Difference between revisions of "Team:NYMU-Taipei/Pigments"

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<p>  Astaxanthin synthesis does not naturally exist in the <i>S. elongates</i> PCC7942. But fortunately, after paper research, we found out that <i>S. elongates</i> PCC7942 has an similar pathway with other microalgae which can synthesis astaxanthin, and the only different is,  <i>S. elongates</i> PCC7942 lack of two necessary gene: <font class='mark_red'>beta-carotene ketolase (crtW)</font> and <font class='mark_red'>beta-carotene hydroxylase (crtZ) </font> to undergo this pathway. Thus, we use IDT to synthesis these two genes and construct it on pPIGBACK, a vector which can express the carrying genes in <i>S. elongates</i> PCC7942.
 
<p>  Astaxanthin synthesis does not naturally exist in the <i>S. elongates</i> PCC7942. But fortunately, after paper research, we found out that <i>S. elongates</i> PCC7942 has an similar pathway with other microalgae which can synthesis astaxanthin, and the only different is,  <i>S. elongates</i> PCC7942 lack of two necessary gene: <font class='mark_red'>beta-carotene ketolase (crtW)</font> and <font class='mark_red'>beta-carotene hydroxylase (crtZ) </font> to undergo this pathway. Thus, we use IDT to synthesis these two genes and construct it on pPIGBACK, a vector which can express the carrying genes in <i>S. elongates</i> PCC7942.
 
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<center><img src='https://static.igem.org/mediawiki/2017/b/bd/T--NYMU-Taipei--pigment_astaxathin.png'></center>
 
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Revision as of 14:29, 12 October 2017

Pigments

  In our project, we transfer five types of pigment-related gene sequence (Indigoidine, Zeaxanthin, Melanin, Astaxanthin and Lycopene) into our cyanobacteria. We expect to get six different colors of microalgae, so we could see whether changing the original color of microalgae would change wavelength absorbance and have better photosynthetic efficiencies. Due to better photosynthetic efficiencies, we could elevate oil accumulation in microalgae, which would have great benefit in both industry and scientific usage.