Difference between revisions of "Team:NYMU-Taipei/Nitrogen starvation"

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Background
 
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<p>  With the development of global economy in the latest demands of energy in world, an average Taiwanese produces around 2.58 billion tons of carbon emission a year. This number far surpasses those of China, Japan and South Korea. Our project, as a result, works to use biofuel as an alternative fossil fuel to reduce the current energy crisis. In our lab, we use Microalgae as the source of biofuel since they have the greatest capability of producing large amount of oil. </p>
 
<p>  With the development of global economy in the latest demands of energy in world, an average Taiwanese produces around 2.58 billion tons of carbon emission a year. This number far surpasses those of China, Japan and South Korea. Our project, as a result, works to use biofuel as an alternative fossil fuel to reduce the current energy crisis. In our lab, we use Microalgae as the source of biofuel since they have the greatest capability of producing large amount of oil. </p>
 
<p>  Our project aims to increases oil accumulation through nitrogen starvation, which was brought up in a research we came upon.<sub style='font-size:12px;'>[ref 1,2]</sub>  Under nitrogen starvation, de novo synthesis of triacylglycerol from acyl-CoA increases. Acyl moieties derived from the degradation of membrane lipids then recycle into triacylglycerol, increasing carbon flux towards glycerol-3 -phosphate and acyl-CoA for fatty acid synthesis. As such, the oil accumulation under nitrogen starvation will increase.</p>
 
<p>  Our project aims to increases oil accumulation through nitrogen starvation, which was brought up in a research we came upon.<sub style='font-size:12px;'>[ref 1,2]</sub>  Under nitrogen starvation, de novo synthesis of triacylglycerol from acyl-CoA increases. Acyl moieties derived from the degradation of membrane lipids then recycle into triacylglycerol, increasing carbon flux towards glycerol-3 -phosphate and acyl-CoA for fatty acid synthesis. As such, the oil accumulation under nitrogen starvation will increase.</p>

Revision as of 17:07, 25 September 2017