Difference between revisions of "Team:TMMU-China/SyntheticQS1"

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   <img width="70%" src="https://static.igem.org/mediawiki/2017/d/d4/T--TMMU-China--llfigure5.jpg">
 
   <img width="70%" src="https://static.igem.org/mediawiki/2017/d/d4/T--TMMU-China--llfigure5.jpg">
 
   <p style="text-align: center;font-family:'Open Sans', sans-serif;font-size: 13px;">Fig. 5 Map of pLI50 (A) and pLI50-P2-GFP (B).</p>   
 
   <p style="text-align: center;font-family:'Open Sans', sans-serif;font-size: 13px;">Fig. 5 Map of pLI50 (A) and pLI50-P2-GFP (B).</p>   
   <img width="50%" src="https://static.igem.org/mediawiki/2017/1/17/T--TMMU-China--llfigure6.jpg">
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   <img width="30%" src="https://static.igem.org/mediawiki/2017/1/17/T--TMMU-China--llfigure6.jpg">
 
   <p style="text-align: center;font-family:'Open Sans', sans-serif;font-size: 13px;">Fig. 6 Confirmation of the pLI50-P2-GFP by restriction endonuclease digestion.</p>   
 
   <p style="text-align: center;font-family:'Open Sans', sans-serif;font-size: 13px;">Fig. 6 Confirmation of the pLI50-P2-GFP by restriction endonuclease digestion.</p>   
 
   <p>After that the pLI50-P2-GFP was transformed into the <i>S. aureus</i> strain RN4220. Strong green fluorescence was observed from RN4220::pLI50-P2-GFP strain colonies (Fig. 7B), while not any fluorescence was observed from RN4220::pLI50 strain on plate (Fig. 7A). This data suggest that the P2-GFP composite can be functional in <i>S. aureus</i> when the Agr system is present. We want further to know whether this part can be used to reveal the varied activity of the four Agr types, we transformed the pLI50-P2-GFP purified from RN4220 into Newman(Agr type I), and N315 (Agr type II). We found that the Newman::pLI50-P2-GFP strain emitted strong green fluorescence; however, barely detectable green fluorescence can be observed of the N315::pLI50-P2-GFP strain (data not shown). The expression of P2-GFP in Newman and N315 is consistent with their hemolysis activity on the blood agar plate. These data collectively confirmed that the P2-GFP composite part can be used to track the activity of the Agr system in <i>S. aureus</i>.</p>
 
   <p>After that the pLI50-P2-GFP was transformed into the <i>S. aureus</i> strain RN4220. Strong green fluorescence was observed from RN4220::pLI50-P2-GFP strain colonies (Fig. 7B), while not any fluorescence was observed from RN4220::pLI50 strain on plate (Fig. 7A). This data suggest that the P2-GFP composite can be functional in <i>S. aureus</i> when the Agr system is present. We want further to know whether this part can be used to reveal the varied activity of the four Agr types, we transformed the pLI50-P2-GFP purified from RN4220 into Newman(Agr type I), and N315 (Agr type II). We found that the Newman::pLI50-P2-GFP strain emitted strong green fluorescence; however, barely detectable green fluorescence can be observed of the N315::pLI50-P2-GFP strain (data not shown). The expression of P2-GFP in Newman and N315 is consistent with their hemolysis activity on the blood agar plate. These data collectively confirmed that the P2-GFP composite part can be used to track the activity of the Agr system in <i>S. aureus</i>.</p>

Revision as of 05:42, 1 November 2017