Team:ULB-Brussels/Project/Results
From 2014.igem.org
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$\rightarrow$ <a href="http://parts.igem.org/Part:BBa_K1318000"> ULB-Brussels part </a> </p> | $\rightarrow$ <a href="http://parts.igem.org/Part:BBa_K1318000"> ULB-Brussels part </a> </p> | ||
As a screen we did a killing assay, because of the toxic property of ccdB.</p> | As a screen we did a killing assay, because of the toxic property of ccdB.</p> | ||
- | We constructed 4 different colonies including a control colony made of E.coli without plasmid (line 1), a second one with pBAD33::ccdB (line2), a third one | + | We constructed 4 different colonies including a control colony made of E.coli without plasmid (line 1), a second one with pBAD33::ccdB (line2), a third one containing pKK233::ccdA (line 3) and the final one with both plasmids.</p> |
The ccdA gene encoded for a protein wich acts as an anti-toxin for ccdB and so allows the bacteria which express it to survive.</p> | The ccdA gene encoded for a protein wich acts as an anti-toxin for ccdB and so allows the bacteria which express it to survive.</p> | ||
The two following screens show us the results of the killing assay on two different media. To interpret them one should know that IPTG induces pKK233’s expression, glucose represses pBAD33’s expression and arabinose incude the expression of pBAD33.</p>We made dilution to assure that the cell concentration didn’t affect the toxicity or anti-toxicity. <!--The columns from left to right: $10^{0}$, $10^{-2}$, $10^{-3}$, $10^{-4}$, $10^{-6}$.--> | The two following screens show us the results of the killing assay on two different media. To interpret them one should know that IPTG induces pKK233’s expression, glucose represses pBAD33’s expression and arabinose incude the expression of pBAD33.</p>We made dilution to assure that the cell concentration didn’t affect the toxicity or anti-toxicity. <!--The columns from left to right: $10^{0}$, $10^{-2}$, $10^{-3}$, $10^{-4}$, $10^{-6}$.--> |
Revision as of 13:39, 11 October 2014
$~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ \newcommand{\MyColi}{{\small Mighty\hspace{0.12cm}Coli}} \newcommand{\Stabi}{\small Stabi}$ $\newcommand{\EColi}{\small E.coli} \newcommand{\SCere}{\small S.cerevisae}\\[0cm] ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ \newcommand{\PI}{\small PI}$ $\newcommand{\Igo}{\Large\mathcal{I}} \newcommand{\Tgo}{\Large\mathcal{T}} \newcommand{\Ogo}{\Large\mathcal{O}} ~$
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