Team:UESTC-China/result

From 2014.igem.org

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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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<p style="color:#1b1b1b;">In order to enhance the ability of tobacco to metabolize formaldehyde, we have successfully constructed 3 multigenge expression vectors, from vector <em>piGEM009</em> to vector <em>piGEM011</em>. We have verified all of them using digestion (Fig.3) and sequcencing.</p>
<p style="color:#1b1b1b;">In order to enhance the ability of tobacco to metabolize formaldehyde, we have successfully constructed 3 multigenge expression vectors, from vector <em>piGEM009</em> to vector <em>piGEM011</em>. We have verified all of them using digestion (Fig.3) and sequcencing.</p>
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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
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M: DNA marker;
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6: plasmid piGEM011 and it's digestion production
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<p style="color:#1b1b1b;">Tobacco was transformed essentially using the leaf disk co-cultivation protocol of Horsch. This protocol includes three stages, co-cultivation (Fig.4A), screening cultivation (Fig.4B) and rooting cultivation (Fig.4C). We have successfully transformed each vector into babacco. Table 1 is the statistical result of quantity of each transgenic line. And we have got PCR positive plantlet of every transgenic line.</p>
<p style="color:#1b1b1b;">Tobacco was transformed essentially using the leaf disk co-cultivation protocol of Horsch. This protocol includes three stages, co-cultivation (Fig.4A), screening cultivation (Fig.4B) and rooting cultivation (Fig.4C). We have successfully transformed each vector into babacco. Table 1 is the statistical result of quantity of each transgenic line. And we have got PCR positive plantlet of every transgenic line.</p>
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<strong>Fig.4</strong>
<strong>Fig.4</strong>

Revision as of 01:14, 14 October 2014

UESTC-China