Difference between revisions of "Team:SZU-China/Procedure"

 
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                         <li><a href="https://2017.igem.org/Team:SZU-China/Demonstrate">DEMONSTRATE</a></li>
 
                         <li><a href="https://2017.igem.org/Team:SZU-China/Demonstrate">DEMONSTRATE</a></li>
 
                         <li><a href="https://2017.igem.org/Team:SZU-China/Protocol">PROTOCOL</a></li>
 
                         <li><a href="https://2017.igem.org/Team:SZU-China/Protocol">PROTOCOL</a></li>
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                        <li><a href="https://2017.igem.org/Team:SZU-China/Notebook">NOTEBOOK</a></li>
  
 
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                         <h3 class="uppercase color-primary mb40 " style="margin-bottom: 40px;font-size:50px"><center>Demonstrate</center> </h3>
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                         <h3 class="uppercase color-primary mb40 " style="margin-bottom: 40px;font-size:50px"><center>Procedure</center> </h3>
 
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         </section>
 
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                             <center>Construction of Plasmid vector</center>
 
                         </h3>
 
                         </h3>
  
                         <div class="row text-center" style="width:80%;margin:0 auto;text-align:justify">
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                            <p class="lead" style="color:black">We want to know to what extent does the modified B. subtilis can heal the concrete. And doing all this experiment shown previously can only support the B. subtilis in speculation. But we don’t know yet. So we take a step forward, establishing a concrete-model to understand the incredible interaction between concrete and the modified B. subtilis.
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To achieve this, the first question would be about the endospores. We want to create a interactive way, where the endospores can “feel” the microcrack and active itself to repair the concrete.That also means, the endospores would never germinate until microcrack appears. We developed microcapsules embedding method to achieve this. (As shown below)</p>
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                            <p></p>
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                             <p class="lead" style="color:black;">After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the sided itches, exposing the microcapsule. Now if we put the two parts of concrete column together by sticking them with a tape, we can build a micro-crack on the upper surface. So we mark these concrete columns and put them into the artificial seawaters for 28 days. And you find the micro-crack on the upper surface be repaired like they never ever existed (as shown below)</p><br />
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                             <p class="lead" style="color:black;">We used the Shuttle plasmid pP43NMK (donated from ZIU-iGem) for our project, which can propagate in both Bacillus subtilis and Escherichia coli. The vector contains the following parts:</p><br />
  
 
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                             <div style="width:100%;margin:0 auto">
                            <p class="lead" style="color:black">Spores (whole yeast medium and 2SG medium) were collected on a solid medium for 7 days.(As shown below)</p>
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                                 <img src="https://static.igem.org/mediawiki/2017/3/3e/T--SZU-China--pathway.jpg" />
                             <div style="width:60%;margin:0 auto">
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                                 <center><img src="https://static.igem.org/mediawiki/2017/8/83/T--SZU-China--result33.jpg" width="75%" /></center>
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</div>
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                            <p class="lead" style="color:black">2 ml of Deionized water was added to the solid culture dish and the spores were scraped with an applicator. The spore suspension was poured directly into a 10 ml centrifuge tube, and each group collected spores of 4-5 solid dishes</p>
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                            <div style="width:60%;margin:0 auto">
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                                <center><img src="https://static.igem.org/mediawiki/2017/0/08/T--SZU-China--demonstrate2.jpg" width="45%"/></center>
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                             </div>
 
                             </div>
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                            <center style="padding-top:5px;color:#2f2f2f;font-size:14px"><strong style="font-size:14px">Fig 1.</strong> Gene expression vector</center>
 +
                            <br />
  
                            <p class="lead" style="color:black">Microscopic microscopy spore detection: add deionized water on solid medium, scrape the spores, take the suspension 5μL on the slide, cover the coverslip under inverted microscope microscopy, start from the low magnification of the microscope, adjust the fine focus screw, and access the image in phase difference mode</p>
 
  
                            <p class="lead" style="color:black">The spore suspension was centrifuged at 8000 r / min for 2 min, and the supernatant was discarded. To the precipitate, deionized water was added to 8 ml and the mixture was washed 8 times(As shown below) </p>
 
                            <div style="width:60%;margin:0 auto">
 
                                <center><img src="https://static.igem.org/mediawiki/2017/7/72/T--SZU-China--demonstrate3.jpg" width="75%"/></center>
 
</div>
 
                            <p class="lead" style="color:black">Configure CHL nutrient solution: 25 g of sodium lactate, 5 g of sodium nitrate, 0.0075 g of potassium dihydrogen phosphate, 0.375 g of magnesium sulfate, 1.25 g of inosine (last step). Add sodium lactate (viscous liquid), add the rotor to start mixing and then weighing the other components were added to the sodium lactate until completely mixed, and then 50ml volume to 50ml.</p>
 
                            <p class="lead" style="color:black">Dilute the spores with CHL nutrient solution and count with a microscope plate under inverted microscope (cover-slide covers half of the counting chamber, take 2μL of spore CHL suspension on the coverslip boundary, push the coverslip to make bacteria Liquid into the counting room)</p>
 
                            <p class="lead" style="color:black">Weigh 1gMCC and 0.1g clay, mixed in a clean beaker, add 1.5ml spore CHL suspension (3 times to join, each 0.5ml) mixed evenly. Take a hand to do a handful of microcapsules: first with four fingers from four directions to strengthen the powder, and then gently kneaded into a small ball, put in front of a good wrinkled weighing paper culture dish, cover the lid , Placed in 37 degrees incubator in 60h for condensation of water </p>
 
 
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                                 <div style="width:50%;float:left"><img src="https://static.igem.org/mediawiki/2017/f/f7/T--SZU-China--demonstrate4.jpg" style="width:99%" /></div>
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                                 <br />
                                <div style="width:50%;float:left"><img src="https://static.igem.org/mediawiki/2017/9/92/T--SZU-China--demonstrate5.jpg" style="width:99%" /></div>
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                                <table class="tg" style="border-width:1px;font-size:15px">
                            </div>
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                                    <tbody>
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                                        <tr>
 +
                                            <th style="width:30%">&nbsp;&nbsp;&nbsp;Gene&nbsp;&nbsp;&nbsp;</th>
 +
                                            <th style="width:70%">Decription</th>
 +
                                        </tr>
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                                        <tr>
 +
                                            <td style="padding-left:2px">repB</td>
 +
                                            <td style="padding:4px 3px">The origin of replication of pP43NMK vector in host Bacillus subtilis.</td>
 +
                                        </tr>
 +
                                        <tr>
 +
                                            <td style="padding-left:2px">PsspB</td>
 +
                                            <td style="padding:4px 3px">This is the promoter (PsspB) of the sspB gene, which is expressed at high level during sporulation in a forespore-specific manner, that is to say, the promoter PsspB only switch on the transcription after the initiation of sporulation. Synthesized by biological company.</td>
 +
                                        </tr>
 +
                                        <tr>
 +
                                            <td style="padding-left:2px">gerAa</td>
 +
                                            <td style="padding:4px 3px">This part is a 300-bp upstream region of gerAA, which is one of the structural genes in the operon gerA.It concerns with the triggering of spore germination by L-alanine and its analogues. Synthesized by biological company.</td>
 +
                                        </tr>
 +
                                        <tr>
 +
                                            <td style="padding-left:2px">P43</td>
 +
                                            <td style="padding:4px 3px">It is a constitutive promoter and a strong promoter in Bacillus subtilis, which initiates transcription in the logarithmic phase and stable phase.</td>
 +
                                        </tr>
 +
                                        <tr>
 +
                                            <td style="padding-left:2px">OF4-nhaC </td>
 +
                                            <td style="padding:4px 3px">This part is the coding sequence (CDS) of the Na<sup>+</sup>/H<sup>+</sup> antiporter from the Bacillus pseudofirmus OF4 (GenBank Acc.No. CP001878), which regulates cytoplasmic pH value by coupling net H<sup>+</sup> uptake with Na<sup>+</sup> extrusion. Synthesized by biological company.</td>
 +
                                        </tr>
 +
                                        <tr>
 +
                                            <td style="padding-left:2px">C125-tupA</td>
 +
                                            <td style="padding:4px 3px">The primary translation product of this gene, TupA, is likely a cytoplasmic protein involved in the synthesis of TUP, a copolymer of polyglutamic acid (PGlu) and polyglucuronic acid (PGlcU), which is one of major structural components in the cell wall of the Bacillus lentus C-125 and can neutralize the extracellular hydroxyl. Synthesized by biological company.</td>
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                                        </tr>
  
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                            <div style="width:60%;margin:0 auto;padding-top:15px">
 
                                <center><img src="https://static.igem.org/mediawiki/2017/3/39/T--SZU-China--demonstrate71.jpg"width="75%" /></center>
 
                            </div>
 
                            <p></p>
 
                            <p class="lead" style="color:black">After 60h, use the culture dishes covered with cement powder, sieve to remove the coarse pieces of coarse cement powder 200g, according to the 0.4 water: cement ratio by adding 80ml deionized water, installed stir the machine, storing form the low-speed mixing 1min, and then turn to the highest Speed stirring for 2 min.</p>
 
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                                <center>
 
                                    <div style="width: 50%; float: left">
 
                                        <img src="https://static.igem.org/mediawiki/2017/2/2a/T--SZU-China--demonstrate6.jpg" width="83%" />
 
                                    </div>
 
                                    <div style="width: 50%; float: left">
 
                                        <img src="https://static.igem.org/mediawiki/2017/3/3b/T--SZU-China--demonstrate9.jpg" width="83%" />
 
                                    </div>
 
                                </center>
 
                            </div>
 
                            <div style="clear:both"></div>
 
                            <p></p>
 
                            <div style="width:67%;margin:0 auto">
 
  
                                <center>
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                                        <tr>
                                   
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                                            <td style="padding-left:2px">CA</td>
                                    <div style="width: 50%; float: left">
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                                            <td style="padding:4px 3px">This part is the coding sequence (CDS) of Carbonic anhydrase(CA). CA is a metalloenzyme with zinc, which is highly efficient and one of the fastest enzymes catalyzes the reversible hydration of CO<sub>2</sub> forming bicarbonate and protons rapidly. Synthesized by biological company.</td>
                                        <img src="https://static.igem.org/mediawiki/2017/c/c6/T--SZU-China--demonstrate7.jpg" width="89%" >
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                                        </tr>
                                    </div>
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                                    <div style="width: 50%; float: left">
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                                        <tr>
                                        <img src="https://static.igem.org/mediawiki/2017/1/17/T--SZU-China--demonstrate8.jpg" width="89%" />
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                                            <td style="padding-left:2px">RBS</td>
                                    </div>
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                                            <td style="padding:4px 3px">Ribosome binding site of Bacillus subtilis.</td>
                                </center>
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                                        </tr>
                            </div>
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                            <div style="clear:both"></div>
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 +
                                        <tr>
 +
                                            <td style="padding-left:2px">rrnBT1</td>
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                                            <td style="padding:4px 3px">Transcriptional terminator consisting of a 64 bp stem-loop from E. coli rrnB. Synthesized by biological company.</td>
 +
                                        </tr>
  
                            <p class="lead" style="color:black">Remove the cement basin, fill the cylindrical hollow resin into the cavity of the test chamber into the two-thirds of the cement, into a microcapsule on both sides of the gap in the middle, and then fill the cement ramming test block</p>
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                                        <tr>
                            <div style="width:60%;margin:0 auto">
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                                            <td style="padding-left:2px">Kanr</td>
                                <center><img src="https://static.igem.org/mediawiki/2017/5/53/T--SZU-China--demonstrate10.jpg" width="80%"/></center>
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                                            <td style="padding:4px 3px">Kanamycin Resistance Gene in host Bacillus subtilis.</td>
                            </div>
+
                                        </tr>
                            <div style="clear:both"><br/></div>
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                            <div style="width:55%;margin:0 auto">
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                                <div style="width:50%;float:left">
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                                    <img src="https://static.igem.org/mediawiki/2017/e/ed/T--SZU-China--demonstrate11.jpg" width="86%"/>
+
                                </div>
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                                <div style="width:50%;float:left;">
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                                    <img src="https://static.igem.org/mediawiki/2017/3/36/T--SZU-China--demonstrate12.jpg" width="86%" />
+
                                </div>
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                            </div>
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                            <div style="clear:both"></div>
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                            <p></p>
+
                            <p class="lead" style="color:black">Gathered all concrete mold together, covered with a layer of plastic wrap, mark the mark, conservation for 2 days</p>
+
  
                            <div style="width:60%;margin:0 auto">
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                                 <center><img src="https://static.igem.org/mediawiki/2017/e/e9/T--SZU-China--demonstrate13.jpg" width="75%"/></center>
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                                    </tbody>
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                                 </table>
 
                             </div>
 
                             </div>
  
 +
                            <br /><br />
 +
                            <p class="lead" style="color:black">Inside the vectors,the first promoter P43 is the original component and initiates the transcription of downstream coding sequence, including the OF4-nhaC , C125-tupA and CA.These parts have respective RBS and the common terminator rrnBT1.The second promoter PsspB is the 5' sequence located before the gene coding region of gerAa. Through homologous recombination, a single cross-over event between the gerAa region in our plasmid and the endogenous gerAa sequence on chromosome inserts the sspB promoter upstream of the gerA operon, therefore gerA will overexpress during sporation, All of these parts above were combined through Restriction site. Kanr is responsible for the resistance gene of Kanamycin, so we can use Kanamycin B to verify positive transformants.</p>
  
  
                             <p class="lead" style="color:black">After that, take the solidified cement test block from the resin mold out, the cement block into the bag, make a mark, sealed 2 days</p>
+
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                        </div>
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                        <h3 class="uppercase color-primary mb40 mb-xs-24" style="margin-bottom: 40px;">
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                            <center>Transformation and Expression</center>
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                        </h3>
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 +
                        <div class="row text-center" style="width:85%;margin:0 auto;text-align:justify">
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                             <p class="lead" style="color:black;">The <i>Bacillus subtilis</i> we use in our project is WB800 (bought from Youbio Technology Company, China). This kind of Bacillus subtilis is a strain deficient in eight extracellular proteases, which can prevent the proteolytic cleavage of the enzymatic subunit between the catalytic and dockerin domains, to reduce the degradation of expression product by the extracellular proteases.</p>
 +
                            <p class="lead" style="color:black;">
 +
                                First, we transformed the expression vectors into Bacillus subtilis WB800 by optimization of Spizizen method, which increase the efficiency of transformation obviously.
 +
                                Second, the positive clones were obtained by Kanamycin resistance screening. Plasmid extraction and Digestion of restriction endonuclease and nucleic acid electrophoresis confirm real Positive clones.
 +
                            </p>
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                            <div style="text-align:center;width:80%;margin:0 auto">
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                                <img src="https://static.igem.org/mediawiki/2017/5/55/T--SZU-China--procedure11.png" width="90%" />
  
                            <div style="width:60%;margin:0 auto">
 
                                <center><img src="https://static.igem.org/mediawiki/2017/d/dc/T--SZU-China--demonstrate14.jpg" width="80%" /></center>
 
 
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                                    <center><img src="https://static.igem.org/mediawiki/2017/9/92/T--SZU-China--demonstrate15.jpg" width="80%" /></center>
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                                 <img src="https://static.igem.org/mediawiki/2017/5/54/T--SZU-China--procedure2.png" width="90%" />
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                                 <center style="padding-top:5px;color:#2f2f2f;font-size:14px"><strong style="font-size:14px">Fig 2.</strong> Gene expression test procedure</center>
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                                    <center><img src="https://static.igem.org/mediawiki/2017/f/ff/T--SZU-China--demonstrate16.jpg" width="80%" /></center>
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                             </div>
 
                             </div>
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                            <br /><br />
 +
                            <p class="lead" style="color:black">Next, we detected the expression of our parts and test their function by methods as follow:</p>
 +
 +
                            <ul>
 +
                                <li class="table">
 +
                                    <u>CA</u>:<div style="width:80%;margin:0 auto;"> The transformed strain WB800 was grown in optimized CA production medium, and obtain crude enzyme solution by centrifugation and ultrasonic crushing. And then we detect the native molecular mass by SDS-PAGE and coomassie blue staining. In addition, For determining the activity of CA, hydration of CO2 was measured using electrometric Wilbur-Anderson assay according to Khalifah et al. with certain modifications, and crude cell-free extract were also checked for esterase activity according to the Verpoorte et al.</div>
 +
                                </li>
 +
                                <li class="table">
 +
                                    <u>OF4-nhaC &amp; C125-tupA</u>:<div style="width:80%;margin:0 auto;"> In order to test the alkali resistance of the gene-modified strain WB800, we used the alkaline complex medium containing Na<sub>2</sub>CO<sub>3</sub> and other necessary nutrients to set a serial pH value gradient culture from 7.5 to 9.0. Strain transformed and original WB800 were plated at 37°C in the alkaline complex medium simultaneously, then we recorded the OD600 of them at the same time to compare their growth rates, which indicates the function of these two parts to increase the alkali tolerance of B.subtilis.</div>
 +
 +
                                </li>
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 +
                                    <u>PsspB-gerAa</u>:<div style="width:80%;margin:0 auto;"> This part is used for increasing the germination rate of spore of B.subtilis, so we need to plate WB800 at 37°C on 2XSG medium agar plates without antibiotics and harvest spores after 72h, cleaned by repeated rounds of centrifugation and washing with water. Spores were resuspended and optical densities at 600nm(A600) of 0.8 to 1 in PBS. Germination was by monitored by reading the drop in absorbance (A600) in a 96-well microplate reader (Tecan Infinite M200) after add the L-alanine-NaCl mixed solution.The drop rate of absorbance (A600) is proportional to the germination rate so that we can compare the difference between original WB800 and recombinant WB800.</div>
 +
                                </li>
 +
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                            </ul>
  
  
                            <center style="padding-top:5px;color:#2f2f2f;font-size:14px">Fig.2 The repairing status of a. blank group (no microcapsule) b. gerA group c. NMK-α group d.NMK-OF group</center>
 
 
                             <br /><br />
 
                             <br /><br />
  
                            <p class="lead" style="color:black">Split the cement in the bag test block, with a vise to the cylindrical cement test block from the side of the split, to collect the appropriate split test block (buried in the test block in the microcapsules were split into two halves), with a transparent tape The pieces of the test pieces were re-bonded into a cylindrical shape</p>
 
                            <p class="lead" style="color:black">Put the re-glued test piece into the clean beaker vertically, pour it into the artificial seawater solution until the liquid level has not been tested. Place a layer of gauze on the beaker and place it in the shade for 28 days. Add artificial seawater to prevent evaporation</p>
 
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                                <center><img src="https://static.igem.org/mediawiki/2017/6/60/T--SZU-China--demonstrate17.jpg" width="80%"/></center>
 
  
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                        <br /><br /><br />
  
  
                            <p class="lead" style="color:black">After 28 days, remove the test block and place the test block under microscopic examination of the microfracture</p>
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                            </div>
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                            <p class="lead" style="color:black">Under the microscope,  you can see the microcrack lying in the middle between two grooves of concrete mold. And this is how it looks like when we have a x1000 horizon after 12days. So it is obviously that the microcrack has been repaired under the self-healing reaction of modified B.subtilis. In other words, it works.</p>
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                        <h3 class="uppercase color-primary mb40 mb-xs-24" style="margin-bottom: 40px;">
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                            <center>Application and Realization</center>
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                        </h3>
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                            <p class="lead" style="color:black;">In order to certificate the ability of our chassis strain WB800 to produce calcium carbonate and application in self-healing of concrete, we take a step forward, establishing a concrete-model to understand the incredible interaction between concrete and the recombinant <i>B. subtilis.</i></p>
                                 <div style="width:33%;float:left;">
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                            <p style="text-align:center;">
                                     <img src="https://static.igem.org/mediawiki/2017/e/e8/T--SZU-China--demonstrate25.jpg" width="95%"/>
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                                <img src="https://static.igem.org/mediawiki/2017/0/08/T--SZU-China--fig.1.jpg" width="40%" />
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                                <center style="padding-top:5px;color:#2f2f2f;font-size:14px"><strong style="font-size:14px">Fig 3.</strong> micro-capsule granule we made</center>
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                            </p>
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                            <br />
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                            <p class="lead" style="color:black;">
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                                Using a special material-microcrystalline cellulose (Fig.3), we add around 10<sup>-8</sup>/ml endospores with clay and of course , L-alanine(in powdery) together, making a tiny but powerful microcapsule. Next, pouring some newly-mixed cement, which is still in viscous liquid state into the mold until the cement reach its 2/3, add a microcapsule into it, and fill the mold with cement as shown in Fig.2 and Fig.3
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                                    <center style="padding-top:5px;color:#2f2f2f;font-size:14px" width="90%"><strong style="font-size:14px">Fig 4.</strong> Mould for concrete experiment.</center>
 
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                                 </div>
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                                     <img src="https://static.igem.org/mediawiki/2017/2/22/T--SZU-China--demonstrate20.jpg" width="95%"/>
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                                     <img src="https://static.igem.org/mediawiki/2017/d/d6/T--SZU-China--fig.3.jpg">
                                <div style="width: 33%; float: left;">
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                                    <center style="padding-top:5px;color:#2f2f2f;font-size:14px"><strong style="font-size:14px">Fig 5.</strong> The cement block we made</center>
                                    <img src="https://static.igem.org/mediawiki/2017/8/8c/T--SZU-China--G84.jpg" width="95%"/>
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                                 </div>
 
                                 </div>
 
                             </div>
 
                             </div>
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                            <p style="clear:both"></p>
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                            <center style="font-size:14px;width:90%;margin:0 auto;text-align:justify"><strong style="font-size:14px">Fig 1</strong>. The self-healing status result in day 12(under scanning electron microscope). a. the microcrack of concrete that has not been put into a microcapsule. b. the microcrack of concrete that has been put into a microcapsule of B.subtilis WB800. c. the microcrack of concrete that has been put into a microcapsule of recombinant <i>B.subtilis WB800</i>.</center>
 
  
                        </div>
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                            <p class="lead" style="color:black;">After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the side ditches, exposing the microcapsule. Now if we put this two part of concrete column together by sticking them with After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the side ditches, exposing the microcapsule. Now if we put this two part of concrete column together by sticking them with a tape, we can build a microcrack on the upper surface. So we mark these concrete columns. And put them into the artificial seawaters for 28 days. And you find the microcrack on the upper surface be repaired like they never ever existed.(As shown in Fig.4,5,6,7)</p>
                        <br /><br /><br />
+
  
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                            <p style="text-align:center;">
  
 +
                                <img src="https://static.igem.org/mediawiki/2017/1/19/T--SZU-China--fig.4.jpg" width="45%" />
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                                <center style="padding-top:5px;color:#2f2f2f;font-size:14px;width:60%;margin:0 auto;text-align:justify"><strong style="font-size:14px">Fig.6</strong> The comparison of repairing between WB800 (shown in upper two figures) and recombinant WB800 (shown in under two figures)</center>
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                         <h3 class="uppercase color-primary mb40 " style="margin-bottom: 40px;font-size:28px"><center>Reference</center> </h3>
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                    </div>
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                            <center>Reference</center>
 +
                        </h3>
  
                    <div style="width:80%;margin:0 auto;font-size:16px;">
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                        <div class="row text-center" style="width:85%;margin:0 auto;text-align:justify">
                        <p>[1]PENGHuia, ZHANGJinlong, LIUBing, DENGXua, XINGFeng. Development of microbial self-healing technique in concrete[J].  concrete,2014,(08):38-42+48. </p>
+
                        <p>[2]Zhang JinLong, Wang ChaoGang,Wang QinLiang, Deng Xu*, Liu Bing,Han Ningxu, Xing Feng (2016). A binary concrete crack self-healing system containing oxygen-releasing tablet and bacteria and its Ca2+-precipitation performance. Applied Microbiology and Biotechnology.2016, doi:10.1007/s00253-016-7741-z </p>
+
  
                        <p>[3]Zhang Jinlong, Wu Rongshan, Li Yanmei, Zhong Jiayan, Deng Xu*, Liu Bing, Han Ningxu, Xing Feng. Screening of bacteria for self-healing of concrete cracks and optimization of the microbial calcium precipitation process. Applied Microbiology and Biotechnology. 2016, 100(15): 6661-6670. </p>
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                            <div style="width:90%;margin:0 auto">
                    </div>
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                              <p style="font-size:16px"> [1] Liang L, Gai Y, Hu K, et al. [The gerA operon is required for spore germination in Bacillus thuringiensis][J]. Acta Microbiologica Sinica, 2008, 48(3):281.</p>
 +
                                <p style="font-size:16px"> [2] Løvdal I S, From C, Madslien E H, et al. Role of the gerA operon in L-alanine germination of Bacillus licheniformis spores[J]. Bmc Microbiology, 2012, 12(1):1-12.</p>
 +
                                <p style="font-size:16px"> [3] Tjalsma H, Bolhuis A, Jongbloed J D, et al. Signal peptide-dependent protein transport in Bacillus subtilis: a genome-based survey of the secretome[J]. Microbiology & Molecular Biology Reviews Mmbr, 2000, 64(3):515.</p>
 +
                                <p style="font-size:16px">[4] Li W, Yu L J, Yuan D X, et al. A study of the activity and ecological significance of carbonic anhydrase from soil and its microbes from different karst ecosystems of Southwest China[J]. Plant & Soil, 2005, 272(1-2):133-141.</p>
 +
                                <p style="font-size:16px"> [5] Prágai Z, Eschevins C, Bron S, et al. Bacillus subtilis NhaC, an Na+/H+ antiporter, influences expression of the phoPR operon and production of alkaline phosphatases.[J]. Journal of Bacteriology, 2001, 183(8):2505.</p>
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Latest revision as of 03:49, 2 November 2017

Procedure

Procedure

Construction of Plasmid vector

We used the Shuttle plasmid pP43NMK (donated from ZIU-iGem) for our project, which can propagate in both Bacillus subtilis and Escherichia coli. The vector contains the following parts:


Fig 1. Gene expression vector


   Gene    Decription
repB The origin of replication of pP43NMK vector in host Bacillus subtilis.
PsspB This is the promoter (PsspB) of the sspB gene, which is expressed at high level during sporulation in a forespore-specific manner, that is to say, the promoter PsspB only switch on the transcription after the initiation of sporulation. Synthesized by biological company.
gerAa This part is a 300-bp upstream region of gerAA, which is one of the structural genes in the operon gerA.It concerns with the triggering of spore germination by L-alanine and its analogues. Synthesized by biological company.
P43 It is a constitutive promoter and a strong promoter in Bacillus subtilis, which initiates transcription in the logarithmic phase and stable phase.
OF4-nhaC This part is the coding sequence (CDS) of the Na+/H+ antiporter from the Bacillus pseudofirmus OF4 (GenBank Acc.No. CP001878), which regulates cytoplasmic pH value by coupling net H+ uptake with Na+ extrusion. Synthesized by biological company.
C125-tupA The primary translation product of this gene, TupA, is likely a cytoplasmic protein involved in the synthesis of TUP, a copolymer of polyglutamic acid (PGlu) and polyglucuronic acid (PGlcU), which is one of major structural components in the cell wall of the Bacillus lentus C-125 and can neutralize the extracellular hydroxyl. Synthesized by biological company.
CA This part is the coding sequence (CDS) of Carbonic anhydrase(CA). CA is a metalloenzyme with zinc, which is highly efficient and one of the fastest enzymes catalyzes the reversible hydration of CO2 forming bicarbonate and protons rapidly. Synthesized by biological company.
RBS Ribosome binding site of Bacillus subtilis.
rrnBT1 Transcriptional terminator consisting of a 64 bp stem-loop from E. coli rrnB. Synthesized by biological company.
Kanr Kanamycin Resistance Gene in host Bacillus subtilis.


Inside the vectors,the first promoter P43 is the original component and initiates the transcription of downstream coding sequence, including the OF4-nhaC , C125-tupA and CA.These parts have respective RBS and the common terminator rrnBT1.The second promoter PsspB is the 5' sequence located before the gene coding region of gerAa. Through homologous recombination, a single cross-over event between the gerAa region in our plasmid and the endogenous gerAa sequence on chromosome inserts the sspB promoter upstream of the gerA operon, therefore gerA will overexpress during sporation, All of these parts above were combined through Restriction site. Kanr is responsible for the resistance gene of Kanamycin, so we can use Kanamycin B to verify positive transformants.






Transformation and Expression

The Bacillus subtilis we use in our project is WB800 (bought from Youbio Technology Company, China). This kind of Bacillus subtilis is a strain deficient in eight extracellular proteases, which can prevent the proteolytic cleavage of the enzymatic subunit between the catalytic and dockerin domains, to reduce the degradation of expression product by the extracellular proteases.

First, we transformed the expression vectors into Bacillus subtilis WB800 by optimization of Spizizen method, which increase the efficiency of transformation obviously. Second, the positive clones were obtained by Kanamycin resistance screening. Plasmid extraction and Digestion of restriction endonuclease and nucleic acid electrophoresis confirm real Positive clones.


Fig 2. Gene expression test procedure


Next, we detected the expression of our parts and test their function by methods as follow:

  • CA:
    The transformed strain WB800 was grown in optimized CA production medium, and obtain crude enzyme solution by centrifugation and ultrasonic crushing. And then we detect the native molecular mass by SDS-PAGE and coomassie blue staining. In addition, For determining the activity of CA, hydration of CO2 was measured using electrometric Wilbur-Anderson assay according to Khalifah et al. with certain modifications, and crude cell-free extract were also checked for esterase activity according to the Verpoorte et al.
  • OF4-nhaC & C125-tupA:
    In order to test the alkali resistance of the gene-modified strain WB800, we used the alkaline complex medium containing Na2CO3 and other necessary nutrients to set a serial pH value gradient culture from 7.5 to 9.0. Strain transformed and original WB800 were plated at 37°C in the alkaline complex medium simultaneously, then we recorded the OD600 of them at the same time to compare their growth rates, which indicates the function of these two parts to increase the alkali tolerance of B.subtilis.
  • PsspB-gerAa:
    This part is used for increasing the germination rate of spore of B.subtilis, so we need to plate WB800 at 37°C on 2XSG medium agar plates without antibiotics and harvest spores after 72h, cleaned by repeated rounds of centrifugation and washing with water. Spores were resuspended and optical densities at 600nm(A600) of 0.8 to 1 in PBS. Germination was by monitored by reading the drop in absorbance (A600) in a 96-well microplate reader (Tecan Infinite M200) after add the L-alanine-NaCl mixed solution.The drop rate of absorbance (A600) is proportional to the germination rate so that we can compare the difference between original WB800 and recombinant WB800.





Application and Realization

In order to certificate the ability of our chassis strain WB800 to produce calcium carbonate and application in self-healing of concrete, we take a step forward, establishing a concrete-model to understand the incredible interaction between concrete and the recombinant B. subtilis.

Fig 3. micro-capsule granule we made


Using a special material-microcrystalline cellulose (Fig.3), we add around 10-8/ml endospores with clay and of course , L-alanine(in powdery) together, making a tiny but powerful microcapsule. Next, pouring some newly-mixed cement, which is still in viscous liquid state into the mold until the cement reach its 2/3, add a microcapsule into it, and fill the mold with cement as shown in Fig.2 and Fig.3


Fig 4. Mould for concrete experiment.
Fig 5. The cement block we made


After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the side ditches, exposing the microcapsule. Now if we put this two part of concrete column together by sticking them with After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the side ditches, exposing the microcapsule. Now if we put this two part of concrete column together by sticking them with a tape, we can build a microcrack on the upper surface. So we mark these concrete columns. And put them into the artificial seawaters for 28 days. And you find the microcrack on the upper surface be repaired like they never ever existed.(As shown in Fig.4,5,6,7)

Fig.6 The comparison of repairing between WB800 (shown in upper two figures) and recombinant WB800 (shown in under two figures)



Reference

[1] Liang L, Gai Y, Hu K, et al. [The gerA operon is required for spore germination in Bacillus thuringiensis][J]. Acta Microbiologica Sinica, 2008, 48(3):281.

[2] Løvdal I S, From C, Madslien E H, et al. Role of the gerA operon in L-alanine germination of Bacillus licheniformis spores[J]. Bmc Microbiology, 2012, 12(1):1-12.

[3] Tjalsma H, Bolhuis A, Jongbloed J D, et al. Signal peptide-dependent protein transport in Bacillus subtilis: a genome-based survey of the secretome[J]. Microbiology & Molecular Biology Reviews Mmbr, 2000, 64(3):515.

[4] Li W, Yu L J, Yuan D X, et al. A study of the activity and ecological significance of carbonic anhydrase from soil and its microbes from different karst ecosystems of Southwest China[J]. Plant & Soil, 2005, 272(1-2):133-141.

[5] Prágai Z, Eschevins C, Bron S, et al. Bacillus subtilis NhaC, an Na+/H+ antiporter, influences expression of the phoPR operon and production of alkaline phosphatases.[J]. Journal of Bacteriology, 2001, 183(8):2505.