Difference between revisions of "Team:China Tongji/Notebook"
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<h4>1.1.2.3 Week4 -- July 22~27</h4> | <h4>1.1.2.3 Week4 -- July 22~27</h4> | ||
<h5>July 22</h5> | <h5>July 22</h5> | ||
− | <p>1, Design the PCR plasmid of chETA and | + | <p>1, Design the PCR plasmid of chETA and iC1C2 which we bought from addgene.</p> |
− | <p>2, Cultivation of plasmid chETA and | + | <p>2, Cultivation of plasmid chETA and iC1C2 from Addgene.Pick a loop of bacteria from the sample, streaking on Amp+ plates, cultivate in 37℃ for 12h.</p> |
<p>3, Transform DH5α(pmyo2-blink,pmyo3-blink). Label the plate and put it in the incubator about one night, 37℃.</p> | <p>3, Transform DH5α(pmyo2-blink,pmyo3-blink). Label the plate and put it in the incubator about one night, 37℃.</p> | ||
<h5>July 23</h5> | <h5>July 23</h5> | ||
− | <p>1, Amplify of plasmid chETA and | + | <p>1, Amplify of plasmid chETA and iC1C2 from Addgene.Pick 5 single clone from each plate, add in 4ml LB medium separately, and shaking in 37℃ for 14h.</p> |
<p>2, Make LB plate.</p> | <p>2, Make LB plate.</p> | ||
<p>3, Select a single clone and culture for 12h of each template. (pmyo2-blink,pmyo3-blink)</p> | <p>3, Select a single clone and culture for 12h of each template. (pmyo2-blink,pmyo3-blink)</p> | ||
<h5>July 24</h5> | <h5>July 24</h5> | ||
− | <p>1, Plasmid extraction of plasmid chETA and | + | <p>1, Plasmid extraction of plasmid chETA and iC1C2. (the results are all around 100ng/ul)</p> |
− | <p>2, Taq PCR of chETA and | + | <p>2, Taq PCR of chETA and iC1C2. (to test the best reaction tempareture)</p> |
<p>3, AGE ( agarose gel electrophoresis ) of PCR products. Analyze the result. We found that 68℃ is the best temperature.</p> | <p>3, AGE ( agarose gel electrophoresis ) of PCR products. Analyze the result. We found that 68℃ is the best temperature.</p> | ||
<p>4, Plasmid Extraction. (pmyo2-blink,pmyo3-blink) the results are all at 200-300ng/ul.</p> | <p>4, Plasmid Extraction. (pmyo2-blink,pmyo3-blink) the results are all at 200-300ng/ul.</p> | ||
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<h5>July 25</h5> | <h5>July 25</h5> | ||
− | <p>1, Pfu PCR of chETA and | + | <p>1, Pfu PCR of chETA and iC1C2.</p> |
<p>2, AGE ( agarose gel electrophoresis ) of pfu PCR products.</p> | <p>2, AGE ( agarose gel electrophoresis ) of pfu PCR products.</p> | ||
− | <p>3, Gel extraction and recycle the chETA and | + | <p>3, Gel extraction and recycle the chETA and iC1C2.</p> |
<p>4, Used the C.elegans genomic DNA as template and got pttx-3 with the help of Pttx3-HindIII-F and pttx-3-XbaI-R.</p> | <p>4, Used the C.elegans genomic DNA as template and got pttx-3 with the help of Pttx3-HindIII-F and pttx-3-XbaI-R.</p> | ||
<p>5, Algarose gel electrophoresis to test PCR result.</p> | <p>5, Algarose gel electrophoresis to test PCR result.</p> | ||
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<p>3, After confirming the accuracy of my PCR result, we did an gel extraction and recycle the pttx-3.</p> | <p>3, After confirming the accuracy of my PCR result, we did an gel extraction and recycle the pttx-3.</p> | ||
<p>4, Transformation of pmyo2, pmyo3 plasmids to get more for the latter experiment.Culture at 37℃ for 16h.</p> | <p>4, Transformation of pmyo2, pmyo3 plasmids to get more for the latter experiment.Culture at 37℃ for 16h.</p> | ||
− | <p>5, Pfu PCR of chETA and | + | <p>5, Pfu PCR of chETA and iC1C2.</p> |
− | <p>6, AGE ( agarose gel electrophoresis ) of pfu PCR products.(chETA and | + | <p>6, AGE ( agarose gel electrophoresis ) of pfu PCR products.(chETA and iC1C2)</p> |
− | <p>7, Gel extraction and recycle the chETA and | + | <p>7, Gel extraction and recycle the chETA and iC1C2.</p> |
<p>8, Select single clone of AMP LB plate.And culture for 12h.</p> | <p>8, Select single clone of AMP LB plate.And culture for 12h.</p> | ||
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<h5>July 29</h5> | <h5>July 29</h5> | ||
<p>1, Make Backbone, transformation of backbone.Culture at 37℃ for 16h. (according by protocol offered by iGEM)</p> | <p>1, Make Backbone, transformation of backbone.Culture at 37℃ for 16h. (according by protocol offered by iGEM)</p> | ||
− | <p>2, DigestchETA and | + | <p>2, DigestchETA and iC1C2 genes, pmyo2 and pmyo3 vectors with BamHI and EcoRI.(digestion protocol)</p> |
− | <p>3, Ligation of pmyo2-chETA, pmyo2- | + | <p>3, Ligation of pmyo2-chETA, pmyo2-iC1C2, pmyo3-chETA and pmyo3-iC1C2. (ligation protocol)</p> |
<h5>July 30</h5> | <h5>July 30</h5> | ||
− | <p>1, Transformation of pmyo2-chETA, pmyo2- | + | <p>1, Transformation of pmyo2-chETA, pmyo2-iC1C2, pmyo3-chETA and pmyo3-iC1C2.Culture at 37℃ for 16h.</p> |
− | <p>2, Select single clone from culture plate (pmyo2-chETA, pmyo2- | + | <p>2, Select single clone from culture plate (pmyo2-chETA, pmyo2-iC1C2).And culture for 12h.(there is no clone of pmyo3-chETA and pmyo3-iC1C2 )</p> |
<p>3, Select single clone from culture plate.(Backbone)</p> | <p>3, Select single clone from culture plate.(Backbone)</p> | ||
<h5>July 31</h5> | <h5>July 31</h5> | ||
− | <p>1, Plasmid Extraction (pmyo2-chETA, pmyo2- | + | <p>1, Plasmid Extraction (pmyo2-chETA, pmyo2-iC1C2).</p> |
<p>2, Plasmid Extraction (Backbone).</p> | <p>2, Plasmid Extraction (Backbone).</p> | ||
− | <p>3, Digest of pmyo2-chETA and pmyo2- | + | <p>3, Digest of pmyo2-chETA and pmyo2-iC1C2 using BamHI and EcoRI. Make sure that the gene had been successfully ligated into the plasmids.</p> |
<p>4, Digest of backbone with PstI and EcoRI. Make sure our backbone is made in the right way.</p> | <p>4, Digest of backbone with PstI and EcoRI. Make sure our backbone is made in the right way.</p> | ||
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<h4>1.1.3.1 Week1 -- August 1~7</h4> | <h4>1.1.3.1 Week1 -- August 1~7</h4> | ||
<h5>August 1</h5> | <h5>August 1</h5> | ||
− | <p>1, Transformation of pmyo2-chETA and pmyo2- | + | <p>1, Transformation of pmyo2-chETA and pmyo2-iC1C2 in order to get more plasmids.Culture at 37℃ for 16h.</p> |
− | <p>2, Select single clone from culture plate (pmyo2-chETA and pmyo2- | + | <p>2, Select single clone from culture plate (pmyo2-chETA and pmyo2-iC1C2.).And culture for 12h.</p> |
− | <p>3, Try to ligate pmyo3-chETA and pmyo3- | + | <p>3, Try to ligate pmyo3-chETA and pmyo3-iC1C2 again as last time we failed. Digestion and ligation.</p> |
− | <p>4, Transformation of pmyo3-chETA and pmyo3- | + | <p>4, Transformation of pmyo3-chETA and pmyo3-iC1C2, Culture at 37℃ for 16h.</p> |
<h5>August 2</h5> | <h5>August 2</h5> | ||
− | <p>1, Select single clone from culture plate (pmyo3-chETA and pmyo3- | + | <p>1, Select single clone from culture plate (pmyo3-chETA and pmyo3-iC1C2.).And culture for 12h.</p> |
− | <p>2, Plasmid Extraction (pmyo2-chETA, pmyo2- | + | <p>2, Plasmid Extraction (pmyo2-chETA, pmyo2-iC1C2).</p> |
− | <p>3, Plasmid Extraction (pmyo3-chETA, pmyo3- | + | <p>3, Plasmid Extraction (pmyo3-chETA, pmyo3-iC1C2).</p> |
<h5>August 3</h5> | <h5>August 3</h5> | ||
− | <p>1, Digest ofpmyo3-chETA, pmyo3- | + | <p>1, Digest ofpmyo3-chETA, pmyo3-iC1C2 to check if we had ligated them right. (the result turn out that the pmyo3-chETA is right)</p> |
<p>2, Transformation of pmyo3-chETA in order to get more plasmids.</p> | <p>2, Transformation of pmyo3-chETA in order to get more plasmids.</p> | ||
− | <p>3, Give pmyo2-ChR2, pmyo2-chETA, pmyo2- | + | <p>3, Give pmyo2-ChR2, pmyo2-chETA, pmyo2-iC1C2, pmyo3-ChR2, pmyo3-chETA and pmec4-dsred to company to test the sequences.</p> |
<h5>August 4</h5> | <h5>August 4</h5> | ||
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<p>3, Pfu PCR of pttx-3 from C.elegans genome.</p> | <p>3, Pfu PCR of pttx-3 from C.elegans genome.</p> | ||
<p>4, AGE ( agarose gel electrophoresis ) of pfu PCR products.(pttx3) However, nothing out.</p> | <p>4, AGE ( agarose gel electrophoresis ) of pfu PCR products.(pttx3) However, nothing out.</p> | ||
− | <p>5, Trying to ligate pmyo2- | + | <p>5, Trying to ligate pmyo2-iC1C2 once again.Then transformation of it.Cultured in 37℃ for 16h.</p> |
<h5>August 5</h5> | <h5>August 5</h5> | ||
− | <p>1, Select single clone from culture plate (pmyo2- | + | <p>1, Select single clone from culture plate (pmyo2-iC1C2).And culture for 12h. |
− | <p>2, Plasmid extraction.( pmyo2- | + | <p>2, Plasmid extraction.( pmyo2-iC1C2)</p> |
− | <p>3, Give pmyo2- | + | <p>3, Give pmyo2-iC1C2 to company, and let it test the sequence.</p> |
<p>4, Pfu PCR of pttx-3 from C.elegans genome again. (use different program and different temperature,) </p> | <p>4, Pfu PCR of pttx-3 from C.elegans genome again. (use different program and different temperature,) </p> | ||
<p>5, AGE ( agarose gel electrophoresis ) of pfu PCR products.(pttx-3)</p> | <p>5, AGE ( agarose gel electrophoresis ) of pfu PCR products.(pttx-3)</p> | ||
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<h5>August 9</h5> | <h5>August 9</h5> | ||
− | <p>1, As we are going to do seamless cloning, we have to design new primers of pttx-3, ChR2, chETA, dsRed and | + | <p>1, As we are going to do seamless cloning, we have to design new primers of pttx-3, ChR2, chETA, dsRed and iC1C2, blink. </p> |
<h5>August 10</h5> | <h5>August 10</h5> | ||
<p>1, Make LB liquid.Make LB AMP plates.</p> | <p>1, Make LB liquid.Make LB AMP plates.</p> | ||
− | <p>2, Taq PCR of pttx-3, ChR2, chETA, dsRed and | + | <p>2, Taq PCR of pttx-3, ChR2, chETA, dsRed and iC1C2, blink to test the best temperature of PCR reaction.</p> |
− | <p>3, AGE ( agarose gel electrophoresis ) of taq PCR products. (pttx-3, ChR2, chETA, dsRed and | + | <p>3, AGE ( agarose gel electrophoresis ) of taq PCR products. (pttx-3, ChR2, chETA, dsRed and iC1C2)</p> |
<p>4, Pfu PCR of pttx-3.</p> | <p>4, Pfu PCR of pttx-3.</p> | ||
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<p>3, Digest of pttx-3 with SalI and BamHI to test the ligation result. (turns out to be right!)</p> | <p>3, Digest of pttx-3 with SalI and BamHI to test the ligation result. (turns out to be right!)</p> | ||
<p>4, Transformation of pttx-3 ppd95.77 in order to get more right plasmids.</p> | <p>4, Transformation of pttx-3 ppd95.77 in order to get more right plasmids.</p> | ||
− | <p>5, Pfu PCR of ChR2, chETA, dsRed and | + | <p>5, Pfu PCR of ChR2, chETA, dsRed and iC1C2, blink.</p> |
− | <p>6, AGE ( agarose gel electrophoresis ) of pfu PCR products. (ChR2, chETA, dsRed and | + | <p>6, AGE ( agarose gel electrophoresis ) of pfu PCR products. (ChR2, chETA, dsRed and iC1C2, blink)</p> |
− | <p>7, Gel extraction and recycle the ChR2, chETA, dsRed and | + | <p>7, Gel extraction and recycle the ChR2, chETA, dsRed and iC1C2, blink. (around 80ng/ul)</p> |
<p>8, Digest 1.5 ul of pttx-3 ppd95.77.</p> | <p>8, Digest 1.5 ul of pttx-3 ppd95.77.</p> | ||
− | <p>9, Seamless clone of pttx-3 with ChR2, chETA, dsRed, | + | <p>9, Seamless clone of pttx-3 with ChR2, chETA, dsRed, iC1C2 and blink. (seamless clone protocol)</p> |
− | <p>10, Transformation of pttx-3-ChR2, PTTX-3-chETA, PTTX-3-dsRed, pttx-3- | + | <p>10, Transformation of pttx-3-ChR2, PTTX-3-chETA, PTTX-3-dsRed, pttx-3-iC1C2 and pttx-3-blink.Cultured in 37℃ for 16h.</p> |
<h5>August 13</h5> | <h5>August 13</h5> | ||
− | <p>1, Select single clone of pttx-3-ChR2, pttx-3-chETA, pttx-3-dsRed and pttx-3- | + | <p>1, Select single clone of pttx-3-ChR2, pttx-3-chETA, pttx-3-dsRed and pttx-3-iC1C2 (pttx-3-blink has no clone.). Cultured at 37℃ for 12h.</p> |
− | <p>2, Plasmid extraction. (pttx-3-ChR2, pttx-3-chETA, pttx-3-dsRed and pttx-3- | + | <p>2, Plasmid extraction. (pttx-3-ChR2, pttx-3-chETA, pttx-3-dsRed and pttx-3-iC1C2)</p> |
− | <p>3, Digest of (pttx-3-ChR2, pttx-3-chETA, pttx-3-dsRed and pttx-3- | + | <p>3, Digest of (pttx-3-ChR2, pttx-3-chETA, pttx-3-dsRed and pttx-3-iC1C2 with BamHI and EcoRI to test if we had successfullyligate the gene into the vector, which turn out that these are all right.</p> |
<p>4, Send them to company for a sequence test.</p> | <p>4, Send them to company for a sequence test.</p> | ||
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<h5>Augest 19</h5> | <h5>Augest 19</h5> | ||
− | <p>1, Pfu PCR of blink, ChR2, dsred, | + | <p>1, Pfu PCR of blink, ChR2, dsred, iC1C2 and chETA.</p> |
− | <p>2, AGE ( agarose gel electrophoresis ) of pfu PCR products. (blink, ChR2, dsred, | + | <p>2, AGE ( agarose gel electrophoresis ) of pfu PCR products. (blink, ChR2, dsred, iC1C2 and chETA)</p> |
<p>3, Gel extraction and recycle the blink. (around 50ng/ul)</p> | <p>3, Gel extraction and recycle the blink. (around 50ng/ul)</p> | ||
<p>4, Digest of ptwk16 ppd95.75 with BamHI and HindIII.</p> | <p>4, Digest of ptwk16 ppd95.75 with BamHI and HindIII.</p> | ||
− | <p>5, Seamless clone of ptwk16-blink, ptwk16-ChR2, ptwk16-dsred, ptwk16- | + | <p>5, Seamless clone of ptwk16-blink, ptwk16-ChR2, ptwk16-dsred, ptwk16-iC1C2 and ptwk16-chETA.</p> |
− | <p>6, Transformation of ptwk16-blink, ptwk16-ChR2, ptwk16-dsred, ptwk16- | + | <p>6, Transformation of ptwk16-blink, ptwk16-ChR2, ptwk16-dsred, ptwk16-iC1C2 and ptwk16-chETA.Cultured in 37℃ for 16h.</p> |
<h5>August 20</h5> | <h5>August 20</h5> | ||
− | <p>1, Select the single clone of ptwk16-blink, ptwk16- | + | <p>1, Select the single clone of ptwk16-blink, ptwk16-iC1C2 and ptwk16-chETA. (ptwk16-ChR2, ptwk16-dsred has not been ligated successfully.) culture in 37℃ for 12h</p> |
− | <p>2, plasmid extraction of ptwk16-blink, ptwk16- | + | <p>2, plasmid extraction of ptwk16-blink, ptwk16-iC1C2 and ptwk16-chETA.</p> |
− | <p>3, Digest of ptwk16-blink, ptwk16- | + | <p>3, Digest of ptwk16-blink, ptwk16-iC1C2 and ptwk16-chETA with BamHI and EcoRI to test if we had ligated them in the right way. (It turns out to be right.)</p> |
<p>4, Ligate of ptwk16-ChR2, ptwk16-dsRed again.</p> | <p>4, Ligate of ptwk16-ChR2, ptwk16-dsRed again.</p> | ||
<p>5, Transformation of ptwk16-ChR2, ptwk16-dsred.Culture in 37℃ for 16h.</p> | <p>5, Transformation of ptwk16-ChR2, ptwk16-dsred.Culture in 37℃ for 16h.</p> | ||
<h5>August 21</h5> | <h5>August 21</h5> | ||
− | <p>1, Select the single clone of ptwk16-blink, ptwk16- | + | <p>1, Select the single clone of ptwk16-blink, ptwk16-iC1C2 and ptwk16-chETA. (ptwk16-ChR2, ptwk16-dsred) culture in 37℃ for 12h</p> |
<p>2, Plasmid extraction of ptwk16-ChR2, ptwk16-dsred.</p> | <p>2, Plasmid extraction of ptwk16-ChR2, ptwk16-dsred.</p> | ||
<p>3,digest of ptwk16-ChR2, ptwk16-dsred with BamHI and EcoRI to test if the result is right.</p> | <p>3,digest of ptwk16-ChR2, ptwk16-dsred with BamHI and EcoRI to test if the result is right.</p> | ||
− | <p>4, Start to make backbone which we are going to send to iGEM. Design the seamless clone PCR primers of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>4, Start to make backbone which we are going to send to iGEM. Design the seamless clone PCR primers of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA, pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-ChR2, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA.</p> |
<p>5, Make some chloramphenicol LB plates.</p> | <p>5, Make some chloramphenicol LB plates.</p> | ||
<h4>1.1.3.4 Week4 -- August 22~28</h4> | <h4>1.1.3.4 Week4 -- August 22~28</h4> | ||
<h5>August 22</h5> | <h5>August 22</h5> | ||
− | <p>1, Taq PCR of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>1, Taq PCR of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA, pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-ChR2, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA to test the best reaction situation.<p> |
<p>2, AGE ( agarose gel electrophoresis ) of these taq PCR products.<p> | <p>2, AGE ( agarose gel electrophoresis ) of these taq PCR products.<p> | ||
− | <p>3, Pfu PCR of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>3, Pfu PCR of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA.<p> |
− | <p>4, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>4, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA.)<p> |
<p>5, Gel extraction and recycle the blink. (around 50ng/ul)<p> | <p>5, Gel extraction and recycle the blink. (around 50ng/ul)<p> | ||
<p>6, Digest of backbone with PstI and EcoRI.<p> | <p>6, Digest of backbone with PstI and EcoRI.<p> | ||
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<h5>August 23</h5> | <h5>August 23</h5> | ||
− | <p>1, Seamless clone of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>1, Seamless clone of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA.<p> |
− | <p>2, Transformation of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>2, Transformation of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA.Culture on chloramphenicol LB plates in 37℃ for 16h.<p> |
− | <p>3, Select the single clone of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>3, Select the single clone of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA. Culture onchloramphenicol LB plates in 37℃ for 12h.<p> |
− | <p>4, Pfu PCR of pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3- | + | <p>4, Pfu PCR of pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-ChR2, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA.<p> |
− | <p>5, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3- | + | <p>5, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-ChR2, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA.) However, nothing came out.<p> |
<h5>August 24</h5> | <h5>August 24</h5> | ||
− | <p>1, Plasmid extraction of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>1, Plasmid extraction of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA.<p> |
− | <p>2, Digest of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2- | + | <p>2, Digest of pmyo2-ChR2, pmyo2-dsred, pmyo2-blink, pmyo2-iC1C2, pmyo2-chETA, pmyo3-ChR2, pmyo3-dsred, pmyo3-blink, pmyo3-iC1C2, pmyo3-chETA to check if we had ligate the right parts into plasmid.<p> |
<p>3, Send them to company to test the sequence.<p> | <p>3, Send them to company to test the sequence.<p> | ||
− | <p>4, Pfu PCR of pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3- | + | <p>4, Pfu PCR of pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-ChR2, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA again. (change the reaction temperature.)<p> |
− | <p>5, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3- | + | <p>5, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-ChR2, pttx3-dsred, pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-ChR2, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA.) pttx3-ChR2, pttx3-dsred and ptwk16-ChR2 show on the gel.<p> |
<p>6, Gel extraction and recycle the pttx3-ChR2, pttx3-dsred and ptwk16-ChR2.<p> | <p>6, Gel extraction and recycle the pttx3-ChR2, pttx3-dsred and ptwk16-ChR2.<p> | ||
Line 480: | Line 480: | ||
<h5>August 27</h5> | <h5>August 27</h5> | ||
− | <p>1, Design new primers of pttx3-blink, pttx3- | + | <p>1, Design new primers of pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA.<p> |
<p>2, As we couldn’t have PstI, EcoRI, SpeI and BamHI in our backbone plasmid, we have to do some point mutation.<p> | <p>2, As we couldn’t have PstI, EcoRI, SpeI and BamHI in our backbone plasmid, we have to do some point mutation.<p> | ||
<p>3, The overlap PCR of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo3-ChR2 to mutate the PstI site in them.<p> | <p>3, The overlap PCR of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo3-ChR2 to mutate the PstI site in them.<p> | ||
Line 486: | Line 486: | ||
<h5>August 28</h5> | <h5>August 28</h5> | ||
<p>1, The overlap PCR of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo3-ChR2 to mutate the PstI site in them.<p> | <p>1, The overlap PCR of backbone---pmyo2-ChR2, pmyo2-dsred, pmyo3-ChR2 to mutate the PstI site in them.<p> | ||
− | <p>2, Pfu PCR of pttx3-blink, pttx3- | + | <p>2, Pfu PCR of pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA using new primers to test the best reaction situation.<p> |
− | <p>3, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-blink, pttx3- | + | <p>3, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA)<p> |
− | <p>4, Pfu PCR of pttx3-blink, pttx3- | + | <p>4, Pfu PCR of pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA using new primers.</p> |
<h4>1.1.3.5 Week5 -- August 29~31</h4> | <h4>1.1.3.5 Week5 -- August 29~31</h4> | ||
<h5>August 29</h5> | <h5>August 29</h5> | ||
− | <p>1, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-blink, pttx3- | + | <p>1, AGE ( agarose gel electrophoresis ) of pfu PCR products. (pttx3-blink, pttx3-iC1C2, pttx3-chETA, ptwk16-dsred, ptwk16-blink, ptwk16-iC1C2, ptwk16-chETA) we got pttx3-blink and ptwk16-iC1C2.</p> |
− | <p>2, Gel extraction and recycle pttx3-blink and ptwk16- | + | <p>2, Gel extraction and recycle pttx3-blink and ptwk16-iC1C2.</p> |
<p>3, Digest of backbone with PstI and EcoRI.</p> | <p>3, Digest of backbone with PstI and EcoRI.</p> | ||
<p>4, Seamless clone of backbone-pttx3-blink and ptwk16-ic1c2.</p> | <p>4, Seamless clone of backbone-pttx3-blink and ptwk16-ic1c2.</p> |
Revision as of 14:54, 16 September 2015
Notebook
1. Record
- 1.1 Plasmid Part
- 1.2 Worm Part
- 1.3 Efficiency Part
- 1.4 Equipment Part
2. Timeline
1. Record
1.1 Plasmid Part
1.2 Worm Part
1.3 Efficiency Testpart
1.4 Equipment Part
2. Timeline
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