Line 7,254: | Line 7,254: | ||
<button style="color:white;"type="button" class="btn btn-primary" title="Charles" | <button style="color:white;"type="button" class="btn btn-primary" title="Charles" | ||
data-container="body" data-toggle="popover" data-placement="top" | data-container="body" data-toggle="popover" data-placement="top" | ||
− | data-content="Big Commander wants me to have some small | + | data-content="Big Commander wants me to have some small talks here. But literally I am a kind of person that don't know how to be chatty."> |
We submitted 55 parts, | We submitted 55 parts, | ||
− | </button> with 19 composite parts, and 36 basic parts. Don't think we win at quantity but we actually provided a series of data with high- | + | </button> with 19 composite parts, and 36 basic parts. Don't think we win at quantity but we actually provided a series of data with high-quality. In the production of geraniol in E.coli, our favourite basic part is BBa_K2753003, pSB1C3-obGES cds. We have also created and synthesized competent pathways in yeast to convert geraniol to neptalactol. Besides, based on previous part like BBa_J23119, we generated a stabilised version by adding an up-element, a TALE2 binding site, and a genetic circuit encoding for TALE2. In addition, We created a novel, well-characterized, and well-documented transcription-activator-like effector (TALE) stabilized promoter (TALEsp) collection as well as two parts enabling future teams to create more stabilized promoters. This promoter library provides a reliable tool which allows teams to construct predictable and robust synthetic systems. Check the GreatBay_China's parts family! |
</h4> | </h4> | ||
</div> | </div> |
Revision as of 06:58, 14 October 2018
Parts Overview
with 19 composite parts, and 36 basic parts. Don't think we win at quantity but we actually provided a series of data with high-quality. In the production of geraniol in E.coli, our favourite basic part is BBa_K2753003, pSB1C3-obGES cds. We have also created and synthesized competent pathways in yeast to convert geraniol to neptalactol. Besides, based on previous part like BBa_J23119, we generated a stabilised version by adding an up-element, a TALE2 binding site, and a genetic circuit encoding for TALE2. In addition, We created a novel, well-characterized, and well-documented transcription-activator-like effector (TALE) stabilized promoter (TALEsp) collection as well as two parts enabling future teams to create more stabilized promoters. This promoter library provides a reliable tool which allows teams to construct predictable and robust synthetic systems. Check the GreatBay_China's parts family!
Part Table
<groupparts style="width:1000px">iGEM18 GreatBay_China</groupparts>