Nabilakhyar (Talk | contribs) |
Nabilakhyar (Talk | contribs) |
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<li>Design and order primers</li> | <li>Design and order primers</li> | ||
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<li>Amplify and extract the fragments of pSB1C3 backbone, pSB1C3-phaB</li> | <li>Amplify and extract the fragments of pSB1C3 backbone, pSB1C3-phaB</li> | ||
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<li>Amplify separative <em>phaA</em>, <em>phaB</em>, and <em>phaC</em> genes fragments with different overhangs</li> | <li>Amplify separative <em>phaA</em>, <em>phaB</em>, and <em>phaC</em> genes fragments with different overhangs</li> | ||
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<ul> | <ul> | ||
<li>Culture the <em> coli</em> strain harboured <em>phaACB</em> operon or <em>phaCBA</em> operon to produce PHB (250 ml flasks)</li> | <li>Culture the <em> coli</em> strain harboured <em>phaACB</em> operon or <em>phaCBA</em> operon to produce PHB (250 ml flasks)</li> | ||
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<li>A <em>bktB</em> gene from <em> eutropha </em>H16 was codon-optimised for <em>E. coli</em> and synthesised by IDT in two parts (B1 and B2 fragments) with 696 bp overlap.</li> | <li>A <em>bktB</em> gene from <em> eutropha </em>H16 was codon-optimised for <em>E. coli</em> and synthesised by IDT in two parts (B1 and B2 fragments) with 696 bp overlap.</li> | ||
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<div id="tittle22" class="collapse"> | <div id="tittle22" class="collapse"> | ||
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<li>Establish a new constuct: pSB1C3-phaCAB-bktB (cloning strategy was shown below)</li> | <li>Establish a new constuct: pSB1C3-phaCAB-bktB (cloning strategy was shown below)</li> | ||
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<div id="tittle23" class="collapse"> | <div id="tittle23" class="collapse"> | ||
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<ul> | <ul> | ||
<li>Transformation of two new constructs.</li> | <li>Transformation of two new constructs.</li> | ||
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<li>Culture the <em>E. coli</em> strain BL21 harbouring pSB1C3-phaCAB-bktB or pSB1C3-PhaCB-bktB in M9 medium that contained 3% glucose, 8mM propionic acid and 10mM acetic acid.</li> | <li>Culture the <em>E. coli</em> strain BL21 harbouring pSB1C3-phaCAB-bktB or pSB1C3-PhaCB-bktB in M9 medium that contained 3% glucose, 8mM propionic acid and 10mM acetic acid.</li> | ||
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<li>Nile red plate staining</li> | <li>Nile red plate staining</li> | ||
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<li>Recover BioBricks from iGEM 2018 distribution kit</li> | <li>Recover BioBricks from iGEM 2018 distribution kit</li> | ||
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<ul> | <ul> | ||
<li>Design and order fragments from IDT</li> | <li>Design and order fragments from IDT</li> | ||
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<li>Double digestion of backbone vector with restriction enzymes of <em>Spe</em>I and <em>Pst</em></li> | <li>Double digestion of backbone vector with restriction enzymes of <em>Spe</em>I and <em>Pst</em></li> | ||
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<li>Mini-prep for plasmids R-P and R-P-HlyA followed by double digestion. (failed). Results were showed in figure 4a.</li> | <li>Mini-prep for plasmids R-P and R-P-HlyA followed by double digestion. (failed). Results were showed in figure 4a.</li> | ||
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<div id="tittle35" class="collapse"> | <div id="tittle35" class="collapse"> | ||
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<li>Measure the optical density of preculture of the recombinant <em> coli</em> BL21 strains that harboured R-P, <em>phaCAB</em> operon+R-P, <em>phaCAB</em> operon+ RFP (-), pSB1C3 (without RFP) +RFP (-) and RFP (-)</li> | <li>Measure the optical density of preculture of the recombinant <em> coli</em> BL21 strains that harboured R-P, <em>phaCAB</em> operon+R-P, <em>phaCAB</em> operon+ RFP (-), pSB1C3 (without RFP) +RFP (-) and RFP (-)</li> | ||
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<ul> | <ul> | ||
<li>Pre-culture all the recombinant <em> coli</em> BL21 strains: <em>phaCAB</em> <em>operon+R-P</em>, phaCAB <em>operon+R-P-HlyA</em> (del), <em>phaCAB operon+p</em>, <em>phaCAB operon+R</em>, <em>phaCAB operon+RFP(-), 1C3-RFP(-)+RFP(-).</em></li> | <li>Pre-culture all the recombinant <em> coli</em> BL21 strains: <em>phaCAB</em> <em>operon+R-P</em>, phaCAB <em>operon+R-P-HlyA</em> (del), <em>phaCAB operon+p</em>, <em>phaCAB operon+R</em>, <em>phaCAB operon+RFP(-), 1C3-RFP(-)+RFP(-).</em></li> | ||
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<ul> | <ul> | ||
<li>Discuss the project aims and decide individual project strategy (shown in Figure 1).</li> | <li>Discuss the project aims and decide individual project strategy (shown in Figure 1).</li> | ||
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<li>Amplify the SBM operon with ordered primers as shown in Figure 1 by tow-step PCR. And analysed by gel electrophoresis.</li> | <li>Amplify the SBM operon with ordered primers as shown in Figure 1 by tow-step PCR. And analysed by gel electrophoresis.</li> | ||
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<ul> | <ul> | ||
<li>Construct pSB3T5: SBM followed by Colony PCR. The strategy was showed in Figure 7 and gel electrophoresis of colony PCR was showed in Figure 8.</li> | <li>Construct pSB3T5: SBM followed by Colony PCR. The strategy was showed in Figure 7 and gel electrophoresis of colony PCR was showed in Figure 8.</li> | ||
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<div id="tittle44" class="collapse"> | <div id="tittle44" class="collapse"> | ||
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<ul> | <ul> | ||
<li>Pellets of pSB3T5, pSB3T5: MCE, pSB3T5: SBM, and pSB3T5: MCE: SBM grown in LB broth were resuspended in M9 minimal media with 3% glucose and tetracycline in order to assay for the production of propionate.</li> | <li>Pellets of pSB3T5, pSB3T5: MCE, pSB3T5: SBM, and pSB3T5: MCE: SBM grown in LB broth were resuspended in M9 minimal media with 3% glucose and tetracycline in order to assay for the production of propionate.</li> | ||
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<div id="tittle51" class="collapse"> | <div id="tittle51" class="collapse"> | ||
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<ul> | <ul> | ||
<li>Design and order primers from IDT</li> | <li>Design and order primers from IDT</li> | ||
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<ul> | <ul> | ||
<li>Construct plasmids: pSB3T5-sucAB, pSB3T5-sucCD, plasmid pSB3T5-X</li> | <li>Construct plasmids: pSB3T5-sucAB, pSB3T5-sucCD, plasmid pSB3T5-X</li> | ||
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<ul> | <ul> | ||
<li>Transform recombinant plasmids to <em> coli</em> forming strains SC1 to SC11. (shown in Table 1)</li> | <li>Transform recombinant plasmids to <em> coli</em> forming strains SC1 to SC11. (shown in Table 1)</li> | ||
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<ul> | <ul> | ||
<li>Pre-culture six different strains to Investigate the effect of <em>sucAB</em> and <em>sucCD </em>gene on growth</li> | <li>Pre-culture six different strains to Investigate the effect of <em>sucAB</em> and <em>sucCD </em>gene on growth</li> | ||
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<li>Dry the cells after cultivation of 60 hours.</li> | <li>Dry the cells after cultivation of 60 hours.</li> | ||
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<ul> | <ul> | ||
<li>To investigate and optimized the level of Hemolysin transporter to PHB secretion, PCR strategy and digestion strategy were designed and ;utilised in plasmid construction.</li> | <li>To investigate and optimized the level of Hemolysin transporter to PHB secretion, PCR strategy and digestion strategy were designed and ;utilised in plasmid construction.</li> | ||
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<ul style="font-weight: 400;"> | <ul style="font-weight: 400;"> | ||
<li data-leveltext="%1." data-font="Calibri,DengXian" data-listid="2" aria-setsize="-1" data-aria-posinset="1" data-aria-level="1">Establish a new construct: DNA fragment pSB1AK8-T7-hlyBD (cloning strategy was shown in Figure 2) and transferred in <em>E. coli</em> BL21 (DE3)</li> | <li data-leveltext="%1." data-font="Calibri,DengXian" data-listid="2" aria-setsize="-1" data-aria-posinset="1" data-aria-level="1">Establish a new construct: DNA fragment pSB1AK8-T7-hlyBD (cloning strategy was shown in Figure 2) and transferred in <em>E. coli</em> BL21 (DE3)</li> | ||
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<ul> | <ul> | ||
<li data-leveltext="%1." data-font="Calibri,DengXian" data-listid="9" aria-setsize="-1" data-aria-posinset="1" data-aria-level="1">Stop codon removal from the original Biobrick (Lac promoter-Phasin-Hemolysin A/ pSB1C3, LPH/pSB1C3) with PCR strategy as shown in Figure 1 and transferred in <em>E. coli</em> BL21(DE3)</li> | <li data-leveltext="%1." data-font="Calibri,DengXian" data-listid="9" aria-setsize="-1" data-aria-posinset="1" data-aria-level="1">Stop codon removal from the original Biobrick (Lac promoter-Phasin-Hemolysin A/ pSB1C3, LPH/pSB1C3) with PCR strategy as shown in Figure 1 and transferred in <em>E. coli</em> BL21(DE3)</li> | ||
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<div class="container"><button class="btn btn-primary" type="button" data-toggle="collapse" data-target="#tittle64"><p><strong>Week 7 - Week 9 Cell culture for growth study and determination of PHA production</strong></p></button> | <div class="container"><button class="btn btn-primary" type="button" data-toggle="collapse" data-target="#tittle64"><p><strong>Week 7 - Week 9 Cell culture for growth study and determination of PHA production</strong></p></button> | ||
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<p><strong> Cell culture for growth study </strong></p> | <p><strong> Cell culture for growth study </strong></p> | ||
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<div class="container"><button class="btn btn-primary" type="button" data-toggle="collapse" data-target="#tittle65"><p><strong>Week 9 - Week 10 Cell culture for PHA production</strong></p></button> | <div class="container"><button class="btn btn-primary" type="button" data-toggle="collapse" data-target="#tittle65"><p><strong>Week 9 - Week 10 Cell culture for PHA production</strong></p></button> | ||
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Revision as of 14:18, 16 October 2018