Team:UESTC-China/result

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<strong>Fig.1</strong> Verification of backbones using digestion
<strong>Fig.1</strong> Verification of backbones using digestion
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<strong>Fig.2</strong>
<strong>Fig.2</strong>
Digestion the plasmid piGEM005 with EcoRI and SacI.  
Digestion the plasmid piGEM005 with EcoRI and SacI.  
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<strong>Fig.3</strong> Verification of multi-gene expression vectors using digestion
<strong>Fig.3</strong> Verification of multi-gene expression vectors using digestion
<strong>A.</strong>Digestion the plasmid piGEM009 with XbaI and SalI.  
<strong>A.</strong>Digestion the plasmid piGEM009 with XbaI and SalI.  
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<strong>Fig.4</strong>
<strong>Fig.4</strong>
Transform piGEM003, piGEM004, piGEM005, piGEM006, piGEM007, piGEM008, piGEM009, piGEM010 and piGEM011 into tobacco. Co-cultured for 48 hours(A); Screening cultivation for one month(B and  
Transform piGEM003, piGEM004, piGEM005, piGEM006, piGEM007, piGEM008, piGEM009, piGEM010 and piGEM011 into tobacco. Co-cultured for 48 hours(A); Screening cultivation for one month(B and  
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<strong>Fig.5</strong>
<strong>Fig.5</strong>
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<p style="position:relative; left:0px; padding:15 5px; font-size:20px; font-family: calibri, arial, helvetica, sans-serif; font-style: calibri; text-align:justify; width:1100px; color:#1b1b1b;"><strong>Table.1</strong>
Statistical result of quantity of each transgenic line.
Statistical result of quantity of each transgenic line.
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<img style="width:60% ;" src="https://static.igem.org/mediawiki/2014/9/93/Result2.png">
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* Rate of  Kan-resistant plantlet = N0.of Kan-resistant plantlet / No. of transformed tobacco Leaf disc<br/>
* Rate of  Kan-resistant plantlet = N0.of Kan-resistant plantlet / No. of transformed tobacco Leaf disc<br/>
**Rate of positive seedlings =No. of PCR positive plantlet / N0.of Kan-resistant plantlet
**Rate of positive seedlings =No. of PCR positive plantlet / N0.of Kan-resistant plantlet
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<p style="position:relative; left:0px; padding:15 5px; font-size:20px; font-family: calibri, arial, helvetica, sans-serif; font-style: calibri; text-align:justify; width:650px; color:#1b1b1b;"><strong>Fig.6</strong>
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<p style="position:relative; left:0px; padding:15 5px; font-size:20px; font-family: calibri, arial, helvetica, sans-serif; font-style: calibri; text-align:justify; width:1100px; color:#1b1b1b;"><strong>Fig.6</strong>
PCR identification of kan-resistant tobacco seedlings (piGEM010 transgenic line).
PCR identification of kan-resistant tobacco seedlings (piGEM010 transgenic line).
M: DNA marker;
M: DNA marker;
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<strong>Fig.7</strong> RT-PCR verification of positive transgenic tobacco seedlings.<br/>
<strong>Fig.7</strong> RT-PCR verification of positive transgenic tobacco seedlings.<br/>
M: DNA marker; 1-8: 6 individual lines; 9: plasmid
M: DNA marker; 1-8: 6 individual lines; 9: plasmid
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<strong>Fig.8</strong>
<strong>Fig.8</strong>
The transgenic plants (A) and wildtype (B), which had been grown separately in sealed boxes, were exposed to HCHO evaporated from a micro tube (0.5ml) containing HCHO solution (37%,50ul)
The transgenic plants (A) and wildtype (B), which had been grown separately in sealed boxes, were exposed to HCHO evaporated from a micro tube (0.5ml) containing HCHO solution (37%,50ul)
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<div align="center"><img style="width:50% ;" src="https://static.igem.org/mediawiki/2014/b/bb/Result1.png">
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<strong>Fig.9</strong>
<strong>Fig.9</strong>
Phenotype testing of transgenetic seedlings and wildtype. A: Before exposure to HCHO. B: Exposure to HCHO for one week. The transgenetic seedling is stronger than wildtype after formaldehyde exposure. 20ul 37% HCHO, one week.
Phenotype testing of transgenetic seedlings and wildtype. A: Before exposure to HCHO. B: Exposure to HCHO for one week. The transgenetic seedling is stronger than wildtype after formaldehyde exposure. 20ul 37% HCHO, one week.
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<p style="position:relative; left:0px; padding:15 5px; font-size:20px; font-family: calibri, arial, helvetica, sans-serif; font-style: calibri; text-align:justify; width:650px; color:#1b1b1b;"><strong>Fig.10</strong>
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<p style="position:relative; left:0px; padding:15 5px; font-size:20px; font-family: calibri, arial, helvetica, sans-serif; font-style: calibri; text-align:justify; width:1100px; color:#1b1b1b;"><strong>Fig.10</strong>
Standard Curve of Formaldehyde.
Standard Curve of Formaldehyde.
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<div align="center"><img style="width:40% ;" src="https://static.igem.org/mediawiki/2014/2/24/Result_10.jpg">
<div align="center"><img style="width:40% ;" src="https://static.igem.org/mediawiki/2014/2/24/Result_10.jpg">
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<p style="position:relative; left:0px; padding:15 5px; font-size:20px; font-family: calibri, arial, helvetica, sans-serif; font-style: calibri; text-align:justify; width:650px; color:#1b1b1b;"><strong>Fig.11</strong>
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<p style="position:relative; left:0px; padding:15 5px; font-size:20px; font-family: calibri, arial, helvetica, sans-serif; font-style: calibri; text-align:justify; width:1100px; color:#1b1b1b;"><strong>Fig.11</strong>
folmaldehyde Concentration Detection.
folmaldehyde Concentration Detection.
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Revision as of 10:56, 16 October 2014

UESTC-China