Team:Tsinghua-E/Parts
From 2013.igem.org
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+ | <h2>Overview</h2> | ||
- | + | <h3 align="center">2013 iGEM Parts by Tsinghua-E</h3> | |
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This part is used for genome level in vivo high-diversity library construction.In this vector, highly error-prone dnaQ mutant, mutD was cloned downstream of araBAD promoter so that we can control the mutation intensity of the target genome by the concentration of araBAD promoter’s inducer, L-arabinose in a strict manner. And the GFP downstream mutD was to test whether the mutD can be translated. | This part is used for genome level in vivo high-diversity library construction.In this vector, highly error-prone dnaQ mutant, mutD was cloned downstream of araBAD promoter so that we can control the mutation intensity of the target genome by the concentration of araBAD promoter’s inducer, L-arabinose in a strict manner. And the GFP downstream mutD was to test whether the mutD can be translated. | ||
[[File:Mut.jpg|300px|thumb|left]] | [[File:Mut.jpg|300px|thumb|left]] | ||
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[[File:Sensor.jpg|300px|thumb|left]] | [[File:Sensor.jpg|300px|thumb|left]] | ||
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This part is used for providing of selection pressure for the evolution and enrichment of tryptophan overproduction microorganism phenotype.This selection pressure was based on the tryptophan dependent maltose hydrolase expression which functioned in a maltose-sole carbon source culture condition. It is achieved by cloning E.coli maltose hydrolase gene (malQ) downstream of our previously constructed tryptophan biosensor which is controlled by the strict araBAD promoter in one malQ single deletion strain ''E.coli'' JW3379. | This part is used for providing of selection pressure for the evolution and enrichment of tryptophan overproduction microorganism phenotype.This selection pressure was based on the tryptophan dependent maltose hydrolase expression which functioned in a maltose-sole carbon source culture condition. It is achieved by cloning E.coli maltose hydrolase gene (malQ) downstream of our previously constructed tryptophan biosensor which is controlled by the strict araBAD promoter in one malQ single deletion strain ''E.coli'' JW3379. | ||
[[File:Sweet.jpg|300px|thumb|left]] | [[File:Sweet.jpg|300px|thumb|left]] | ||
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This part is used for providing of selection pressure for the evolution and enrichment of tryptophan overproduction microorganism phenotype.This selection pressure was based on the tryptophan dependent tetracycline antiporter expression which functioned in tetracycline culture condition. It is achieved by cloning E.coli tetracycline antiporter gene (tetA) downstream of our previously constructed tryptophan biosensor which is controlled by tac promoter between NcoI and BamHI restriction sites in pTrc99A vector. We constructed three bitter pressure part by utilizing three different RBS upstream of tetA gene. | This part is used for providing of selection pressure for the evolution and enrichment of tryptophan overproduction microorganism phenotype.This selection pressure was based on the tryptophan dependent tetracycline antiporter expression which functioned in tetracycline culture condition. It is achieved by cloning E.coli tetracycline antiporter gene (tetA) downstream of our previously constructed tryptophan biosensor which is controlled by tac promoter between NcoI and BamHI restriction sites in pTrc99A vector. We constructed three bitter pressure part by utilizing three different RBS upstream of tetA gene. | ||
[[File:Bitter.jpg|300px|thumb|left]] | [[File:Bitter.jpg|300px|thumb|left]] | ||
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'''Summary:''' | '''Summary:''' | ||
<groupparts>iGEM013 Tsinghua-E</groupparts> | <groupparts>iGEM013 Tsinghua-E</groupparts> | ||
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Revision as of 15:46, 22 September 2013