Difference between revisions of "Team:SCAU-China"

 
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    <li><a href="https://2016.igem.org/Team:SCAU-China/Time_shaft">Time shaft</a></li>
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    <li><a href="https://2016.igem.org/Team:SCAU-China/Members">Members</a></li>
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    <li><a href="  https://2016.igem.org/Team:SCAU-China/HP/Silver">Silver</a></li>
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<h2>TEAM DESCRIPTIONS</h2>
 
    <p>Team SCAU-China set up in March, 2015. In the first three months, we actively come up with various thoughts in the meetings every twice a week, exchanging our idea with all the team members. Delightfully, we always got inspiration from other's sharing. After that, we divided our team into several small groups to work over several ideas, which were thought to be viable and meaningful. We dedicated to our issue and cooperated with other group members to complete them. Eventually, two projects stood out among all, with their name astaxanthin biosynthesis in rice endosperm and PHBV biosynthesis in E.coil. In June of 2015, both two projects started their experiments respectively and in March, 2016, the astaxanthin one was selected to be our final project for iGEM competition due to its satisfying progress and surprising innovation. </p>
 
<p>Now our wet-lab experiment is well progressing and we have made some plans for human practice, wiki making and other sections. We will try our best to complete our project, which will be the debut of rice endosperm with a safe and productive bioreactor in the iGEM competition.
 
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        <div class="p_font_size" style="text-indent:0em"> Our team has been working on the iGEM-2016 project for two years. In this project, we used rice (<em>Oryza sativa</em> L.) as chassis organism to produce a genetically modified organism (GMO) named aSTARice, which enables biosynthesis of astaxanthin in the rice endosperm. To achieve this goal, four genes derived from maize, algae, and bacteria, respectively, were expressed under the control of endosperm-specific promoters. We have successed in detection of astaxanthin in the endosperm of resultant aSTARice.  </div>
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        <div class="p_font_size">In the human practice, we have successfully held several public activities such as open laboratory day, a Bauhinia Scientific and Cultural Festival in our university, which attracted hundreds and thousands of people to visit a laboratory of molecular biology, to understand how is a GMO generated in the lab. We gave several biology courses for middle and primary school students. Therefore, we have promoted the knowledge of synthetic biology and the impact of iGEM in our project. </div>
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      <div class="h1_font_size">  Achievements</div>
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UPLOAD FILES
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<div class="p_font_size">1. We have used rice as a bioreactor to produce astathanxin in rice endosperm.</div>
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<div class="p_font_size">2. The experiences and BioBricks we developed are helpful for plant iGEMers in future.</div>
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<div class="p_font_size">3. The heterogenous genes in our parts have been codon-optimized for plants.</div>
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<div class="p_font_size">4. We have achieved selection marker-free transgenic plants using Cre/loxp site-specific recombination strategy.</div>
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<div class="p_font_size">5. Our experimental design has been worked out as aSTARice.
 
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<img class="img-responsive" src="https://static.igem.org/mediawiki/2016/0/07/T--SCAU-China--Home_gold.png" style="paddig-right:25px">
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<div class="h2_font_size"></div>
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<div class="p_font_size">1. Risk assessment and marker free system are the efforts we made to deal with the safety issue.</div>
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<div class="p_font_size">2. We successfully improve the performance of the previously existing BioBrick BBa_K118003 </div>
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<div class="p_font_size">3. Our BioBrick devices work well under the lab condition.</div>
  
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<div class="p_font_size">4. Our BioBrick devices work well under the greenhouse condition.
  
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<img src="https://static.igem.org/mediawiki/2016/7/76/T--SCAU-China--Home_silver.png" width="200px">
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<div class="h2_font_size"></div>
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<div class="p_font_size">1. BBa_K1959002 works well and has been documented in the Registry entry.
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</div><div class="p_font_size">2. We help the students of Guangdong Experimental High School to set up the team named GDSYZX-United and assist them to finish the iGEM project.
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</div><div class="p_font_size">3. We educate the public, especially the students and try to enhance the general understanding of GMO in the human practices.
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</div></div>
  
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<img src="https://static.igem.org/mediawiki/2016/c/cb/T--SCAU-China--Home_Bronze.png"  width="200px" >
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        <div class="h2_font_size"></div>
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<div class="p_font_size">1. Team SCAU-China has registered with great enthusiasm.
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</div><div class="p_font_size">2. The Wiki and judging form has been full of our works.
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</div><div class="p_font_size">3. Our project and poster will follow us to the Giant Jamboree.
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</div><div class="p_font_size">4. We have completed and submitted 3 BioBricks: BBa_K1959000, BBa_K1959001, BBa_K1959003.
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Latest revision as of 10:42, 8 November 2016

SCAU

Our team has been working on the iGEM-2016 project for two years. In this project, we used rice (Oryza sativa L.) as chassis organism to produce a genetically modified organism (GMO) named aSTARice, which enables biosynthesis of astaxanthin in the rice endosperm. To achieve this goal, four genes derived from maize, algae, and bacteria, respectively, were expressed under the control of endosperm-specific promoters. We have successed in detection of astaxanthin in the endosperm of resultant aSTARice.
In the human practice, we have successfully held several public activities such as open laboratory day, a Bauhinia Scientific and Cultural Festival in our university, which attracted hundreds and thousands of people to visit a laboratory of molecular biology, to understand how is a GMO generated in the lab. We gave several biology courses for middle and primary school students. Therefore, we have promoted the knowledge of synthetic biology and the impact of iGEM in our project.
Achievements
1. We have used rice as a bioreactor to produce astathanxin in rice endosperm.
2. The experiences and BioBricks we developed are helpful for plant iGEMers in future.
3. The heterogenous genes in our parts have been codon-optimized for plants.
4. We have achieved selection marker-free transgenic plants using Cre/loxp site-specific recombination strategy.
5. Our experimental design has been worked out as aSTARice.
1. Risk assessment and marker free system are the efforts we made to deal with the safety issue.
2. We successfully improve the performance of the previously existing BioBrick BBa_K118003
3. Our BioBrick devices work well under the lab condition.
4. Our BioBrick devices work well under the greenhouse condition.
1. BBa_K1959002 works well and has been documented in the Registry entry.
2. We help the students of Guangdong Experimental High School to set up the team named GDSYZX-United and assist them to finish the iGEM project.
3. We educate the public, especially the students and try to enhance the general understanding of GMO in the human practices.
1. Team SCAU-China has registered with great enthusiasm.
2. The Wiki and judging form has been full of our works.
3. Our project and poster will follow us to the Giant Jamboree.
4. We have completed and submitted 3 BioBricks: BBa_K1959000, BBa_K1959001, BBa_K1959003.