Difference between revisions of "Team:Stony Brook/InterLab"

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<p>Illustrated here is the raw fluorescence readings for Colony 1 and Relicate 1 for all transformations over the course of the experiment. We see that there is a general increase in the fluorescence of cells for most of the plates. As expected, there is low fluorescence levels in our negative control across all time points throughout the experiment. Test Device 3 also displayed low fluorescence,thus had low GFP productions in the E. coli. </p>
 
<p>Illustrated here is the raw fluorescence readings for Colony 1 and Relicate 1 for all transformations over the course of the experiment. We see that there is a general increase in the fluorescence of cells for most of the plates. As expected, there is low fluorescence levels in our negative control across all time points throughout the experiment. Test Device 3 also displayed low fluorescence,thus had low GFP productions in the E. coli. </p>
  
<img src="https://static.igem.org/mediawiki/2017/2/20/T--Stony_Brook--interlab-part3-graph2.png" style= "text-align: center;width:525px;height:316px;"/>
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<img src="https://static.igem.org/mediawiki/2017/2/20/T--Stony_Brook--interlab-part3-graph2.png" style= "text-align: center;width:510px;height:316px;"/>
  
 
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Revision as of 04:35, 29 October 2017

Stony Brook 2017

This year, our team participated in the iGEM Fourth InterLab study. The objective of this study is to improve the measurement tools in order to obtain more reliable data within the field of synthetic biology. This year’s study aimed to improve the GFP and OD600 measurement protocol via the use of a plate reader. We were provided with 8 plasmids, including 2 controls and 6 test devices, to transform into DH5-alpha Escherichia Coli cells. We measured the fluorescence and absorbance with the Molecular Devices Microplate Reader SoftMax Pro 6.5.1.