Difference between revisions of "Team:Nagahama/Medal Parts"

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Gas Chromatography/Mass(GC/MS)
 
Gas Chromatography/Mass(GC/MS)
  
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Revision as of 09:22, 9 September 2015

Team Nagahama banner.jpg


Medal parts

λPL+r.b.s.+ispA+MEP+×× (r.b.s.+dxs+r.b.s.+m-idi+r.b.s.+ispDF)


FOH is probably generated through FPP hydrolysis by endogenous phosphatases, which are induced by an increased intracellular FPP level (Asadollahi et al., 2008; Muramatsu et al., 2008a).

Analogously, we hypothesized that E. coli could produce FOH under cellular conditions of an increased intracellular FPP level through metabolic engineering.

A MEP pathway has been shown to synthesize IPP and DMAPP efficiently in E. coli (Martin et al., 2003).

Because of its high hydrophobicity and low volatility, decane was chosen to extract and solubilize FOH from culture broth.

The decane overlay in the two-phase culture did not affect growth, and FOH could be solubilized in the decane phase with negligible volatile loss.

We adopt 1 mL of decane overlaid to 5 mL of culture broth.



Gas Chromatography/Mass(GC/MS)

MS-試品1.jpg

File:GC/MS-試品2.jpg

File:GC/MS-BBa K165033.jpg

File:GC/MS-BBa K165018.jpg

File:GC/MS-BBa K165024.jpg

File:GC/MS-BBa K165025-1.jpg

File:GC/MS-BBa K165025-2.jpg

Note

In order to be considered for the Best Part Collection award, you must fill out this page.

Did your team make a lot of great parts? Is there a theme that ties all your parts together? Do you have more than 10 parts in this collection? Did you make a CRISPR collection, a MoClo collection, or a collection of awesome pigment parts? Describe your parts collection on this page, so the judges can evaluate you for the Best Part Collection award.