Difference between revisions of "Team:BIT-China/Notebook"

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     <h2 class="title-h2" id="mytop">NOTEBOOK</h2>
 
     <h2 class="title-h2" id="mytop">NOTEBOOK</h2>
 
     <h3 class="title-h3">Breakthrough</h3>
 
     <h3 class="title-h3">Breakthrough</h3>
     <h4 class="title-h4">2.14-4.14:Team recruitment & Brainstorm</h4>
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     <h4 class="title-h4">2.14-4.14:team recruitment & brainstorm</h4>
 
     <h4 class="title-h4">4.14-6.20: core part synthesis and heterologous expression</h4>
 
     <h4 class="title-h4">4.14-6.20: core part synthesis and heterologous expression</h4>
       <p class="my-content-li2">4.14-5.2 : core part-T1R2/T1R3 synthesis completely through OE-PCR.</p>
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       <p class="my-content-li2">4.14-5.2: core part-T1R2/T1R3 synthesis completely through OE-PCR.</p>
       <p class="my-content-li2">4.30-6.20 : heterologous expression of T1R2/T1R3. <a href="https://2017.igem.org/Team:BIT-China/Project/Sense">Click here to see more details.</a></p>
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       <p class="my-content-li2">4.30-6.20: heterologous expression of T1R2/T1R3. <a href="https://2017.igem.org/Team:BIT-China/Project/Sense">Click here to see more details.</a></p>
 
     <h4 class="title-h4">4.30-5.15:modeling</h4>
 
     <h4 class="title-h4">4.30-5.15:modeling</h4>
       <p class="my-content-li2">4.30-5.5:finished several sweeteners’docking as well as T1R2/T1R3 PDB file construction. Different sweeteners docked to the sweet taste receptor T1R2/T1R3.<a href="https://2017.igem.org/Team:BIT-China/Model/Docking">Click here to see more details.</a></p>  
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       <p class="my-content-li2">4.30-5.5: finished several sweeteners'docking as well as T1R2/T1R3 PDB file construction. Different sweeteners docked to the sweet taste receptor T1R2/T1R3.<a href="https://2017.igem.org/Team:BIT-China/Model/Docking">Click here to see more details.</a></p>  
       <p class="my-content-li2">5.5-5.15:MAPK pathway signal modeling. <a href="https://2017.igem.org/Team:BIT-China/Model/GPCRpathway">Click here to see more details.</a></p>
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       <p class="my-content-li2">5.5-5.15: MAPK pathway signal modeling. <a href="https://2017.igem.org/Team:BIT-China/Model/GPCRpathway">Click here to see more details.</a></p>
 
     <h4 class="title-h4">5.2-8.20: pathway optimization</h4>
 
     <h4 class="title-h4">5.2-8.20: pathway optimization</h4>
       <p class="my-content-li2">5.2-7.1 : single gene knockout</p>  
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       <p class="my-content-li2">5.2-7.1: single gene knockout</p>  
       <p class="my-content-li2">7.1-8.5 :any two of the three genes knockout and three genes knockout<a href="https://2017.igem.org/Team:BIT-China/Project/Transduction">Click here to see more details.</a></p>
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       <p class="my-content-li2">7.1-8.5: any two of the three genes knockout and three genes knockout<a href="https://2017.igem.org/Team:BIT-China/Project/Transduction">Click here to see more details.</a></p>
       <p class="my-content-li2">8.5-8.20 : characterization of engineered strains </p>
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       <p class="my-content-li2">8.5-8.20: characterization of engineered strains </p>
 
     <h4 class="title-h4">8.21-10.20:Verification of the new pathway </h4>
 
     <h4 class="title-h4">8.21-10.20:Verification of the new pathway </h4>
       <p class="my-content-li2">8.21-9.13 : establishment of the detection circuit .<a href="https://2017.igem.org/Team:BIT-China/Project/Detection">Click here to see more details.</a></p>
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       <p class="my-content-li2">8.21-9.13: establishment of the detection circuit .<a href="https://2017.igem.org/Team:BIT-China/Project/Detection">Click here to see more details.</a></p>
       <p class="my-content-li2">9.13-9.26 : verification of the new pathway </p>
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       <p class="my-content-li2">9.13-9.26: verification of the new pathway </p>
       <p class="my-content-li2">9.27-10.10 : sweetness meter verification</p>
+
       <p class="my-content-li2">9.27-10.10: sweetness meter verification</p>
       <p class="my-content-li2">10.8-10.20 : parts standardization</p>
+
       <p class="my-content-li2">10.8-10.20: parts standardization</p>
  
  

Revision as of 11:21, 30 October 2017

BIT-CHINA

NOTEBOOK

Breakthrough

2.14-4.14:team recruitment & brainstorm

4.14-6.20: core part synthesis and heterologous expression

4.14-5.2: core part-T1R2/T1R3 synthesis completely through OE-PCR.

4.30-6.20: heterologous expression of T1R2/T1R3. Click here to see more details.

4.30-5.15:modeling

4.30-5.5: finished several sweeteners'docking as well as T1R2/T1R3 PDB file construction. Different sweeteners docked to the sweet taste receptor T1R2/T1R3.Click here to see more details.

5.5-5.15: MAPK pathway signal modeling. Click here to see more details.

5.2-8.20: pathway optimization

5.2-7.1: single gene knockout

7.1-8.5: any two of the three genes knockout and three genes knockoutClick here to see more details.

8.5-8.20: characterization of engineered strains

8.21-10.20:Verification of the new pathway

8.21-9.13: establishment of the detection circuit .Click here to see more details.

9.13-9.26: verification of the new pathway

9.27-10.10: sweetness meter verification

10.8-10.20: parts standardization

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