Team:UESTC-China/Project
From 2014.igem.org
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- | <p style="color:#1b1b1b;">In our iGEM project, our objective is to further increase | + | <p style="color:#1b1b1b;">In our iGEM project, our objective is to further increase plant’s ability on the uptake and metabolism of formaldehyde by using synthetic biology methods. We used tobacco as a model system to construct our super plant. The key enzyme genes related to formaldehyde metabolism in methylotrophic microorganisms as well as in plants are integrated. Consequently, the two formaldehyde metabolic pathways can work together, making our super plant even more efficient in removing formaldehyde. Our project includes not only the genes mentioned above but also some other genes. The gene AHA2 from Arabidopsis thaliana which can enlarge the stomatal opening is introduced into our project, endowing our super plant a super power on the metabolisation of formaldehyde. For safety reasons, we also included the gene ADCP into our project because of its capability of leading to pollen abortion. In that way, we can guarantee the biosafety of our super plant (Fig.3). |
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<div align="center"><img style="width: 60%;" src="https://static.igem.org/mediawiki/2014/2/2d/Over_fig.3.jpg"/></div> | <div align="center"><img style="width: 60%;" src="https://static.igem.org/mediawiki/2014/2/2d/Over_fig.3.jpg"/></div> |
Revision as of 14:46, 17 October 2014