Team:SZU-China

From 2014.igem.org

(Difference between revisions)
Line 1: Line 1:
-
 
<!--[if lt IE 7 ]><html class="ie ie6" lang="zh-CN"><![endif]-->
<!--[if lt IE 7 ]><html class="ie ie6" lang="zh-CN"><![endif]-->
<!--[if IE 7 ]><html class="ie ie7" lang="zh-CN"><![endif]-->
<!--[if IE 7 ]><html class="ie ie7" lang="zh-CN"><![endif]-->
Line 243: Line 242:
   <div class="row">
   <div class="row">
     <div class="col-md-5">
     <div class="col-md-5">
-
       <figure class="thumbnail zan-thumb"><img width="400" height="240" src="https://static.igem.org/mediawiki/2014/c/c2/SzuDesign1.png"  class="lazy attachment-medium wp-post-image" alt="banner_7" /> </figure>
+
       <figure class="thumbnail zan-thumb"><img width="450" height="240" src="https://static.igem.org/mediawiki/2014/2/28/SzuHome33.jpg"  class="lazy attachment-medium wp-post-image" alt="banner_7" /> </figure>
     </div>
     </div>
     <div class="col-md-7  bg-info 微软雅黑"> To enhance the effects of decontamination in various fields, we use an alkaline cellulase as detergent additive. The alkaline cellulase gene was introduced into the Escherichia coli and the target enzyme can be highly produced with the help of Kil, which is one of the core elements of our project. What’s more, MdfA, a proton pump across the cell membrane, was added to transport the proton into the cytoplasma, and release Na+/K+ at the same time, resulting in cell survival in alkaline industry wastewaters as high as pH 9.5. Another highlight of our project is that we also added a ccdB suicide system to our e-machine, by this we could remove the biological machine whenever we need for biological safety. <br> <br>
     <div class="col-md-7  bg-info 微软雅黑"> To enhance the effects of decontamination in various fields, we use an alkaline cellulase as detergent additive. The alkaline cellulase gene was introduced into the Escherichia coli and the target enzyme can be highly produced with the help of Kil, which is one of the core elements of our project. What’s more, MdfA, a proton pump across the cell membrane, was added to transport the proton into the cytoplasma, and release Na+/K+ at the same time, resulting in cell survival in alkaline industry wastewaters as high as pH 9.5. Another highlight of our project is that we also added a ccdB suicide system to our e-machine, by this we could remove the biological machine whenever we need for biological safety. <br> <br>

Revision as of 19:24, 14 October 2014

SZU-China

Super Dream Factory of Cellulase


banner_7
To enhance the effects of decontamination in various fields, we use an alkaline cellulase as detergent additive. The alkaline cellulase gene was introduced into the Escherichia coli and the target enzyme can be highly produced with the help of Kil, which is one of the core elements of our project. What’s more, MdfA, a proton pump across the cell membrane, was added to transport the proton into the cytoplasma, and release Na+/K+ at the same time, resulting in cell survival in alkaline industry wastewaters as high as pH 9.5. Another highlight of our project is that we also added a ccdB suicide system to our e-machine, by this we could remove the biological machine whenever we need for biological safety.



Retrieved from "http://2014.igem.org/Team:SZU-China"