Team:SDU-Denmark/project-p

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'''Computerized analysis of the bacterial motility with the Thor prototype by Unisensor A/S and the Unify software:'''<br>
'''Computerized analysis of the bacterial motility with the Thor prototype by Unisensor A/S and the Unify software:'''<br>
For this experiment we changed our protocol for cultivating swimming bacteria.<br>
For this experiment we changed our protocol for cultivating swimming bacteria.<br>
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After a series of experiments we settled on a pipette tip from a freezing culture inoculated in 5 ml LB media. The culture was then incubated for 12 hours at 22° C and 160 RPM. Afterwards the unmodified cultures were diluted 1:10 in Motility buffer (reference Adler), at which point thez were readz for microscopy. At this point retinal is added to the strain containing the photosensor and it continues to grow for another two hours in darkness, afterwards they were also diluted in motility buffer.<br>
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After a series of experiments we settled on a pipette tip from a freezing culture inoculated in 5 ml LB media. The culture was then incubated for 12 hours at 22° C and 160 RPM. Afterwards the unmodified cultures were diluted 1:10 in Motility buffer (reference Adler), at which point thez were ready for microscopy. At this point retinal is added to the strain containing the photosensor and it continues to grow for another two hours in darkness, afterwards they were also diluted in motility buffer.<br>
The machine and software used for the analysis are prototypes and still under heavy development. Because of trade secrets it is impossible for us to explain how the machine works or give a detailed explanation of it's mechanism until the Thor has reached production status. Simplistically said it is a very advanced video microscope, with which it is possible to analyse liquids and the particles inside in both 2D and 3D, while also tracking them over time.
The machine and software used for the analysis are prototypes and still under heavy development. Because of trade secrets it is impossible for us to explain how the machine works or give a detailed explanation of it's mechanism until the Thor has reached production status. Simplistically said it is a very advanced video microscope, with which it is possible to analyse liquids and the particles inside in both 2D and 3D, while also tracking them over time.
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The data collection and preparation of microscopy slides, was basically done like explained above, except that instead of light filters we used diodes that already sent out light at the correct wavelengths.<br>
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2.5 ul of the bacterial dilution were placed on the center of the microscopy slide and covered by a coverslide. Afterwards the sample was sealed with mineral oil as to prevent a flow in the liquid. The data collection was done exactly as described before, except that instead of optical filters we used diodes that sent out light at the wanted wavelengths (500nm and 600nm). On top of that we also recorded the bacteria's behaviour when exposed to a blue light gradient and varying intensities of light measured in milliampere. All the measurements were taken on the modified phototactic bacteria and the wildtype MG1655.<br>
The results look like these:<br>
The results look like these:<br>
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<object width="320"><param name="movie" value="http://www.youtube.com/v/IlPRLSEG864?hl=de&fs=1"></param><param name="allowFullScreen" value="true"></param><param name="allowscriptaccess" value="always"></param><embed src="http://www.youtube.com/v/IlPRLSEG864?hl=de&fs=1" type="application/x-shockwave-flash" allowscriptaccess="always" allowfullscreen="true" width="320"></embed></object> <object width="320"><param name="movie" value="http://www.youtube.com/v/HC6DRAWcHys?hl=de&fs=1"></param><param name="allowFullScreen" value="true"></param><param name="allowscriptaccess" value="always"></param><embed src="http://www.youtube.com/v/HC6DRAWcHys?hl=de&fs=1" type="application/x-shockwave-flash" allowscriptaccess="always" allowfullscreen="true" width="320"></embed></object><br>
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The bacteria that are not moving are assumed to be sticking to the glass or coverslip.  
The bacteria that are not moving are assumed to be sticking to the glass or coverslip.  

Revision as of 13:45, 24 October 2010