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− | <a class="active item" href="#VETIVER">Experiments on Vetiver</a>
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− | <a class="item" href="#ProteinPurification">Protein Purification</a>
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− | <a class="item" href="#Arabidopsis">Arabidopsis</a>
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− | <a class="item" href="#HAD_activity">Screen of HAD activity</a>
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− | <a class="active item" href="#VETIVER">Experiments on Vetiver</a>
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− | <a class="item" href="#ProteinPurification">Protein Purification</a>
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− | <a class="item" href="#Arabidopsis">Arabidopsis</a>
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− | <a class="item" href="#HAD_activity">Screen of HAD activity</a>
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− | <a class="item" href="#Toxicology-CellViabilityTest">Toxicology-Cell Viability Test</a>
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− | <a class="item" href="#Improved-part">Improved part</a>
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| <h1 class="ui hidden header"></h1> | | <h1 class="ui hidden header"></h1> |
| <h1 class="ui huge header">Result</h1> | | <h1 class="ui huge header">Result</h1> |
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| <tbody> | | <tbody> |
| <tr> | | <tr> |
− | <td class="right aligned">B. cenocepacia 869T2</td> | + | <td class="right aligned"> |
| + | <i>B. cenocepacia 869T2</i> |
| + | </td> |
| <td>X</td> | | <td>X</td> |
| <td>O</td> | | <td>O</td> |
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| </tbody> | | </tbody> |
| </table> | | </table> |
− | <p>We found that if we inoculate vetiver plants with B. cenocepacia 869T2, the bacteria will decrease the length of | + | <p>We found that if we inoculate vetiver plants with |
− | leaves but increase the number of tillers and leaves; inhibit the grow of main roots but enhance the strong lateral
| + | <i>B. cenocepacia 869T2</i>, the bacteria will decrease the length of leaves but increase the number of tillers and |
− | roots’ formation (we also see the same influence during the experiment of Arabidopsis thaliana). (Figure1 - Figure7)</p>
| + | leaves; inhibit the grow of main roots but enhance the strong lateral roots’ formation (we also see the same influence |
| + | during the experiment of Arabidopsis thaliana). (Figure1 - Figure7)</p> |
| <p>Vetiver plants will get some negative influence when facing to TCDD stress. For example, their leaves number, leaves | | <p>Vetiver plants will get some negative influence when facing to TCDD stress. For example, their leaves number, leaves |
| length, and roots length will not grow well as where growing under the general condition without TCDD. However, | | length, and roots length will not grow well as where growing under the general condition without TCDD. However, |
| not only as above mentioned that Vetiver plants' leaves number and tiller will dramatically increase when they | | not only as above mentioned that Vetiver plants' leaves number and tiller will dramatically increase when they |
− | are inoculated with endophytic bacteria B. cenocepacia 869T2 but if the vetiver plants are also in the TCDD treatment | + | are inoculated with endophytic bacteria |
− | in same time, this effect seems quite more obvious.</p>
| + | <i>B. cenocepacia 869T2</i> but if the vetiver plants are also in the TCDD treatment in same time, this effect seems |
− | <p>Therefore, we can understand that the endophytic bacteria B. cenocepacia strain 869T2 can not only survive in high | + | quite more obvious.</p> |
− | TCDD concentration condition and do some positive effect on its host but also can use the TCDD as a kind of resource
| + | <p>Therefore, we can understand that the endophytic bacteria |
− | for itself to achieve something that still unrevealed.</p>
| + | <i>B. cenocepacia strain 869T2</i> can not only survive in high TCDD concentration condition and do some positive |
− | <div class="ui fluid image" id="labelImg"> | + | effect on its host but also can use the TCDD as a kind of resource for itself to achieve something that still unrevealed.</p> |
| + | <div |
| + | class="ui fluid image" id="labelImg"> |
| <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/8/8b/T--NCHU_Taichung--VETIVER3.png"> | | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/8/8b/T--NCHU_Taichung--VETIVER3.png"> |
| <div class="ui pointing label">Figure 3. Vetiver plants’ leaves number in the different treatments.</div> | | <div class="ui pointing label">Figure 3. Vetiver plants’ leaves number in the different treatments.</div> |
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| completely and dilute the ground liquid with 10 times, and then spread it into LB agar plate for culturing the | | completely and dilute the ground liquid with 10 times, and then spread it into LB agar plate for culturing the |
| target bacteria. Last, we observe the morphology of a single colony to check the two bacteria. A single colony | | target bacteria. Last, we observe the morphology of a single colony to check the two bacteria. A single colony |
− | of B. cenocepacia 869T2 is small, circular, entire, raised, glistening veined, yellow-green. Also, there have no | + | of |
− | any bacteria present in the control sample.</p> | + | <i>B. cenocepacia 869T2</i> is small, circular, entire, raised, glistening veined, yellow-green. Also, there have |
− | <p>Accordingly, we know that B. cenocepacia 869T2 has a great endophytic character and can live in vetiver plants for | + | no any bacteria present in the control sample.</p> |
− | at least 30 days during our experiment.</p>
| + | <p>Accordingly, we know that |
| + | <i>B. cenocepacia 869T2</i> has a great endophytic character and can live in vetiver plants for at least 30 days during |
| + | our experiment.</p> |
| <div class="ui hidden header"></div> | | <div class="ui hidden header"></div> |
| <h3 class="ui dividing header">Analysis of TCDD concentration in plants</h3> | | <h3 class="ui dividing header">Analysis of TCDD concentration in plants</h3> |
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| Co., Ltd. according to the "Test Method for Dioxin and Polychlorinated Biphenyl Residues in Food (CNS 14758 N6369)" | | Co., Ltd. according to the "Test Method for Dioxin and Polychlorinated Biphenyl Residues in Food (CNS 14758 N6369)" |
| published by the MOHW of Executive Yuan.</p> | | published by the MOHW of Executive Yuan.</p> |
− | <p>As the following report presents, the sample which had not been inoculated with B. cenocepacia 869T2 but planted | + | <p>As the following report presents, the sample which had not been inoculated with |
− | in TCDD contained matrix directly was be detected that having 343.253 pg/g TCDD concentration (Table 2) ; the sample
| + | <i>B. cenocepacia 869T2</i> but planted in TCDD contained matrix directly was be detected that having 343.253 pg/g |
− | which had been inoculated with B. cenocepacia 869T2 and then planted in TCDD contained matrix was be detected that
| + | TCDD concentration (Table 2) ; the sample which had been inoculated with |
− | having 2.12257 pg/g TCDD concentration (Table 3) . </p>
| + | <i>B. cenocepacia 869T2</i> and then planted in TCDD contained matrix was be detected that having 2.12257 pg/g TCDD |
− | <p>The vetiver plants inoculated with B. cenocepacia 869T2 shows about 162 times less TCDD concentration than the plants | + | concentration (Table 3) . </p> |
− | didn't be inoculated. Based on this result, it becomes much more solid for us to point out that the endophytic
| + | <p>The vetiver plants inoculated with |
− | bacteria B. cenocepacia 869T2 has the super strong TCDD degradation ability and therefore has the highly potential | + | <i>B. cenocepacia 869T2</i> shows about 162 times less TCDD concentration than the plants didn't be inoculated. Based |
− | to act an extremely important role in our program. </p> | + | on this result, it becomes much more solid for us to point out that the endophytic bacteria |
− | <div class="ui center aligned small header">Table 2. Analysis report of sample didn’t inoculate with B. cenocepacia 869T2</div> | + | <i>B. cenocepacia 869T2</i> has the super strong TCDD degradation ability and therefore has the highly potential to |
| + | act an extremely important role in our program. </p> |
| + | <div class="ui center aligned small header">Table 2. Analysis report of sample didn’t inoculate with |
| + | <i>B. cenocepacia 869T2</i> |
| + | </div> |
| <div class="ui fluid image"> | | <div class="ui fluid image"> |
| <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/1/1e/T--NCHU_Taichung--VETIVER9.png"> | | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/1/1e/T--NCHU_Taichung--VETIVER9.png"> |
| <div class="ui hidden header"></div> | | <div class="ui hidden header"></div> |
| </div> | | </div> |
− | <div class="ui center aligned small header">Table 3. Analysis report of sample did inoculate with B. cenocepacia 869T2</div> | + | <div class="ui center aligned small header">Table 3. Analysis report of sample did inoculate with |
| + | <i>B. cenocepacia 869T2</i> |
| + | </div> |
| <div class="ui fluid image"> | | <div class="ui fluid image"> |
| <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/c/c6/T--NCHU_Taichung--VETIVER10.png"> | | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/c/c6/T--NCHU_Taichung--VETIVER10.png"> |
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| </div> | | </div> |
| </div> | | </div> |
− | <div class="ui olive segment" id="ProteinPurification">
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− | <h1 class="ui hidden header"></h1>
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− | <h2 class="ui header">Protein purification</h2>
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− | <h3 class="ui dividing header">HAD purification (use Immobilized Metal Affinity Chromatography )</h3>
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− | <div class="ui hidden header"></div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/1/16/T--NCHU_Taichung--pur1.png">
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− | <div class="ui pointing label">HAD cloned in PET system is overexpressed successfully in E.coli</div>
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− | <div class="ui hidden header"></div>
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− | </div>
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− | <h3 class="ui dividing header">Laccase purification result (use Immobilized Metal Affinity Chromatography )</h3>
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− | <div class="ui hidden header"></div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/7/76/T--NCHU_Taichung--pur2.png">
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− | <div class="ui pointing label">Laccase cloned in PET system somehow is not overexpressed in E.coli </div>
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− | <div class="ui hidden header"></div>
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− | </div>
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− | </div>
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− | <div class="ui olive segment" id="Arabidopsis">
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− | <h1 class="ui hidden header"></h1>
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− | <h2 class="ui header">Arabidopsis</h2>
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− | <h3 class="ui dividing header">Figure 1
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− | <div class="sub header">Morphological effects caused by TCDD on
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− | <i> thaliana</i>. </div>
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− | </h3>
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− | <div class="ui hidden header"></div>
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− | <div class="ui grid">
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/0/02/T--NCHU_Taichung--arabi1.png">
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− | <div class="ui pointing label">(a) Morphological anomalies in
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− | <i>A. thaliana</i> as response to TCCD-exposure after 14 days at indicated concentrations (0ppm). </div>
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/2/25/T--NCHU_Taichung--arabi2.png">
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− | <div class="ui pointing label">(a) Morphological anomalies in
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− | <i>A. thaliana</i> as response to TCCD-exposure after 14 days at indicated concentrations (0.05ppm). </div>
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/9/9b/T--NCHU_Taichung--arabi3.png">
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− | <div class="ui pointing label">(b) The phenotype of
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− | <i>A. thaliana</i> after grow 14 days without TCDD.</div>
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/e/ed/T--NCHU_Taichung--arabi4.png">
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− | <div class="ui pointing label">(b) The phenotype of
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− | <i>A. thaliana</i> after grow 14 days with TCDD.</div>
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− | </div>
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− | </div>
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− | <div class="ui hidden header"></div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/c/c8/T--NCHU_Taichung--arabi5.png">
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− | <div class="ui pointing label">(c) Four average data with or without TCDD show on
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− | <i>A. thaliana</i> .</div>
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− | <div class="ui hidden header"></div>
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− | </div>
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− | <h3 class="ui dividing header">Figure 2</h3>
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− | <div class="ui hidden header"></div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/1/1e/T--NCHU_Taichung--arabi6.png">
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− | <div class="ui pointing label">
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− | <i>Arabidopsis thaliana</i> after 10 days TCDD exposure and
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− | <i>Burkholderia cenocepacia</i> 869T2 inoculation.</div>
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− | <div class="ui hidden header"></div>
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− | </div>
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− | <p class="longP">We analyzed the effects of 2, 3, 7, 8-TCDD on the growth of
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− | <i>A. thaliana</i> for 14 days. Morphologically, the roots and leaves of
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− | <i>A. thaliana</i> are very different: First, the difference between the control plants(TCDD-) and the experimental
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− | plants (TCDD+) is 15 mm. The experimental plants are twice shorter than the control plants. ( Fig. 1a) Second,
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− | the experimental plants are smaller and weaker than the control plants. ( Fig. 1b) This information indicated that
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− | the existence of TCDD provoked important morphological difference in
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− | <i>A. thaliana</i>. In another result of experiment, we also find the roots of the
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− | <i>A. thaliana</i> inoculated with
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− | <i>Burkholderia cenocepacia</i> 869T2 are particularly different: their roots are short but very strong, their leaves
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− | are small but dark green. And the most difference is that inhibit the grow of main roots but enhance the strong
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− | lateral roots. ( Fig. 2) This information can be used as a reference in the future.</p>
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− | <h3 class="ui dividing header">Figure 3
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− | <div class="sub header">The result of inoculating endophytic bacteria in
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− | <i>Arabidopsis</i> plants for 7 days.</div>
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− | </h3>
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− | <div class="ui hidden header"></div>
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− | <div class="ui grid">
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/7/77/T--NCHU_Taichung--arabi3-1.png">
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− | <div class="ui pointing label">(a)
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− | <i>Burkholderia cenocepacia</i> 869T2 exist for 7 days in
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− | <i>A. thaliana</i>. </div>
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/1/18/T--NCHU_Taichung--arabi3-2.png">
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− | <div class="ui pointing label">(b)
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− | <i>B. phytofirmans</i> PsJN exist for 7 days in
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− | <i>A. thaliana</i>. </div>
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/4/4c/T--NCHU_Taichung--arabi3-3.png">
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− | <div class="ui pointing label">(c)
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− | <i> B. cenocepacia</i> 869T2 exist for 7 days with 0.05 ppm of TCDD in
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− | <i>A. thaliana</i>.</div>
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/1/18/T--NCHU_Taichung--arabi3-4.png">
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− | <div class="ui pointing label">(d)
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− | <i>B. phytofirmans</i> PsJN exist for 7 days with 0.05 ppm of TCDD in
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− | <i>A. thaliana</i>.</div>
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− | </div>
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− | </div>
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− | <h3 class="ui dividing header">Figure 4
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− | <div class="sub header">The result of inoculating endophytic bacteria in
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− | <i>Arabidopsis</i> plants for 14 days.</div>
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− | </h3>
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− | <div class="ui hidden header"></div>
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− | <div class="ui grid center aligned">
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− | <div class="row">
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/7/7b/T--NCHU_Taichung--arabi4-a-1.png">
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/5/5a/T--NCHU_Taichung--arabi4-a-2.png">
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− | </div>
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− | </div>
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− | <div class="row">
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− | <div class="ui label">(a)
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− | <i>Burkholderia cenocepacia</i> 869T2 exist for 14 days in
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− | <i>A. thaliana</i>.</div>
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− | </div>
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− | <div class="row">
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/5/5d/T--NCHU_Taichung--arabi4-b-1.png">
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/0/0a/T--NCHU_Taichung--arabi4-b-2.png">
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− | </div>
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− | </div>
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− | <div class="row">
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− | <div class="ui label">(b)
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− | <i>B. phytofirmans</i> PsJN exist for 14 days in
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− | <i>A. thaliana</i>. </div>
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− | </div>
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− | <div class="row">
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/9/92/T--NCHU_Taichung--arabi4-c-1.png">
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/9/9d/T--NCHU_Taichung--arabi4-c-2.png">
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− | </div>
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− | </div>
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− | <div class="row">
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− | <div class="ui label">(c)
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− | <i>B. cenocepacia</i> 869T2 exist for 14 days with 0.05 ppm of TCDD in
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− | <i>A. thaliana</i>. </div>
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− | </div>
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− | <div class="row">
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/d/d2/T--NCHU_Taichung--arabi4-d-1.png">
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− | </div>
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− | <div class="eight wide column" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/7/79/T--NCHU_Taichung--arabi4-d-2.png">
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− | </div>
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− | </div>
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− | <div class="row">
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− | <div class="ui label">(d)
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− | <i>B. phytofirmans</i> PsJN exist for 14 days with 0.05 ppm of TCDD in
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− | <i>A. thaliana</i>.</div>
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− | </div>
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− | </div>
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− | <div class="ui hidden header"></div>
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− | <p class="longP">We test two endophitic bacteria (
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− | <i>Burkholderia cenocepacia</i> 869T2 and
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− | <i>Burkholderia phytofirmans</i> PsJN) how long they exist in
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− | <i>Arabidopsis thaliana</i>. In the beginning, we inoculate
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− | <i>B. cenocepacia</i> 869T2 and
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− | <i>B. phytofirmans</i> PsJN with \\(OD_600\\)=0.4 into
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− | <i> Arabidopsis</i> plants. On the seventh and fourteenth day, we collect the sample of experiment. Before grinding
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− | the plants, we wash them for sterile water and confirm whether we wash the surface bacteria on
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− | <i>Arabidopsis</i> plants. Then, we grind the
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− | <i>Arabidopsis</i> plants and dilute their liquid with 10 times, and put it to LB plate for 30℃ during a day. After
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− | a day, we observe the morphology of a single colony to check the two bacteria. A single colony of
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− | <i>B. cenocepacia</i> 869T2 is small, circular, entire, raised, glistening veined, yellow-green, and
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− | <i>B. phytofirmans</i> PsJN is very small, circular, entire, raised, rough, white. (the right picture of Fig. 3) The
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− | result was consistent with a single colony of two bacteria. Moreover, the washing water does not see any bacteria.
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− | (the left picture of Fig. 3) Therefore, no matter which bacteria with or without TCDD plate in
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− | <i>Arabidopsis</i> plants they stay, all of two show the endophytic character in
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− | <i>Arabidopsis</i> plants.</p>
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− | </div>
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− | <div class="ui olive segment" id="HAD_activity">
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− | <h1 class="ui hidden header"></h1>
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− | <h2 class="ui header">Screen of HAD activity</h2>
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− | <p class="longP">We have a substrate called 2-chloropropionic acid (2-CPA) for HAD activity test.HAD can take off chloride anion from
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− | the substrate;thus, we can then add silver cation to the solution to form silver chloride,which is white precipitate.When
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− | silver chloride is exposed to light,it will become hydrogen gas and silver.Therefore, if the solution contains
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− | more chloride anion,the color of silver will be deeper.</p>
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− | <h4 class="ui teal header label">Result: our HAD works!!!</h4>
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− | <div class="ui hidden header"></div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/d/d2/T--NCHU_Taichung--had.png">
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− | <div class="ui hidden header"></div>
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− | </div>
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− | </div>
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− | <div class="ui olive segment" id="Toxicology-CellViabilityTest">
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− | <h1 class="ui hidden header"></h1>
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− | <h2 class="ui header">Toxicology-Cell Viability Test</h2>
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− | <div class="ui hidden header"></div>
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− | <h3 class="ui header">MTT assay</h3>
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− | <p class="longP">Viability of cells was assessed by measuring the formation of a formazan from MTT spectrophotometric assay test,
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− | modified after Mosmann’s (1983) study. HEP G2 were incubated with 0.5 mg/mL MTT for 2 hours at 37°C at the end
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− | of the experiment. After washing with DMSO, the purple formazan was extracted from cells and was photometrically
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− | determined at 595 nm.</p>
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− | <h3 class="ui header">Results (36Hr)</h3>
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− | <p class="longP">The results of cell viability measured by MTT assay is shown in Figure 1. After incubating in CO
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− | <sub>2</sub> incubator for 36 hours and assayed in vitro on the HEP G2 cells using the MTT assay, the values for the
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− | 0.25, 12.5 and 62.5 nM TCDD-treated cells ranged from 0.34-to 0.18-fold lower than that for the primary human HEP
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− | G2, respectively. However, the two concentrations of HAD (10, and 20μM) provided in vitro activities on cell viability
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− | against the tested TCDD compound. As the following picture, the decrease in the level of enzyme reached statistical
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− | significance at 10, and 20μM concentrations of DHA against TCDD toxicity.</p>
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− | <div class="ui hidden header"></div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/4/49/T--NCHU_Taichung--tox.png">
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− | <div class="ui pointing label">Figure 1.</div>
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− | <div class="ui hidden header"></div>
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− | </div>
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− | <h3 class="ui header">Reference</h3>
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− | <ul class="ui list">
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− | <li>T. H., G. F., & Y. M. (2016). Ameliorative effects of docosahexaenoic acid on the toxicity induced by 2,3,7,8-tetrachlorodibenzo-p-dioxin
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− | in cultured rat hepatocytes.
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− | <i>Toxicol Ind Health</i>, 32(6), 1074-1085.</li>
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− | </ul>
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− | </div>
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− | <div class="ui olive segment" id="Improved-part">
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− | <h1 class="ui hidden header"></h1>
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− | <h2 class="ui header">Improved part </h2>
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− | <div class="ui hidden header"></div>
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− | <p class="longP">Engineer part: BBa_J364007 in pSB1C3 to become a shuttle vector (BBa_K2546004) Using restriction enzyme and Polymerase
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− | Chain Reaction, we replace the Ori of BBa_J364007 in pSB1C3. This make plasmid become a shuttle vector which can
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− | replicate in broad host range. Checking this plasmid with EcoRI and PstI or XbaI and SpeI to see if the plasmid
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− | be cut off. By two groups of restriction enzymes, the result will get two band:5389bp and 1100bp (figure). It is
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− | also an evidence shows that our plasmid have prefix and suffix. With prefix and suffix, anyone can easily use our
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− | vector to perform the function of gene well. Moreover, we use interlab protocol ‘Cell growth, sampling, and assay’,
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− | to test the performance of Green Fluorescent Protein(GFP) of BBa_K2546004-GFP. The result reveals that BBa_K2546004-GFP
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− | can express GFP well in
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− | <i>Burkholderia cenocepacia</i> Strain 869T2. It even have much higher efficient to express GFP than the original
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− | plasmid: BBa_J364007 in pSB1C3 in
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− | <i>Escherichia coli</i>(figure,figure). Therefore, we prove BBa_J364007 in pSB1C3 to replicate in
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− | <i>Burkholderia cenocepacia</i> Strain 869T2, and prove the efficient of expressing GFP.</p>
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− | <div class="ui hidden header"></div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/9/9c/T--NCHU_Taichung--impp1.png">
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− | <div class="ui pointing label">Figure1 BBa_K2546004 RE digestion result: Using EcoRI and PstI or XbaI and SpeI to proof that we have complete
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− | BBa_K2546004</div>
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− | <div class="ui hidden header"></div>
| |
− | </div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/2/2e/T--NCHU_Taichung--impp2.png">
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− | <div class="ui pointing label">The evidence of RFP in BBa_K2546004</div>
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− | <div class="ui hidden header"></div>
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− | </div>
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− | <div class="ui fluid image" id="labelImg">
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− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/a/a2/T--NCHU_Taichung--impp3.png">
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− | <div class="ui pointing label">The colony of BBa K2546004 and BBa J044500-pSB1C3 on plate</div>
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− | <div class="ui hidden header"></div>
| |
− | </div>
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− | <div class="ui fluid image" id="labelImg">
| |
− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/e/e5/T--NCHU_Taichung--impp4.png">
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− | <div class="ui pointing label">Figure . the quantity of GFP performed by BBa_J364007(pSB1C3) in
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− | <i>Escherichia coli</i>, BBa_K2546004-GFP in
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− | <i>Escherichia coli</i>, and BBa_K2546004-GFP in
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− | <i>Burkholderia cenocepacia</i> Strain 869T2.</div>
| |
− | <div class="ui hidden header"></div>
| |
− | </div>
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− | <div class="ui fluid image" id="labelImg">
| |
− | <img class="ui image clmnImg" src="https://static.igem.org/mediawiki/2018/3/32/T--NCHU_Taichung--impp5.png">
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− | <div class="ui pointing label">Figure . the quantity of GFP/per OD performed by BBa_J364007(pSB1C3) in
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− | <i>Escherichia coli</i>, BBa_K2546004-GFP in
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− | <i>Escherichia coli</i>, and BBa_K2546004-GFP in
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− | <i>Burkholderia cenocepacia</i> Strain 869T2.</div>
| |
− | <div class="ui hidden header"></div>
| |
− | </div>
| |
− | </div>
| |
− | </div>
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− | </div>
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