Experiment
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<td height="22" bgcolor="#033C7F"><p align="center"><span class="STYLE39"><span class="STYLE23"><strong>Figure2 the relevant cell density against the inoculating cell density</strong></span></span></p> | <td height="22" bgcolor="#033C7F"><p align="center"><span class="STYLE39"><span class="STYLE23"><strong>Figure2 the relevant cell density against the inoculating cell density</strong></span></span></p> | ||
<p align="left"><span class="STYLE39"><span class="STYLE23"><br> | <p align="left"><span class="STYLE39"><span class="STYLE23"><br> | ||
- | </span></span><span class="STYLE30">The initial concentration of ampicillin and kanamycin in the culture determined the least inoculating population of the EG and ER cells.</span></p> | + | </span></span><span class="STYLE30">The initial concentration of ampicillin and kanamycin in the culture determined the least inoculating population of the EG(Kanamycin resistance) and ER(Ampicillin resistance) cells.</span></p> |
<p align="left" class="STYLE42"> </p> | <p align="left" class="STYLE42"> </p> | ||
<p class="STYLE30"> </p> | <p class="STYLE30"> </p> |
Revision as of 03:58, 30 October 2008
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Experiment results | ||
Figure1 Increase of the initial population density enhances system resistance to antibiotics. As is shown in the images, the population of the cells at high concentration of antibiotics increased dramatically when amplifying the inoculation concentration of the cells, which demonstrates that the initial cell density will affect the robustness of the coculture. |
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Figure2 the relevant cell density against the inoculating cell density
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Figure3 the relevant cell density in varied concentrations of antibiotics. In different ranges of antibiotic concentrations the system showed quite different behaviors. |
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