Difference between revisions of "Team:Tianjin/Design"

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       <h5>3) Verification of <i>yEmRFP</i> in the PVRVC</h5>
 
       <h5>3) Verification of <i>yEmRFP</i> in the PVRVC</h5>
       <p> The verification of <i>yEmRFP</i> is carried out by using colony PCR to amplify the homologous arm-TEF promoter-vox-RFP gene and terminator-vox-crtE gene, which determine the existence of <i>vox</i> sites and <i>yEmRFP</i> gene. Then we can detect the red fluorescence.
+
       <p> The verification of <i>yEmRFP</i> is carried out by using colony PCR to amplify the homologous arm-TEF promoter-vox-RFP gene and terminator-vox-crtE gene, which determines the existence of <i>vox</i> sites and <i>yEmRFP</i> gene. Then we can detect the red fluorescence.
  
 
</p>
 
</p>
 
       <h5>4) Method of Red Fluorescence Assay</h5>
 
       <h5>4) Method of Red Fluorescence Assay</h5>
       <p> We used a variant of the mCherry red fluorescent protein (RFP). The variant sequence was codon-optimized for the expression in <i>Saccharomyces cerevisiae</i> as yeast-enhanced mRFP (<i>yEmRFP</i>) and can combine fluorescence and a purple visible phenotype. Unfortunately, the <i>RFP</i> can’t be directly observed by bare eyes, we decided to use the Fluorescence spectrophotometer(F-2500) and use OD<sub>600</sub> to determination cell concentration. Meanwhile, we will observe using Fluorescence microscopy for fluorescent proteins expression. The red color can be observed if <i>yEmRFP</i> is expressed.
+
       <p> We use a variant of the mCherry red fluorescent protein (RFP). The variant sequence was codon-optimized for the expression in <i>Saccharomyces cerevisiae</i> as yeast-enhanced mRFP (<i>yEmRFP</i>) and can combine fluorescence and a purple visible phenotype. Unfortunately, the <i>RFP</i> can’t be directly observed by bare eyes, we decided to use the Fluorescence spectrophotometer(F-2500) and use OD<sub>600</sub> to determination cell concentration. Meanwhile, we will observe using Fluorescence microscopy for fluorescent proteins expression. The red color can be observed if <i>yEmRFP</i> is expressed.
  
 
</p>
 
</p>
 
       <h5>5) Construction of <i>Vika</i> System</h5>
 
       <h5>5) Construction of <i>Vika</i> System</h5>
       <p>We use a common expression vector plasmid, <i>pRS416</i>, to load <i>vika</i> part. First of all, we use corresponding restriction endonuclease <i>Sal1</i> and <i>Not1</i> to cut plasmid <i>pRS416</i> and plasmid <i>pRS415-vika</i>, a gift from Y.J lab, and then use <i>T4</i> DNA ligase to link them together, we can obtain the complete device we want. Finally, we transform this device into <i>BY4742</i> by the lithium acetate conversion method, and we screen for the correctly transformed cell by using the <i>Sc-Ura</i> plate. <i>BY4742</i> is a haploid with mating type of <i>α</i>.
+
       <p>We use a common expression vector plasmid, <i>pRS416</i>, to load <i>Vika</i> part. First of all, we use corresponding restriction endonuclease <i>Sal1</i> and <i>Not1</i> to cut plasmid <i>pRS416</i> and plasmid <i>pRS415-Vika</i>, a gift from Y.J lab, and then use <i>T4</i> DNA ligase to link them together, we can obtain the complete device we want. Finally, we transform this device into <i>BY4742</i> by the lithium acetate conversion method, and we screen for the correctly transformed cell by using the <i>Sc-Ura</i> plate. <i>BY4742</i> is a haploid with mating type of <i>α</i>.
  
 
</p>  
 
</p>  

Revision as of 02:34, 2 November 2017

/* OVERRIDE IGEM SETTINGS */

Design


Background

Human existence on earth is almost impossible without the heavy metals. Even though important to mankind, exposure to them during production, usage and their uncontrolled discharge into the environment has caused lots of hazards to man, other organisms and the environment itself. Heavy metals can enter human tissues and organs via inhalation, diet, and manual handling. As the process of urbanization and industrialization goes deeper and deeper, heavy metal pollution, a noticeable threaten to almost all the creatures, has become an essential problem to solve.

According to our human practice, the situation of heavy metal pollution (copper and cadmium ions) is marked on a world map, and the severity of heavy metal pollution has been increasing all over this map. Places with serious pollution include middle Asia, eastern Asia, southern Europe, and Latin America. In addition, not only fresh water source, but also soil and crops are seriously contaminated by heavy metals. On average, during three out of ten suppers we have, we absorb excess heavy metals over the standard concentration.

Considering the rigorous situation we face, our team decided to design an advanced system for typical toxic heavy metal disposal based on Saccharomyces cerevisiae.