Team:Imperial College London/Wetlab/Results/Cheminduction

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[[Image:II09_chemo1_blank_variation1.png]]<br>  
[[Image:II09_chemo1_blank_variation1.png]]<br>  
<b>Figure 2: Variation of the blank well data in monitoring absorbance</b> A1, A2, B1, B2: 4 wells containing blank M9 media.<br>
<b>Figure 2: Variation of the blank well data in monitoring absorbance</b> A1, A2, B1, B2: 4 wells containing blank M9 media.<br>
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[[Image:II09_IPTG_growth_2.jpg|720px]]<br>
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2. We can see from figure 1 that there is an exponential growth phase that lasts for about 3 hours, so in order to extract the trend in growth rate, the ln(Absorbance) data was plotted over these time points (See figures 3,4,5).
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3. In order to extract the trend, a linear regression method was applied and the growth rates were calculated.
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[[Image:II09_IPTG_growth_4.jpg|720px]]<br>
<b>Figure 3: Log plots of the exponential growth phase for different IPTG concentrations </b><br>
<b>Figure 3: Log plots of the exponential growth phase for different IPTG concentrations </b><br>
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[[Image:II09_IPTG_growth_3.jpg|720px]]<br>
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[[Image:II09_IPTG_growth_2.jpg|720px]]<br>
<b>Figure 4: Log plots of the exponential growth phase for different IPTG concentrations </b><br>
<b>Figure 4: Log plots of the exponential growth phase for different IPTG concentrations </b><br>
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[[Image:II09_IPTG_growth_4.jpg|720px]]<br>
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[[Image:II09_IPTG_growth_3.jpg|720px]]<br>
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<b>Figure 5: Log plots of the exponential growth phase for different IPTG concentrations </b><br>
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Revision as of 20:54, 20 October 2009

Experiment:

Different concentrations of IPTG were added to a 96-well plate of e-coli Top 10 cells containing LacI-RFP genetic constructs. Here we measured the optical density of the cells over-time, for different concentrations of IPTG to monitor the effects in the culture. The IPTG growth curve results are plotted below:
II09 IPTG growth1.jpg
Figure 1: Effects of [IPTG] on cell growth: Note that the high initial OD value results due to cultures having grown for 1 hour prior the start of the measuring phase.

Simply plotting the raw data does not give sufficient information about possible trends. Therefore, further analysis was performed where: 1. The blank absorbance level was estimated
II09 chemo1 blank variation1.png
Figure 2: Variation of the blank well data in monitoring absorbance A1, A2, B1, B2: 4 wells containing blank M9 media.
2. We can see from figure 1 that there is an exponential growth phase that lasts for about 3 hours, so in order to extract the trend in growth rate, the ln(Absorbance) data was plotted over these time points (See figures 3,4,5). 3. In order to extract the trend, a linear regression method was applied and the growth rates were calculated.

II09 IPTG growth 4.jpg
Figure 3: Log plots of the exponential growth phase for different IPTG concentrations


II09 IPTG growth 2.jpg
Figure 4: Log plots of the exponential growth phase for different IPTG concentrations

II09 IPTG growth 3.jpg
Figure 5: Log plots of the exponential growth phase for different IPTG concentrations

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