Team:NJU NJUT China
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<div class="film_focus_imgs_wrap"> | <div class="film_focus_imgs_wrap"> | ||
<ul class="film_focus_imgs"> | <ul class="film_focus_imgs"> | ||
- | <li><a target="_blank" href="#"><img width="722" height="310" src="https://static.igem.org/mediawiki/igem.org/3/35/NJU_NJUT_CHINA_Pic1.jpg" alt=" | + | <li><a target="_blank" href="#"><img width="722" height="310" src="https://static.igem.org/mediawiki/igem.org/3/35/NJU_NJUT_CHINA_Pic1.jpg" alt="TEAM PHOTO" /></a></li> |
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<a target="_blank" ><img width="83" height="55" src="https://static.igem.org/mediawiki/igem.org/9/90/NJU_NJUT_CHINA_S1.jpg" alt="" /></a> | <a target="_blank" ><img width="83" height="55" src="https://static.igem.org/mediawiki/igem.org/9/90/NJU_NJUT_CHINA_S1.jpg" alt="" /></a> | ||
- | <p align="left" style="font-size:15px"> TEAM | + | <p align="left" style="font-size:15px"> TEAM</p> |
</li> | </li> | ||
<li> | <li> | ||
<a target="_blank" ><img width="83" height="55" src="https://static.igem.org/mediawiki/igem.org/1/12/NJU_NJUT_CHINA_S2.jpg" alt="" /></a> | <a target="_blank" ><img width="83" height="55" src="https://static.igem.org/mediawiki/igem.org/1/12/NJU_NJUT_CHINA_S2.jpg" alt="" /></a> | ||
- | <p align="left" style="font-size:15px"> | + | <p align="left" style="font-size:15px"> CRISPR</p> |
</li> | </li> | ||
<li> | <li> | ||
<a target="_blank" ><img width="83" height="55" src="https://static.igem.org/mediawiki/igem.org/d/dd/NJU_NJUT_CHINA_S3.jpg" alt="" /></a> | <a target="_blank" ><img width="83" height="55" src="https://static.igem.org/mediawiki/igem.org/d/dd/NJU_NJUT_CHINA_S3.jpg" alt="" /></a> | ||
- | <p align="left" style="font-size:15px"> | + | <p align="left" style="font-size:15px"> PCR |
+ | </p> | ||
</li> | </li> | ||
<li> | <li> | ||
- | <a target="_blank" ><img width="83" height="55" src=" | + | <a target="_blank" ><img width="83" height="55" src="https://static.igem.org/mediawiki/igem.org/b/b6/MG_0042.JPG" alt="" /></a> |
- | <p align="left"style="font-size:15px"> | + | <p align="left"style="font-size:15px"> experiment</p> |
</li> | </li> | ||
</ul> | </ul> | ||
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<a href="#" ><img src="https://static.igem.org/mediawiki/igem.org/3/3c/NJU_NJUT_CHINA_Projecttitle.jpg" style="width:30%; height:10%;"/> </a> | <a href="#" ><img src="https://static.igem.org/mediawiki/igem.org/3/3c/NJU_NJUT_CHINA_Projecttitle.jpg" style="width:30%; height:10%;"/> </a> | ||
<br> | <br> | ||
- | <p align="left" style="margin-left:5px; margin-right:5px;"> & | + | <p align="left" style="margin-left:5px; margin-right:5px;"> All cellular systems evolve ways to combat predators and genomic parasites. In bacteria and archaea, numerous resistance mechanisms have been developed against phage. |
<img src="https://static.igem.org/mediawiki/igem.org/d/de/NJU_NJUT_CHINA_Ind1.jpg" width="212" height="164" width="237" align='right'/>Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated (Cas) adaptive immune systems are found in bacteria and archaea to protect the hosts against the invasion of viruses and plasmids. Most of the bacteria and archaea acquire virus resistance by integrating short viral nucleotide acid fragments into the CRISPR sequences..... | <img src="https://static.igem.org/mediawiki/igem.org/d/de/NJU_NJUT_CHINA_Ind1.jpg" width="212" height="164" width="237" align='right'/>Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated (Cas) adaptive immune systems are found in bacteria and archaea to protect the hosts against the invasion of viruses and plasmids. Most of the bacteria and archaea acquire virus resistance by integrating short viral nucleotide acid fragments into the CRISPR sequences..... | ||
</p> | </p> | ||
- | <a href=" | + | <a href="https://2013.igem.org/Team:NJU_NJUT_China/project"><p class="links" align="left">Read More </p></a> |
</div> | </div> | ||
<div id="contentB"> | <div id="contentB"> | ||
- | <img src="https://static.igem.org/mediawiki/igem.org/9/9f/NJU_NJUT_CHINA_Teamtitle.jpg" width="80" height="201" /></div> | + | <a href="https://2013.igem.org/Team:NJU_NJUT_China/team"><img src="https://static.igem.org/mediawiki/igem.org/9/9f/NJU_NJUT_CHINA_Teamtitle.jpg" width="80" height="201" /></a></div> |
<div id="contentC"> | <div id="contentC"> | ||
<p align="left" style=" margin:3px 8px 3px 8px; text-shadow:#00FF00">Combing the outstanding students from Nanjing University and Nanjing University of Technology, we are trying to make the CRISPR/Cas systems work in the eukaryote cell with the help of the synthetic biology methods. Furthermore, considering the spacers’ sequence as the result of evolution, our team is developing a highly-probable algorithm to direct the synthesis and seeking of spacers or proto-spacers. </p> | <p align="left" style=" margin:3px 8px 3px 8px; text-shadow:#00FF00">Combing the outstanding students from Nanjing University and Nanjing University of Technology, we are trying to make the CRISPR/Cas systems work in the eukaryote cell with the help of the synthetic biology methods. Furthermore, considering the spacers’ sequence as the result of evolution, our team is developing a highly-probable algorithm to direct the synthesis and seeking of spacers or proto-spacers. </p> | ||
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<div class="wp"> | <div class="wp"> | ||
<ul id="slider" class="slider"> | <ul id="slider" class="slider"> | ||
- | <li><a class="fl" href="javascript:;"><img src=" | + | <li><a class="fl" href="javascript:;"><img src="https://static.igem.org/mediawiki/igem.org/5/53/NJU_NJUT_CHINA_Thanks.jpg" alt="" style="height:60px;width:50px"/></a> |
<p align="left" style="font-size:16px">support</p> | <p align="left" style="font-size:16px">support</p> | ||
<p>Thanks to Dr.Xingxu Huang for his kind support in supplying us the cas9 gene.</p> | <p>Thanks to Dr.Xingxu Huang for his kind support in supplying us the cas9 gene.</p> | ||
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<p> Thanks to KeyGene Biotech for its help in providing technical support.</p> | <p> Thanks to KeyGene Biotech for its help in providing technical support.</p> | ||
</li> | </li> | ||
- | <li><a class="fl" href="javascript:;"><img src="https://static.igem.org/mediawiki/igem.org/b/b9/NJU_NJUT_CHINA_Conju.png" alt="" width="141" height="48" style="display:block; margin-bottom: | + | <li><a class="fl" href="javascript:;"><img src="https://static.igem.org/mediawiki/igem.org/b/b9/NJU_NJUT_CHINA_Conju.png" alt="" width="141" height="48" style="display:block; margin-bottom:150px;" /></a> |
- | <p> Thanks to | + | <p> Thanks to Fundamental Biological Experiment Education Center(南大生科教学实验中心) for its support in providing the equipment. </p> |
</li> | </li> | ||
<li><a class="fl" href="javascript:;"><img src="http://pic.cnblogs.com/face/u160412.jpg" alt="" /></a> | <li><a class="fl" href="javascript:;"><img src="http://pic.cnblogs.com/face/u160412.jpg" alt="" /></a> | ||
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<div style="clear: both;"> </div> | <div style="clear: both;"> </div> | ||
</div> | </div> | ||
- | <a href="https://static.igem.org/mediawiki/2013/d/dc/Youngforyou.mp4" ><img src=" | + | <a href="https://static.igem.org/mediawiki/2013/d/dc/Youngforyou.mp4" ><img src="https://static.igem.org/mediawiki/igem.org/c/cf/NJU_NJUT_CHINA_Video.jpg" width="233" height="160" style=" margin-top:10px;"/> </a> </div> |
<!-- end #content --> | <!-- end #content --> | ||
</div> | </div> |
Latest revision as of 03:32, 28 September 2013
<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Strict//EN" "http://www.w3.org/TR/xhtml1/DTD/xhtml1-strict.dtd">
All cellular systems evolve ways to combat predators and genomic parasites. In bacteria and archaea, numerous resistance mechanisms have been developed against phage. Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated (Cas) adaptive immune systems are found in bacteria and archaea to protect the hosts against the invasion of viruses and plasmids. Most of the bacteria and archaea acquire virus resistance by integrating short viral nucleotide acid fragments into the CRISPR sequences.....
Read More
Combing the outstanding students from Nanjing University and Nanjing University of Technology, we are trying to make the CRISPR/Cas systems work in the eukaryote cell with the help of the synthetic biology methods. Furthermore, considering the spacers’ sequence as the result of evolution, our team is developing a highly-probable algorithm to direct the synthesis and seeking of spacers or proto-spacers.