| Literature DB >> 26911736 |
Kaihua Ji1, Wei Wang2,3, Bing Zeng1, Sibin Chen1, Qianqian Zhao4, Yueqing Chen1, Guoqiang Li1, Ting Ma1.
Abstract
Enterobacter sp. FY-07 can produce bacterial cellulose (BC) under aerobic and anaerobic conditions. Three potential BC synthesis gene clusters (bcsI, bcsII and bcsIII) of Enterobacter sp. FY-07 have been predicted using genome sequencing and comparative genome analysis, in which bcsIII was confirmed as the main contributor to BC synthesis by gene knockout and functional reconstitution methods. Protein homology, gene arrangement and gene constitution analysis indicated that bcsIII had high identity to the bcsI operon of Enterobacter sp. 638; however, its arrangement and composition were same as those of BC synthesizing operon of G. xylinum ATCC53582 except for the flanking sequences. According to the BC biosynthesizing process, oxygen is not directly involved in the reactions of BC synthesis, however, energy is required to activate intermediate metabolites and synthesize the activator, c-di-GMP. Comparative transcriptome and metabolite quantitative analysis demonstrated that under anaerobic conditions genes involved in the TCA cycle were downregulated, however, genes in the nitrate reduction and gluconeogenesis pathways were upregulated, especially, genes in three pyruvate metabolism pathways. These results suggested that Enterobacter sp. FY-07 could produce energy efficiently under anaerobic conditions to meet the requirement of BC biosynthesis.Entities:
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Year: 2016 PMID: 26911736 PMCID: PMC4766428 DOI: 10.1038/srep21863
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Cellulose synthesis-related gene clusters from Enterobacter sp. FY-07.
(a) Structure of cellulose synthesis-related gene clusters from Enterobacter sp. FY-07, Enterobacter sp. 638 and G. xylinum ATCC 53582; (b) Effects of gene-knockout on the cellulose production of Enterobacter sp. FY-07. (c) The bacterial cellulose (BC) production ability of Enterobacter sp. FY-07 gene knockout mutants under aerobic and anaerobic conditions.
Figure 2Transcription profiles of genes encoding enzymes for the glycolytic pathway, gluconeogenic pathway, pentose phosphate pathway, TCA cycle, nitrate reduction pathway, bacterial cellulose synthesis pathway and colanic acid synthesis pathway.
Green indicates that the transcription of the gene encoding the enzyme related to this reaction was downregulated under anaerobic conditions. Red indicates upregulated under anaerobic conditions.
Figure 3(a) Cell growth, BC production and glucose comsumption of Enterobacter sp. FY-07. (b) Metabolite quantitative analysis of Enterobacter sp. FY-07 in fermentation medium under aerobic and anaerobic conditions. Data indicate the means ± standard deviations from three independent experiments performed in triplicate.
Figure 4Summary of Enterobacter sp. FY-07 cultures investigated in this study.
Nitrate, nitrite and sulfate concentrations in the culture medium are shown. Values are the means of three experiments with standard deviations.
Strains and plasmids used in this study.
| strains | description | reference |
|---|---|---|
| This lab | ||
| F−φ80 | This lab | |
| wild-type strain | Ting Ma | |
| Δ | This work | |
| Δ | This work | |
| Δ | This work | |
| Δ | This work | |
| Δ | This work | |
| Δ | This work | |
| Δ | This work | |
| Δ | This work | |
| ΔAKI40_0895 deletion derivative of FY-07 | This work | |
| This work | ||
| plasmids | ||
| pKD46 | Ts; Ampr | Kirill A |
| pEX18Tc | sacB; Tcr; oriT | Tung T |
| pTSK1 | Ts; sacB; Ampr; Tcr; oriT | This work |
| pBBR1MCS2 | oriT; Kmr | Michael E |
| pBAD30 | Ampr; Para | Guzman L.M. |