Difference between revisions of "Team:Uppsala/Transcriptomics/PolyA Tailing"

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                             <p>A successful poly(A) tail have a complete chain of adenosines connected to the 3’UTR of the mRNA strand. The attachment is analyzed with gel-electrophoresis and a successful attachment looks like our results in <b>figure 1</b>.
 
                             <p>A successful poly(A) tail have a complete chain of adenosines connected to the 3’UTR of the mRNA strand. The attachment is analyzed with gel-electrophoresis and a successful attachment looks like our results in <b>figure 1</b>.
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                           <img src="https://static.igem.org/mediawiki/2018/5/56/T--Uppsala--Transcriptomics-poly3.jpg" id="polyAimg">     
 
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  <p><b>Figure 1:</b> A successful poly(A) tail attachment onto the mRNA strand, where the ladder shows specific lengths of the mRNA according to the table. The longer mRNA strand you have the longer poly(A) tail you have succeeded to attach.</p>
 
  <p><b>Figure 1:</b> A successful poly(A) tail attachment onto the mRNA strand, where the ladder shows specific lengths of the mRNA according to the table. The longer mRNA strand you have the longer poly(A) tail you have succeeded to attach.</p>
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<h2>Buzzwords</h2>
 
<h2>Buzzwords</h2>
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<b>Gel electrophoresis: </b>Gel electrophoresis is a analysis and separation method of macromolecules, such as DNA and RNA, and their fragments based on charge and size. When the electric field is applied the negatively charged molecules will move through a matrix of agarose. Shorter molecules migrates farther, due to the easier mobility through the pores in the matrix.
 
<b>Gel electrophoresis: </b>Gel electrophoresis is a analysis and separation method of macromolecules, such as DNA and RNA, and their fragments based on charge and size. When the electric field is applied the negatively charged molecules will move through a matrix of agarose. Shorter molecules migrates farther, due to the easier mobility through the pores in the matrix.
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<h1>References</h1>
 
<h1>References</h1>

Revision as of 13:53, 17 October 2018





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