Team:Imperial College London/Drylab/Autoinduction
From 2009.igem.org
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!align="center"|[[Team:Imperial_College_London/Drylab/Autoinduction|Autoinduction]] | !align="center"|[[Team:Imperial_College_London/Drylab/Autoinduction|Autoinduction]] | ||
!align="center"|[[Team:Imperial_College_London/Drylab/Protein_Production|Protein Production]] | !align="center"|[[Team:Imperial_College_London/Drylab/Protein_Production|Protein Production]] | ||
- | !align="center"|[[Team:Imperial_College_London/Drylab| | + | !align="center"|[[Team:Imperial_College_London/Drylab|Drug Kinetics]] |
- | !align="center"|[[Team:Imperial_College_London/Drylab| | + | !align="center"|[[Team:Imperial_College_London/Drylab|Encapsulation]] |
- | !align="center"|[[Team:Imperial_College_London/Drylab| | + | !align="center"|[[Team:Imperial_College_London/Drylab|Genomic deletion]] |
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Revision as of 14:04, 28 September 2009
Autoinduction | Protein Production | Drug Kinetics | Encapsulation | Genomic deletion |
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Autoinduction
Starting the encapsulation process is related to diauxic growth of bacteria under two carbon sources. This is explained further here.
Goal of the model
- Provide understanding of the [http://en.wikipedia.org/wiki/Diauxie diauxic growth] phenomenon
- Find out the time taken to consume glucose in the medium to characterize the CRP promoter.