Difference between revisions of "Part:BBa K4656007"
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Using components BBa_K4656001, BBa_K4656002 and BBa_K4656006, we designed a gene route Plam-TPH1-TDC1-EGFP, cloned it into the target vector pET28a(+), and then transformed the engineered bacteria. The routes formed by these components can be used to verify the viability of metabolic modules. With untreated pET28a as the control group, we conducted experiments such as WB, fluorescence intensity (OD600) determination, gray value analysis, etc., to verify the feasibility of the metabolic module pathway. | Using components BBa_K4656001, BBa_K4656002 and BBa_K4656006, we designed a gene route Plam-TPH1-TDC1-EGFP, cloned it into the target vector pET28a(+), and then transformed the engineered bacteria. The routes formed by these components can be used to verify the viability of metabolic modules. With untreated pET28a as the control group, we conducted experiments such as WB, fluorescence intensity (OD600) determination, gray value analysis, etc., to verify the feasibility of the metabolic module pathway. | ||
− | <html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/wb.png"width=" | + | <html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/wb.png"width="466" height="223"></center> |
<p>WB result</p> | <p>WB result</p> | ||
<html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/wb2.png"width="219" height="248"></center> | <html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/wb2.png"width="219" height="248"></center> | ||
<p>WB result</p> | <p>WB result</p> | ||
− | <html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/gray-value.png"width=" | + | <html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/gray-value.png"width="392" height="292"></center> |
<p>gray-value result</p> | <p>gray-value result</p> | ||
− | <html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/metabolism-result.png"></center> | + | <html><BR><BR><center><img style="display: block;-webkit-user-select: none;margin: auto;background-color: hsl(0,0%,90%);transition: background-color 300ms;" src="https://static.igem.wiki/teams/4656/wiki/metabolism-result.png"width="342.5" height="305"></center> |
<p>metabolism result</p> | <p>metabolism result</p> | ||
Revision as of 14:42, 6 September 2023
Plam-TPH-TDC
Usage and Biology
To verify the feasibility of the metabolic module pathway, that is, the pathway for the production of sufficient tryptophan hydroxylase (TPH) and tryptophan decarboxylase (TDC) in engineered bacteria. Using components BBa_K4656001, BBa_K4656002 and BBa_K4656006, we designed a gene route Plam-TPH1-TDC1-EGFP, cloned it into the target vector pET28a(+), and then transformed the engineered bacteria. The routes formed by these components can be used to verify the viability of metabolic modules. With untreated pET28a as the control group, we conducted experiments such as WB, fluorescence intensity (OD600) determination, gray value analysis, etc., to verify the feasibility of the metabolic module pathway.
WB result
WB result
gray-value result
metabolism result
Sequence and Features