with average nucleotide identity (ANI) analysis showed that the high-yielding VB 12 strain was a E. adhaerens strain and that its VB 12 synthesis pathway genes were highly similar to related genes of strains of this and other species, including E. adhaerens Casida A, Pseudomonas denitrificans SC 510, and E. adhaerens Corn53. High-pressure liquid chromatography (HPLC) results indicated that the VB 12 yields of the S305 strain were more than double those of the Casida A strain under different medium components. Multiple genes with significantly upregulated and downregulated transcription were identified by comparing the transcription intensity of different genes through transcriptome sequencing. KEGG enrichment analysis of the porphyrin metabolism pathway identified 9 significantly upregulated and downregulated differentially expressed genes (DEGs) in the VB 12 synthesis pathway, including 7 transcriptionally upregulated genes ( cobA , cobT , hemA , cobJ , cobN , cobR , and cobP ) that were episomally overexpressed in the Casida A strain. The results showed that the VB 12 yield of the overexpressed strain was higher than that of the wild-type strain. Notably, the strains overexpressing the cobA and cobT genes exhibited the most significant increases in VB 12 yield, i.e., 31.4% and 24.8%, respectively. The VB 12 yield of the S305 strain in shake-flask culture was improved from 176.6 ± 8.21 mg/L to 245.6 ± 4.36 mg/L by integrating the cobA and cobT genes into the strain. Conclusion Phylogenetic tree and ANI analysis showed that the Ensifer and Sinorhizobium strains were quite different at the genome level; the overexpression and integrated expression of significantly upregulated genes in the VB 12 synthesis pathway could increase the yield of VB 12 , further improving the VB 12 yield of the E. adhaerens S305 strain.
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