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|'''Preliminary wet work ''' || || || | |'''Preliminary wet work ''' || || || | ||
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| ||Extract promoter, RBS and terminator BioBricks from registry | | ||Extract promoter, RBS and terminator BioBricks from registry || || | ||
:*Refine protocol for paper-bound DNA extraction | | ||:*Refine protocol for paper-bound DNA extraction || || | ||
:*Use PCR and transformations to confirm presence of DNA | | ||:*Use PCR and transformations to confirm presence of DNA || || | ||
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|'''Internal K+ build-up''' || || || | |'''Internal K+ build-up''' || || || | ||
Revision as of 15:32, 4 August 2008
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| Personnel | Progress | ||||||||||
| Research | |||||||||||
| Potassium intake | |||||||||||
| Preventing K+ efflux | |||||||||||
Bacterial tolerance for high K+ and turgor
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| Ligand gated channels | |||||||||||
| Media | |||||||||||
| Preliminary wet work | |||||||||||
| Extract promoter, RBS and terminator BioBricks from registry | :*Refine protocol for paper-bound DNA extraction | :*Use PCR and transformations to confirm presence of DNA | |||||||||
| Internal K+ build-up | |||||||||||
PCR Kdp K+ pump gene from E.coli MG1655
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Put Kdp gene under control of stationary phase promoter (osmY, used by MIT 2006 team)
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| Transform into wildtype and mutant E.coli strains | |||||||||||
Test
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| Chassis | |||||||||||
Order from Yale
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Test
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| Controlled K+ efflux | |||||||||||
| Design sequence based on GluR0 glutamate-gated K+ channel from Synechocystis PCC 6803 | |||||||||||
| Send to DNA 2.0 for synthesis | |||||||||||
Backup
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| Ligate gene into BioBrick plasmid | |||||||||||
| Transform into chosen chassis | |||||||||||
Test
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| Measuring voltage | |||||||||||
| Quantify output using oxygen electrode or glass capillary microelectrode | |||||||||||
| Medium optimisation | |||||||||||
| Vary K+ concentrations, using KCl | |||||||||||
| Vary nutrient levels | |||||||||||
| Output optimisation | |||||||||||
| Vary strength of promoters/RBS |