| Literature DB >> 26785776 |
Hyun Bae Bang1, Yoon Hyeok Lee2, Sun Chang Kim3, Chang Keun Sung4, Ki Jun Jeong5,6.
Abstract
BACKGROUND: Plant parasitic nematodes are harmful to agricultural crops and plants, and may cause severe yield losses. Cinnamaldehyde, a volatile, yellow liquid commonly used as a flavoring or food additive, is increasingly becoming a popular natural nematicide because of its high nematicidal activity and, there is a high demand for the development of a biological platform to produce cinnamaldehyde.Entities:
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Year: 2016 PMID: 26785776 PMCID: PMC4719340 DOI: 10.1186/s12934-016-0415-9
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Fig. 1Biosynthesis of cinnamaldehyde and in vitro assay of synthesis enzymes. a Three enzymatic reactions (PAL, 4CL, and CCL) for the biosynthesis of cinnamaldehyde from l-phenylalanine. b In vitro assay of PAL from A. thaliana (AtPAL1, black) and S. maritimus (SmPAL, white) at 30 and 37 °C. c In vitro assay of 4CL and CCL at 30 and 37 °C. Two combinations including (i) 4CL from A. thaliana (At4CL1) and CCR from A. thaliana (AtCCR), and (ii) CCL from S. coelicolor (ScCCL) and CCR from A. thaliana (AtCCR) were mixed with cinnamic acid and cinnamaldehyde production was analyzed. Error bars represent standard deviation of the mean (n = 2)
Fig. 2The construction of expression system, production of each enzymes and cinnamaldehyde in E. coli. a The schematic diagram of plasmid pHB-CAD for the expression of three synthesis genes (SmPAL, ScCCL, and AtCCR genes) under the IPTG-inducible trc promoter (Ptrc). RBS means the ribosome binding site for translation and restriction enzyme sites were designated. b Western blot analysis of gene expression under two different temperature (30 and 37 °C). For the detection of SmPAL (lanes 1–4), anti-FLAG-HRP antibody was used and for the detection of ScCCL and AtCCR (lanes 5–8), anti-His-HRP antibody was used. Lanes 1, 3, 5, and 7 indicate total protein fraction, and lanes 2, 4, 6, and 8 indicates the soluble protein fractions. Lanes 1, 2, 5, and 6 indicate samples at 30 °C, and lanes 3, 4, 7, and 8 indicate samples at 37 °C. Symbols: Closed arrowhead, SmPAL; open arrowhead, ScCCL; solid arrow, AtCCR. c HPLC analysis of cinnamaldehyde produced under two different temperatures. Error bars represent standard deviation of the mean (n = 3)
Fig. 3The schematic diagram for strain engineering to increase the pool of l-phenylalanine in E. coli W3110. The symbol “X” indicates the corresponding gene deletion. The red-color arrows indicate overexpression of the relevant genes (galP, glk, aroG, ydiB, aroK, pheA) via plasmid (pYHP)-based expression system
Bacterial strains and plasmids used in this study
| Description | Reference or source | |
|---|---|---|
| Strain | ||
| XL1-Blue |
| Stratagene1 |
| BL21(DE3) |
| Novagen2 |
| W3110 |
| CGSC no. 44743 |
| YHP01 | W3110 | This study |
| YHP02 | W3110 | This study |
| YHP03 | W3110 | This study |
| YHP04 | W3110 | This study |
| YHP05 | W3110 | This study |
| Plasmid | ||
| pTac15k | KmR, p15A origin, | [ |
| pTrc99A | AmpR, pBR322 origin, | Pharmacia4 |
| pUC19 | AmpR, pMB1 origin, | New England biolabs5 |
| pET-22b | AmpR, pBR322 origin, | EMD chemicals6 |
| pHB-I01 | pET-22b derivatives, PT7– | This study |
| pHB-I02 | pET-22b derivatives, PT7– | This study |
| pHB-I03 | pET-22b derivatives, PT7– | This study |
| pHB-I04 | pET-22b derivatives, PT7– | This study |
| pHB-I05 | pET-22b derivatives, PT7– | This study |
| pHB-CA | pTrc99A derivatives, Ptrc– | This study |
| pHB-CAD | pTrc99A derivatives, Ptrc– | This study |
| pUC19G | pUC19, | This study |
| pUC19B | pUC19, | This study |
| pUC19K | pUC19, | This study |
| pUC19A | pUC19, | This study |
| pTac15kG | pTac15k, Ptac– | This study |
| pTac15kGB | pTac15k, Ptac– | This study |
| pTac15kGBK | pTac15k, Ptac– | This study |
| pTac15kGBKA | pTac15k, Ptac– | This study |
| pYH | pTac15k, Ptac– | This study |
| pPpc113 | pUC19, synthetic BBa_J23113 Anderson promoter (Ppc113) | This study |
| pTrc99A-mod | pTrc99A, MCS modification ( | Lab stock |
| pGlk | pTrc99A-mod derivatives, Ppc113– | This study |
| pGalP | pTrc99A-mod derivatives, Ppc113– | This study |
| pYH-glk | pYH derivatives, Ppc113– | This study |
| pYHP | pYH-glk derivatives, Ppc113– | This study |
| pCW611 | AmpR, λ-red recombinase expression plasmid under | [ |
| pEcmuloxC | AmpR, CmR, pUG6 derivatives, lox66-cat-lox71 | [ |
1Stratagene cloning systems, La Jolla, CA, USA
2Novagen, inc., Madison, WI, USA
3The coli genetic stock center, Yale University, USA
4Pharmacia biotech, Uppsala, Sweden
5New England biolabs, inc., Beverly, MA, USA
6EMD chemicals, Gibbstown, NJ, USA
Fig. 4Comparison of final optical density (black) and l-phenylalanine production (gray) in 48 h flask cultivation. a All five engineered E. coli strains (YHP01 to YHP05) and the parental E. coli W3110 were cultivated and cell growth (OD600) and l-phenylalanine production titers were compared. b E. coli YHP05 strain harboring different plasmids (pTac15kG series or pYHP) were cultivated and cell growth (OD600) and l-phenylalanine production titers were compared. Error bars represent standard deviation of the mean (n = 3)
Fig. 5Cell growth and cinnamic acid production in flask cultivation. a Time profiles of cell growths (OD600). Symbols: Closed circle, E. coli W3110 (pHB-CA); open circle, E. coli YHP05 (pHB-CA); closed square, E. coli YHP05 (pHB-CA and pYHP). b Production titer of cinnamic acid in each strain. Error bars represent standard deviation of the mean (n = 3)
Fig. 6Cell growth and cinnamaldehyde production in flask cultivation. a Time profiles of cell growths (OD600). Symbols: Closed circle, E. coli W3110 (pHB-CAD); open circle, E. coli YHP05 (pHB-CAD); closed square, E. coli YHP05 (pHB-CAD and pYHP). b Production titer of cinnamaldehyde in each strain. Error bars represent standard deviation of the mean (n = 3)
Fig. 7Graph of nematode percentage alive (%) after treatment of cinnamaldehyde. Symbols: Closed diamond, culture supernatant of E. coli W3110 as a negative control; closed circle, 60 mg/L commercial and purified cinnamaldehyde as positive control; open circle, 60 mg/L culture supernatant with cinnamaldehyde produced in E. coli YHP05 harboring pYHP and pHB-CAD. Error bars represent standard deviation of the mean (n = 2)