Difference between revisions of "Team:Uppsala/Transcriptomics/rRNA Depletion"

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         <h1 id="Dep">rRNA Depletion</h1>
 
         <h1 id="Dep">rRNA Depletion</h1>
 
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<h2 id="References">References</h2>
 
<p><b>[1]</b> Thermo Fisher, 2018. MICROBExpress™ Kit Protocol (PN 1905 Rev C) <a href="https://assets.thermofisher.com/TFS-Assets/LSG/manuals/cms_057051.pdf">https://assets.thermofisher.com/TFS-Assets/LSG/manuals/cms_057051.pdf</a> Date of visit 2018-10-15</p><br>
 
<p><b>[2]</b> Walker, SE, Lorsch J. 2013. Chapter Nineteen - RNA Purification - Precipitation Methods. Methods in Enzymology, 530. p.337-343.</p><br>
 
<p><b>[3]</b> Thermo Fisher, 2018. Qubit Flourometric Quantitation. <a href="https://www.thermofisher.com/se/en/home/industrial/spectroscopy-elemental-isotope-analysis/molecular-spectroscopy/fluorometers/qubit.html">https://www.thermofisher.com/se/en/home/industrial/spectroscopy-elemental-isotope-analysis/molecular-spectroscopy/fluorometers/qubit.html</a> Date of visit 2018-10-15</p><br>
 
<p><b>[4]</b> Petrova OE, Garcia-Alcalde F, Zampaloni C, Sauer K. 2017. Comparative evaluation of rRNA depletion procedures for the improved analysis of bacterial biofilm and mixed pathogen culture transcriptomes. Scientific Reports 7, Article number: 41114.
 
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<p>rRNA stands for ribosomal RNA and constitutes a large part of the cells ribosomes. In fact, about 90% of the total RNA content of the cell is rRNA, with the rest being microRNA, tRNA and mRNA. While the rRNA has been very useful for RNA quality control in the previous step of the pipeline, it actually holds no genetic information of value for us and can be removed to make the RNA sample clearer and lighter in preparation for the coming steps.</p>
 
<p>rRNA stands for ribosomal RNA and constitutes a large part of the cells ribosomes. In fact, about 90% of the total RNA content of the cell is rRNA, with the rest being microRNA, tRNA and mRNA. While the rRNA has been very useful for RNA quality control in the previous step of the pipeline, it actually holds no genetic information of value for us and can be removed to make the RNA sample clearer and lighter in preparation for the coming steps.</p>
  
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<p><b>[3]</b> Thermo Fisher, 2018. Qubit Flourometric Quantitation. <a href="https://www.thermofisher.com/se/en/home/industrial/spectroscopy-elemental-isotope-analysis/molecular-spectroscopy/fluorometers/qubit.html">https://www.thermofisher.com/se/en/home/industrial/spectroscopy-elemental-isotope-analysis/molecular-spectroscopy/fluorometers/qubit.html</a> Date of visit 2018-10-15</p><br>
 
<p><b>[3]</b> Thermo Fisher, 2018. Qubit Flourometric Quantitation. <a href="https://www.thermofisher.com/se/en/home/industrial/spectroscopy-elemental-isotope-analysis/molecular-spectroscopy/fluorometers/qubit.html">https://www.thermofisher.com/se/en/home/industrial/spectroscopy-elemental-isotope-analysis/molecular-spectroscopy/fluorometers/qubit.html</a> Date of visit 2018-10-15</p><br>
 
<p><b>[4]</b> Petrova OE, Garcia-Alcalde F, Zampaloni C, Sauer K. 2017. Comparative evaluation of rRNA depletion procedures for the improved analysis of bacterial biofilm and mixed pathogen culture transcriptomes. Scientific Reports 7, Article number: 41114.
 
<p><b>[4]</b> Petrova OE, Garcia-Alcalde F, Zampaloni C, Sauer K. 2017. Comparative evaluation of rRNA depletion procedures for the improved analysis of bacterial biofilm and mixed pathogen culture transcriptomes. Scientific Reports 7, Article number: 41114.
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Revision as of 22:51, 17 October 2018