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=='''Effect of farnesol on growth of E. coli'''== | =='''Effect of farnesol on growth of E. coli'''== | ||
− | We thought about a possibility that farnesol may affect E.coli, which produces farnesol, because E. coli is also a bacterium. Therefore, we examined whether farnesol affects E.coli. | + | We thought about a possibility that farnesol may affect ''E.coli'', which produces farnesol, because E. coli is also a bacterium. Therefore, we examined whether farnesol affects ''E.coli''. |
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− | [[File:E. | + | [[File:''E.coli''阻止円実験.jpg|800px|thumb|center|Fig.6:Effect of farnesol on growth of E. coli |
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A: farnesol (1ml) B: ddH2O (1ml) | A: farnesol (1ml) B: ddH2O (1ml) | ||
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While, inhibition circle was observed on the plate with farnesol (A).]] | While, inhibition circle was observed on the plate with farnesol (A).]] | ||
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− | This result indicates that farnesol affect E.coli. So, we hypothesiged that E.coli needs to have resistance to farnesol. | + | This result indicates that farnesol affect ''E.coli''. So, we hypothesiged that ''E.coli'' needs to have resistance to farnesol. |
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=='''Colony formation of E. coli JM109 engineered with marA on farnesol overlaid plates. '''== | =='''Colony formation of E. coli JM109 engineered with marA on farnesol overlaid plates. '''== | ||
− | [[File:E. | + | [[File:''E.coli''marA result .jpg|800px|thumb|center|Fig.7:Colony formation of E. coli JM109 engineered with marA on farnesol overlaid plates. |
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− | E. coli JM109 and E. coli JM109 (marA) were spotted on LBGMg agar plates in serial ten-fold dilutions (10⁻¹~〖10〗^(-6)), overlaid with 30 % (v/v) farnesol hexane solution (farnesol solution) and incubated at 30°C for 24 h. This figure shows that E. coli JM109 (marA) cells that overexpress the marA product better than the control E. coli JM109 wild type cells survived plates overloyed by 30 % farnesol solution. | + | ''E.coli'' JM109 and ''E.coli'' JM109 (marA) were spotted on LBGMg agar plates in serial ten-fold dilutions (10⁻¹~〖10〗^(-6)), overlaid with 30 % (v/v) farnesol hexane solution (farnesol solution) and incubated at 30°C for 24 h. This figure shows that ''E.coli'' JM109 (marA) cells that overexpress the marA product better than the control ''E.coli'' JM109 wild type cells survived plates overloyed by 30 % farnesol solution. |
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Revision as of 07:13, 18 October 2016
Contents
- 1 Confirmation antibacterial activity of farnesol.
- 2 Confirmation of anti-mold, anti-maggots and antibocatrial activities of farnesol.
- 2.1 Comparison of the suppressing effect of geraniol, farnesol and ethanol on mold
- 2.2 farnesol has a preservative effect on various foods
- 2.3 Effect of farnesol on the growth of Staphylococcus aureus
- 2.4 Effect of farnesol on growth of E. coli
- 2.5 Colony formation of E. coli JM109 engineered with marA on farnesol overlaid plates.
- 3 Enhancement of farnesol resistance
- 4 Confirmation of Amount of transcription of Farnesol production device.
- 5 Farnesol production
- 6 Confirmation of Amount of transcription of PgpB.device, YbjG.device, IspC-ribB(G108S).device, and novel Farnesol production device
- 7 Knockout of target gene using CRISPR-Cas9
Confirmation antibacterial activity of farnesol.
First, we examined our working hypothesis to “Flavorator” that farnesol can show either the antibacterial or bacteriostatic activity in a box like “KOZOKO”. The results clearly showed that farnesol had antibacterial properties. In the literatures, farnesol have antibacterial volatiles. Farnesol is produced after complicated pathways, so for their syntheses, various enzymes are required. In E. coli, farnesol may be synthesized. In this context, we designed our system for establishing the concept of “Flavorator” to build up a brand-new biosynthetic pathways, in which farnesol is produced in the E. coli. In doing so, we transfered the three types of genes listed below to create the hyper-producer E. coli of farnesol. We examined our working hypothesis to “Flavorator” that farnesol can show either the antibacterial or bacteriostatic activity in a box like Kozoko.
Confirmation of anti-mold, anti-maggots and antibocatrial activities of farnesol.
E. coli can easily synthesize antimicrobial volatiles farnesol and geraniol. We examined the effects of three antimicrobial volatiles against bacteria which rot food.
Comparison of the suppressing effect of geraniol, farnesol and ethanol on mold
Farnesol had the highest antifungal activity against mold.
farnesol has a preservative effect on various foods
Farnesol has high antifungal activity against the mold of bread. Therefore, we investigated whether farnesol exerts similar antifungal effects on other food.
Effects of farnesol on bread mold.
Effects of farnesol on rice mold.
Effects of farnesol on chicken mold.
We found that farnesol has a preservative effect on various foods.
Effect of farnesol on the growth of Staphylococcus aureus
We examined whether farnesol also has an effect against food poisoning bacteria. We used Staphylococcus aureus as food poisoning bacteria. We examined whether farnesol inhibits their growth.
We considered that farnesol has high effect against inhibitory the growth food poisoning bacteria because diluted farnesol affect staphylococcus aureus.
Effect of farnesol on growth of E. coli
We thought about a possibility that farnesol may affect E.coli, which produces farnesol, because E. coli is also a bacterium. Therefore, we examined whether farnesol affects E.coli.
This result indicates that farnesol affect E.coli. So, we hypothesiged that E.coli needs to have resistance to farnesol.
Colony formation of E. coli JM109 engineered with marA on farnesol overlaid plates.
Enhancement of farnesol resistance
村山の文章を入れる
Confirmation of Amount of transcription of Farnesol production device.
村山・後藤・鎌田の文章を入れる
Farnesol production
村山の文章を入れる(おそらく、ispA-MEP-PgpB-YbjGのみ)
Confirmation of Amount of transcription of PgpB.device, YbjG.device, IspC-ribB(G108S).device, and novel Farnesol production device
村山・後藤・鎌田の文章を入れる
Knockout of target gene using CRISPR-Cas9
小池の文章を入れる