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<img src="https://static.igem.org/mediawiki/2018/f/fd/T--NYU_Abu_Dhabi--Results--Biology_1.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/f/fd/T--NYU_Abu_Dhabi--Results--Biology_1.JPG"class="center"> | ||
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<h2><center><i>Figure 1. Agarose gels (1%) corresponding to the PCR reaction with serial dilutions of miniprepped lmo0773, invA and hipO DNA. (a). lmo0773 serial dilutions 363 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. (b). invA serial dilutions 295.5 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. (c). hipO serial dilutions 159.8 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl | <h2><center><i>Figure 1. Agarose gels (1%) corresponding to the PCR reaction with serial dilutions of miniprepped lmo0773, invA and hipO DNA. (a). lmo0773 serial dilutions 363 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. (b). invA serial dilutions 295.5 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. (c). hipO serial dilutions 159.8 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/4/48/T--NYU_Abu_Dhabi--Results--Biology_2.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/4/48/T--NYU_Abu_Dhabi--Results--Biology_2.JPG"class="center"> | ||
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<h2><center><i>Figure 2. Agarose gels (1%) corresponding to PCR specificity reactions carried out on three different genes (a) lmo0733, (b) invA and (c) hipO. The first set of reactions for each gene is done by keeping the gene constant while varying the primers, while the second set of reactions are carried out by varying the gene used while keeping the primers constant. | <h2><center><i>Figure 2. Agarose gels (1%) corresponding to PCR specificity reactions carried out on three different genes (a) lmo0733, (b) invA and (c) hipO. The first set of reactions for each gene is done by keeping the gene constant while varying the primers, while the second set of reactions are carried out by varying the gene used while keeping the primers constant. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/a/a1/T--NYU_Abu_Dhabi--Results--Biology_3.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/a/a1/T--NYU_Abu_Dhabi--Results--Biology_3.JPG"class="center"> | ||
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<h2><center><i>Figure 3. Agarose gel (1%) showing LAMP amplification of invA, gbpA and <i>lmo0733</i> miniprep DNA with designed LAMP primers (PrimerExplorer). Amplification is seen for <i>lmo0733</i> and gbpA but not invA when gene transformed E. Coli colonies were used. (Lane 1) 500 bp ladder; (Lane 2) invA miniprep + invA LAMP primers; (Lane 3) Nuclease-free water + invA LAMP primers; (Lane 4) invA transformed E. Coli colony + invA LAMP primers; (Lane 5) gbpA miniprep + gbpA LAMP primers; (Lane 6) Nuclease-free water + gbpA LAMP primers; (Lane 7) gbpA transformed E. Coli colony + gbpA LAMP primers; (Lane 8) <i>lmo0733</i> miniprep + <i>lmo0733</i> LAMP primers; (Lane 9) Nuclease-free water + <i>lmo0733</i> LAMP primers; (Lane 10) <i>lmo0733</i> transformed E. Coli colony + <i>lmo0733</i> LAMP primers. | <h2><center><i>Figure 3. Agarose gel (1%) showing LAMP amplification of invA, gbpA and <i>lmo0733</i> miniprep DNA with designed LAMP primers (PrimerExplorer). Amplification is seen for <i>lmo0733</i> and gbpA but not invA when gene transformed E. Coli colonies were used. (Lane 1) 500 bp ladder; (Lane 2) invA miniprep + invA LAMP primers; (Lane 3) Nuclease-free water + invA LAMP primers; (Lane 4) invA transformed E. Coli colony + invA LAMP primers; (Lane 5) gbpA miniprep + gbpA LAMP primers; (Lane 6) Nuclease-free water + gbpA LAMP primers; (Lane 7) gbpA transformed E. Coli colony + gbpA LAMP primers; (Lane 8) <i>lmo0733</i> miniprep + <i>lmo0733</i> LAMP primers; (Lane 9) Nuclease-free water + <i>lmo0733</i> LAMP primers; (Lane 10) <i>lmo0733</i> transformed E. Coli colony + <i>lmo0733</i> LAMP primers. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/b/b4/T--NYU_Abu_Dhabi--Results--Biology_4.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/b/b4/T--NYU_Abu_Dhabi--Results--Biology_4.JPG"class="center"> | ||
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<h2><center><i>Figure 4. Agarose gel (1%) showing LAMP amplification of gbpA with non colorimetric reaction mastermix (MM) (Optigene) with either hydroxy naphthol blue (HNB) or SYBR green added and with colorimetric reaction mastermix (NEB). (Lane 1) 500 bp ladder; (Lane 2) gbpA + Optigene MM + gbpA LAMP primers + HNB; (Lane 3) nuclease free water + Optigene MM + gbpA primers + HNB; (Lane 4) gbpA + Optigene MM + gbpA LAMP primers + SYBR green; (Lane 5) Nuclease free water + Optigene MM + gbpA LAMP primers + SYBR green; (Lane 6) gbpA + NEB MM + gbpA LAMP primers; (Lane 7) Nuclease free water + NEB MM + gbpA LAMP primers. | <h2><center><i>Figure 4. Agarose gel (1%) showing LAMP amplification of gbpA with non colorimetric reaction mastermix (MM) (Optigene) with either hydroxy naphthol blue (HNB) or SYBR green added and with colorimetric reaction mastermix (NEB). (Lane 1) 500 bp ladder; (Lane 2) gbpA + Optigene MM + gbpA LAMP primers + HNB; (Lane 3) nuclease free water + Optigene MM + gbpA primers + HNB; (Lane 4) gbpA + Optigene MM + gbpA LAMP primers + SYBR green; (Lane 5) Nuclease free water + Optigene MM + gbpA LAMP primers + SYBR green; (Lane 6) gbpA + NEB MM + gbpA LAMP primers; (Lane 7) Nuclease free water + NEB MM + gbpA LAMP primers. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/4/4d/T--NYU_Abu_Dhabi--Results--Biology_5.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/4/4d/T--NYU_Abu_Dhabi--Results--Biology_5.JPG"class="center"> | ||
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<h2><center><i>Figure 5. Visualization of SYBR green at 302 nm and 365 nm for <i>lmo0733</i> LAMP reaction.</i></center></h2> | <h2><center><i>Figure 5. Visualization of SYBR green at 302 nm and 365 nm for <i>lmo0733</i> LAMP reaction.</i></center></h2> | ||
<h2>No fluorescence was detected in the absence of SYBR green. Background fluorescence was observed in the negative controls. A clear distinction was observed between positive and negative controls. </h2> | <h2>No fluorescence was detected in the absence of SYBR green. Background fluorescence was observed in the negative controls. A clear distinction was observed between positive and negative controls. </h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/8/8c/T--NYU_Abu_Dhabi--Results--Biology_6.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/8/8c/T--NYU_Abu_Dhabi--Results--Biology_6.JPG"class="center"> | ||
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<h2><center><i>Figure 6. Visualization of SYBR green at 302 nm and 365 nm for <i>invA</i> LAMP reaction</h2> | <h2><center><i>Figure 6. Visualization of SYBR green at 302 nm and 365 nm for <i>invA</i> LAMP reaction</h2> | ||
<h2>Results obtained matched the experiment performed with <i>lmo0733</i>. 1000X SYBR Green was determined to be the optimal concentration and 365 nm seemed to produce the best images for visualization of LAMP amplification.</i></center></h2> | <h2>Results obtained matched the experiment performed with <i>lmo0733</i>. 1000X SYBR Green was determined to be the optimal concentration and 365 nm seemed to produce the best images for visualization of LAMP amplification.</i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/2/2c/T--NYU_Abu_Dhabi--Results--Biology_7.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/2/2c/T--NYU_Abu_Dhabi--Results--Biology_7.JPG"class="center"> | ||
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<h2><center><i>Figure 7. Visualization of <i>gbpA</i> LAMP reaction with SYBR Green under UV (254 nm) and Blue Light</i></center></h2> | <h2><center><i>Figure 7. Visualization of <i>gbpA</i> LAMP reaction with SYBR Green under UV (254 nm) and Blue Light</i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/b/b6/T--NYU_Abu_Dhabi--Results--Biology_8.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/b/b6/T--NYU_Abu_Dhabi--Results--Biology_8.JPG"class="center"> | ||
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<h2><center><i>Figure 8. Colorimetric results from WarmStart Colorimetric Master Mix reactions with <i>invA</i> gene.</i></center></h2> | <h2><center><i>Figure 8. Colorimetric results from WarmStart Colorimetric Master Mix reactions with <i>invA</i> gene.</i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/f/f4/T--NYU_Abu_Dhabi--Results--Biology_9.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/f/f4/T--NYU_Abu_Dhabi--Results--Biology_9.JPG"class="center"> | ||
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<h2><center><i>Figure 9. Colorimetric results from WarmStart Colorimetric Master Mix reactions immediately after extraction from thermal cycler.</i></center></h2> | <h2><center><i>Figure 9. Colorimetric results from WarmStart Colorimetric Master Mix reactions immediately after extraction from thermal cycler.</i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/5/52/T--NYU_Abu_Dhabi--Results--Biology_10.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/5/52/T--NYU_Abu_Dhabi--Results--Biology_10.JPG"class="center"> | ||
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<h2><center><i>Figure 10. Colorimetric results from WarmStart Colorimetric Master Mix reactions 15 minutes after extraction from thermal cycler.</i></center></h2> | <h2><center><i>Figure 10. Colorimetric results from WarmStart Colorimetric Master Mix reactions 15 minutes after extraction from thermal cycler.</i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/7/7f/T--NYU_Abu_Dhabi--Results--Biology_11.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/7/7f/T--NYU_Abu_Dhabi--Results--Biology_11.JPG"class="center"> | ||
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<h2><center><i>Figure 11. Agarose gel (1%) (left to right) : (a) 500bp ladder, WarmStart reaction mix with treated beef sample, WarmStart reaction mix with untreated beef sample, WarmStart reaction mix with nuclease-free water (b) 500bp ladder, Optigene reaction mix with treated beef sample, Optigene reaction mix with untreated beef sample, Optigene reaction mix with nuclease free water. | <h2><center><i>Figure 11. Agarose gel (1%) (left to right) : (a) 500bp ladder, WarmStart reaction mix with treated beef sample, WarmStart reaction mix with untreated beef sample, WarmStart reaction mix with nuclease-free water (b) 500bp ladder, Optigene reaction mix with treated beef sample, Optigene reaction mix with untreated beef sample, Optigene reaction mix with nuclease free water. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/3/38/T--NYU_Abu_Dhabi--Results--Biology_12.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/3/38/T--NYU_Abu_Dhabi--Results--Biology_12.JPG"class="center"> | ||
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<h2><center><i>Figure 12. Agarose gel (1%) corresponding to the LAMP reaction with serial dilutions of miniprepped <i>lmo0773</i>, <i>invA</i> and <i>hipO</i> DNA. <b>(a).</b> <i>lmo0773</i> serial dilutions 363 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. <b>(b).</b> <i>invA</i> serial diltioons 295.5 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. <b>(c).</b> <i>hipO</i> serial dilutions 172.5 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl | <h2><center><i>Figure 12. Agarose gel (1%) corresponding to the LAMP reaction with serial dilutions of miniprepped <i>lmo0773</i>, <i>invA</i> and <i>hipO</i> DNA. <b>(a).</b> <i>lmo0773</i> serial dilutions 363 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. <b>(b).</b> <i>invA</i> serial diltioons 295.5 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. <b>(c).</b> <i>hipO</i> serial dilutions 172.5 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/1/14/T--NYU_Abu_Dhabi--Results--Biology_13.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/1/14/T--NYU_Abu_Dhabi--Results--Biology_13.JPG"class="center"> | ||
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<h2><center><i>Figure 13. The SYBR Green fluorescence of the <i>hipO</i> serial dilutions represented under <b>(a)</b> UV light (365 nm) <b>(b)</b> Blue light <b>(c)</b> under Blue light with overexposure demonstrates. | <h2><center><i>Figure 13. The SYBR Green fluorescence of the <i>hipO</i> serial dilutions represented under <b>(a)</b> UV light (365 nm) <b>(b)</b> Blue light <b>(c)</b> under Blue light with overexposure demonstrates. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/b/b4/T--NYU_Abu_Dhabi--Results--Biology_14.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/b/b4/T--NYU_Abu_Dhabi--Results--Biology_14.JPG"class="center"> | ||
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<h2><center><i>Figure 14. Agarose gels (1%) corresponding to LAMP specificity reactions carried out on two different genes <i>lmo0733</i> and <i>invA</i>. The first set of reactions for each genes, <b>(a)</b> for <i>lmo0733</i> and <b>(c)</b> for <i>invA</i> is done by keeping the gene constant while varying the primers, while the second set of reactions, <b>(b)</b> for <i>lmo0733</i> and <b>(d)</b> for <i>invA</i> are carried out by varying the gene used while keeping the primers constant. | <h2><center><i>Figure 14. Agarose gels (1%) corresponding to LAMP specificity reactions carried out on two different genes <i>lmo0733</i> and <i>invA</i>. The first set of reactions for each genes, <b>(a)</b> for <i>lmo0733</i> and <b>(c)</b> for <i>invA</i> is done by keeping the gene constant while varying the primers, while the second set of reactions, <b>(b)</b> for <i>lmo0733</i> and <b>(d)</b> for <i>invA</i> are carried out by varying the gene used while keeping the primers constant. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/d/d6/T--NYU_Abu_Dhabi--Results--Biology_15.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/d/d6/T--NYU_Abu_Dhabi--Results--Biology_15.JPG"class="center"> | ||
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<h2><center><i>Figure 15. Agarose gel (3%) showing RPA amplification of <i>lmo0733</i>, <i>invA</i> and <i>gbpA</i> miniprep DNA and transformed <i>E. coli</i> colonies in 50 ul volume reactions. The light bands seen in the negative control lanes are primer dimers and proteins from the RPA reaction. (Lane 1) 100 bp ladder; (Lane 2) <i>lmo0733</i> miniprep + <i>lmo0733</i> RPA primers; (Lane 3) <i>lmo0733</i> transformed <i>E. coli</i> colony + <i>lmo0733</i> RPA primers; (Lane 4) <i>lmo0733</i> negative control; (Lane 5) <i>invA</i> miniprep + <i>invA</i> RPA primers; (Lane 6) <i>invA</i> transformed <i>E. coli</i> colony + <i>invA</i> RPA primers; (Lane 7) <i>invA</i> negative control; (Lane 8) <i>gbpA</i> miniprep + <i>gbpA</i> RPA primers; (Lane 9) <i>gbpA</i> transformed <i>E. coli</i> colony + <i>gbpA</i> RPA primers; (Lane 10) <i>gbpA</i> negative control; (Lane 11) 500 bp ladder | <h2><center><i>Figure 15. Agarose gel (3%) showing RPA amplification of <i>lmo0733</i>, <i>invA</i> and <i>gbpA</i> miniprep DNA and transformed <i>E. coli</i> colonies in 50 ul volume reactions. The light bands seen in the negative control lanes are primer dimers and proteins from the RPA reaction. (Lane 1) 100 bp ladder; (Lane 2) <i>lmo0733</i> miniprep + <i>lmo0733</i> RPA primers; (Lane 3) <i>lmo0733</i> transformed <i>E. coli</i> colony + <i>lmo0733</i> RPA primers; (Lane 4) <i>lmo0733</i> negative control; (Lane 5) <i>invA</i> miniprep + <i>invA</i> RPA primers; (Lane 6) <i>invA</i> transformed <i>E. coli</i> colony + <i>invA</i> RPA primers; (Lane 7) <i>invA</i> negative control; (Lane 8) <i>gbpA</i> miniprep + <i>gbpA</i> RPA primers; (Lane 9) <i>gbpA</i> transformed <i>E. coli</i> colony + <i>gbpA</i> RPA primers; (Lane 10) <i>gbpA</i> negative control; (Lane 11) 500 bp ladder | ||
</i></center></h2> | </i></center></h2> | ||
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<h5><i>Reaction volume: 25 uL reaction</i></h5> | <h5><i>Reaction volume: 25 uL reaction</i></h5> | ||
<img src="https://static.igem.org/mediawiki/2018/8/83/T--NYU_Abu_Dhabi--Results--Biology_16.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/8/83/T--NYU_Abu_Dhabi--Results--Biology_16.JPG"class="center"> | ||
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<h2><center><i>Figure 16. Agarose gel (3%) showing RPA amplification of <i>invA</i> and <i>gbpA</i> miniprep DNA and negative controls in 25 ul volume reactions. The light bands seen in the negative control lanes are primer dimers and proteins from the RPA reaction. (Lane 1) 100 bp ladder; (Lane 2) <i>invA</i> miniprep + <i>invA</i> RPA primers; (Lane 3) <i>invA</i> negative control; (Lane 4) <i>gbpA</i> miniprep + <i>gbpA</i> RPA primers; (Lane 5) <i>gbpA</i> negative control. | <h2><center><i>Figure 16. Agarose gel (3%) showing RPA amplification of <i>invA</i> and <i>gbpA</i> miniprep DNA and negative controls in 25 ul volume reactions. The light bands seen in the negative control lanes are primer dimers and proteins from the RPA reaction. (Lane 1) 100 bp ladder; (Lane 2) <i>invA</i> miniprep + <i>invA</i> RPA primers; (Lane 3) <i>invA</i> negative control; (Lane 4) <i>gbpA</i> miniprep + <i>gbpA</i> RPA primers; (Lane 5) <i>gbpA</i> negative control. | ||
</i></center></h2> | </i></center></h2> | ||
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<h5><i>Reaction volume: 10 uL reaction</i></h5> | <h5><i>Reaction volume: 10 uL reaction</i></h5> | ||
<img src="https://static.igem.org/mediawiki/2018/4/41/T--NYU_Abu_Dhabi--Results--Biology_17.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/4/41/T--NYU_Abu_Dhabi--Results--Biology_17.JPG"class="center"> | ||
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<h2><center><i>Figure 17. Agarose gel (3%) showing RPA amplification of <i>gbpA</i>, <i>invA</i>, and <i>lmo0733</i> miniprep DNA and negative controls in 10 µl volume reactions. The light bands seen in the negative control lanes are primer dimers and proteins from the RPA reaction. (Lane 1) 100 bp ladder; (Lane 2) <i>gbpA</i> miniprep + <i>gbpA</i> RPA primers; (Lane 3) <i>invA</i> miniprep + <i>invA</i> RPA primers; (Lane 4) <i>lmo0733</i> miniprep + <i>lmo0733</i> RPA primers; (Lane 5) <i>gbpA</i> negative control; (Lane 6) <i>invA</i> negative control; (Lane 7) <i>lmo0733</i> negative control. | <h2><center><i>Figure 17. Agarose gel (3%) showing RPA amplification of <i>gbpA</i>, <i>invA</i>, and <i>lmo0733</i> miniprep DNA and negative controls in 10 µl volume reactions. The light bands seen in the negative control lanes are primer dimers and proteins from the RPA reaction. (Lane 1) 100 bp ladder; (Lane 2) <i>gbpA</i> miniprep + <i>gbpA</i> RPA primers; (Lane 3) <i>invA</i> miniprep + <i>invA</i> RPA primers; (Lane 4) <i>lmo0733</i> miniprep + <i>lmo0733</i> RPA primers; (Lane 5) <i>gbpA</i> negative control; (Lane 6) <i>invA</i> negative control; (Lane 7) <i>lmo0733</i> negative control. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/a/a4/T--NYU_Abu_Dhabi--Results--Biology_18.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/a/a4/T--NYU_Abu_Dhabi--Results--Biology_18.JPG"class="center"> | ||
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<h2><center><i>Figure 18. Visualization of SYBR green at 302 nm and 365 nm for <i>invA</i> RPA reaction</h2> | <h2><center><i>Figure 18. Visualization of SYBR green at 302 nm and 365 nm for <i>invA</i> RPA reaction</h2> | ||
<h2>No fluorescence was detected in the absence of SYBR green. Minimal background fluorescence was observed in the negative controls. A clear distinction was observed between positive and negative controls. 1000X SYBR Green was determined to be the optimal concentration and 365 nm seemed to produce the best images for visualization of LAMP amplification. | <h2>No fluorescence was detected in the absence of SYBR green. Minimal background fluorescence was observed in the negative controls. A clear distinction was observed between positive and negative controls. 1000X SYBR Green was determined to be the optimal concentration and 365 nm seemed to produce the best images for visualization of LAMP amplification. | ||
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<img src="https://static.igem.org/mediawiki/2018/7/79/T--NYU_Abu_Dhabi--Results--Biology_19.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/7/79/T--NYU_Abu_Dhabi--Results--Biology_19.JPG"class="center"> | ||
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<h2><center><i>Figure 19. <b>(a)</b> Visualization of SYBR Green color difference between positive and negative tests for the amplification of <i>gbpA</i> gene with RPA under visible light <b>(b)</b> Visualization of SYBR Green fluorescence difference between positive and negative tests for the amplification of <i>gbpA</i> gene with RPA under 254 nm UV light. | <h2><center><i>Figure 19. <b>(a)</b> Visualization of SYBR Green color difference between positive and negative tests for the amplification of <i>gbpA</i> gene with RPA under visible light <b>(b)</b> Visualization of SYBR Green fluorescence difference between positive and negative tests for the amplification of <i>gbpA</i> gene with RPA under 254 nm UV light. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/a/a2/T--NYU_Abu_Dhabi--Results--Biology_20.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/a/a2/T--NYU_Abu_Dhabi--Results--Biology_20.JPG"class="center"> | ||
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<h2><center><i>Figure 20. Visualization of SYBR Green fluorescence difference between positive and negative tests for the amplification of <i>gbpA</i> gene with RPA under 400 nm portable UV LED bulb. | <h2><center><i>Figure 20. Visualization of SYBR Green fluorescence difference between positive and negative tests for the amplification of <i>gbpA</i> gene with RPA under 400 nm portable UV LED bulb. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/9/98/T--NYU_Abu_Dhabi--Results--Biology_21.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/9/98/T--NYU_Abu_Dhabi--Results--Biology_21.JPG"class="center"> | ||
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<h2><center><i>Figure 21. Gel corresponding to the RPA reaction with serial dilutions of miniprepped <i>lmo0773</i>, <i>invA</i> and <i>hipO</i> DNA. <b>(a)</b> <i>lmo0773</i> serial dilutions 363 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. <b>(b)</b> <i>hipO</i> serial dilutions 159.8 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. | <h2><center><i>Figure 21. Gel corresponding to the RPA reaction with serial dilutions of miniprepped <i>lmo0773</i>, <i>invA</i> and <i>hipO</i> DNA. <b>(a)</b> <i>lmo0773</i> serial dilutions 363 ng/µl, 200 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. <b>(b)</b> <i>hipO</i> serial dilutions 159.8 ng/µl, 100 ng/µl, 50 ng/µl, 25 ng/µl, 10 ng/µl, 1 ng/µl, 0.5 ng/µl, 0.1 ng/µl. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/6/61/T--NYU_Abu_Dhabi--Results--Biology_22.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/6/61/T--NYU_Abu_Dhabi--Results--Biology_22.JPG"class="center"> | ||
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<h2><center><i>Figure 22. Agarose gels (1%) corresponding to RPA specificity reactions carried out on two different genes <b>(a)</b> <i>lmo0733</i> and <b>(b)</b> <i>hipO</i>. The first set of reactions for each gene is done by keeping the gene constant while varying the primers, while the second set of reactions are carried out by varying the gene used while keeping the primers constant. | <h2><center><i>Figure 22. Agarose gels (1%) corresponding to RPA specificity reactions carried out on two different genes <b>(a)</b> <i>lmo0733</i> and <b>(b)</b> <i>hipO</i>. The first set of reactions for each gene is done by keeping the gene constant while varying the primers, while the second set of reactions are carried out by varying the gene used while keeping the primers constant. | ||
</i></center></h2> | </i></center></h2> | ||
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<img src="https://static.igem.org/mediawiki/2018/a/a4/T--NYU_Abu_Dhabi--cost7.JPG"class="center"> | <img src="https://static.igem.org/mediawiki/2018/a/a4/T--NYU_Abu_Dhabi--cost7.JPG"class="center"> | ||
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<h2>Reagents required per chip (10 reactions): | <h2>Reagents required per chip (10 reactions): | ||
</h2> | </h2> |
Revision as of 18:46, 17 October 2018