Team:SDU-Denmark/project-p

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m (Characterization)
(Scanning Electron microscopy)
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=== Scanning Electron microscopy ===
=== Scanning Electron microscopy ===
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After the failed staning of flagellas we tried to visualize the flagellas with scanning electron microscopy (SEM). The bacteria were grown ON in liquid cultures (5 ml LB-media). The bacteria were diluted to approximately 106 cells pr 10 µl solution. At the time being we did not have our FlhDC as a composite part so therefore we only tried SEM with the negative control strains DH5alpa and MG1655. We did this as a preliminary work so we were ready to do microscopy on the MG1655 containing the composite part when it is ready. Unfortunately the limited resolution and magnitude of the SEM at our disposal made it practically impossible to visualize any flagella in the microscope. Thus if this approach is to be used for characterization, a SEM of higher magnitude and resolution is required.<br>  
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After the failed staning of flagellas we tried to visualize the flagellas with scanning electron microscopy (SEM). The bacteria were grown ON in liquid cultures (5 ml LB-media). The bacteria were diluted to approximately 10^6 cells pr 10 µl solution. At the time being we did not have our K343000 as a composite part so therefore we only tried SEM with the negative control strains DH5alpa and MG1655. We did this as a preliminary work so we were ready to do microscopy on the MG1655 containing the composite part when it is ready. Unfortunately the limited resolution and magnitude of the SEM at our disposal made it practically impossible to visualize any flagella in the microscope. Thus if this approach is to be used for characterization, a SEM of higher magnitude and resolution is required.<br>  
The pictures below are SEM pictures the negative control strains DH5alpha and MG1655.<br>
The pictures below are SEM pictures the negative control strains DH5alpha and MG1655.<br>

Revision as of 17:06, 26 October 2010