Team:NCTU Formosa

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<div id="description" class="page" data-stellar-background-ratio="0.5"><div class="boxwrap" data-stellar-ratio="1.25"><div class="box"><div class="title"><div class="gear">NCTU_Formosa</div>E.colightuner</div><div class="team">a regulation system that does multitasking.</div><div class="wordbox"><p>This year, We found the simple act of expressing the DNA sequence of PBAN (Pheromone Biosynthesis Activating Neuropeptide) to be equally, if not more, efficient and effective. Just like pheromones, PBAN is species-specific. Once our target species comes in contact with the PBAN produced by our E. coli, its pheromone glands will be stimulated and thus attract more of its own kind into our capturing device.</p>
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<p>So far, We have already collected sequences of a few common species of harmful insects. Hopefully this model can be widely used in the future when PBANs of more insects are found.</p>
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<div class="team">a regulation system that does multitasking.</div>
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</div><div class="readmore"><span class="moret">See our project <i class="fa fa-arrow-circle-right"></i></span></div></div></div></div>
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<p class="bigtitle">Sitemap</p><p>Our wiki has 10 pages in total and each page contains several sections. There's a navigation bar sticking on the top of the page. When you want to get back to the top of the page, don't panic! Feel free to click the button on the left-bottom corner of the page anytime.</p>
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<div id="sec1" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/project"><i class="icon-lightbulb"></i><p class="smalltitle">Project</p><p>A multiple regulated-system was built using three different regulation mechanisms including red light, temperature, and sRNA. In other words, it is multitasking genetic engineered machine that can express a variable genes depending on the different command given. </p></a></div>
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<div id="sec2" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/results"><i class="fa fa-smile-o"></i><p class="smalltitle">Results</p><p>The current progress of our project, including detailed information of the experimental data and the overall evaluation of the practicability of this project. </p></a></div>
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<div id="sec3" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/modeling"><i class="icon-bar-chart"></i><p class="smalltitle">Modeling</p><p>Modeling was our first step forward. When validated with our experimental data, modeling is also a verification of the accuracy of our experiments. </p></a></div>
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<div id="sec4" class="seclink"><a href="https://2013.igem.org/Team:NCTU_Formosa/biobricks"><i class="icon-puzzle-piece"></i><p class="smalltitle">Biobricks</p><p>To strive for the best results, we made a number of experiment. Our team always hang together in spite of many losses.</p></a></div>
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<div id="sec5" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/notes"><i class="icon-pencil"></i><p class="smalltitle">Notes</p><p>The experimental log that records down the purpose, method, result and date of each experiment that we have conducted.</p></a></div>
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<div id="sec6" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/human_practice"><i class="icon-magnet"></i><p class="smalltitle">Human Practice</p><p>This summer, we hosted a summer camp for high school students and held a conference for iGEMers. With these efforts, we have passed on our enthusiasm of synthetic biology to our peers and raise their interests on the topic. </p></a></div>
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<div id="sec7" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/team"><i class="fa fa-group"></i> <p class="smalltitle">Team</p><p>Our team is a big family in which each member has well established tacit understanding with one another. We have 18 members, 13 advisers, and 2 professors. Perhaps, we share little in common, but all of us are willing to contribute to the successes of our team. </p></a></div>
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<div id="sec8" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/safety"><i class="icon-lock"></i><p class="smalltitle">Safety</p><p>Inside a newly built, well-equipped laboratory, we conducted our experiment. Besides safety equipment, each member is well informed of the safety rules and emergency handling. </p></a></div>
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<div id="sec9" class="seclink"><a href="https://2014.igem.org/Team:NCTU_Formosa/achievement"><i class="fa fa-trophy"></i><p class="smalltitle">Achievement</p><p>We smile. We shed tears. We strive for the best. These are the little BIG things we have done.</p></a></div>
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<p class="bigtitle">Bringing back <span class="em">wiki</span> <span class="em2">the way what it was meant to be.</span></p>
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<p>The core value of wiki are the openness and its coeditable property. As people tried to beautify the pages, too often that the wiki becomes merely a work handled by one person. It digresses from the core value of wiki. Therefore, to bring back its role, we build a system not only <b>more user-friendly</b> and <b>eye-pleasing</b> but also <b>coeditable</b> and <b>smart</b>.</p>
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<p>We believe that wiki is a platform for the iGEMers and the future iGEMers.  It stands for sharing. It is meant for cooperation. It ought to be a stage that brings people together for knowledge and the value that lies with people.</p><div id="meritw" class="js-masonry" data-masonry-options='{ "columnWidth": 440, "itemSelector": ".merit" }'>
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<p>To layout the pages, the wiki site is often completely written by HTML rather than the expected wiki markup language. We believe that wiki language encourages users to be more involved into the project since it's easy to use. Thus, we build a website <b>letting users to edit contents by wiki language</b> but at the same time have a cleaner layout by HTML.</p>
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<p>What's more, for the <a href="https://2014.igem.org/Team:NCTU_Formosa/biobricks">Biobricks page</a>, the table is <b>directly fetched from the Biobrick Registry website</b>. Not only it gets timely updates when new parts are registered, but it intertwines wiki and part wiki into a unique iGEM-centric system.</p>
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<p>Our wiki site implements a more modern method to create the layout. As the window size changes, <b>text reflows and layout rearranges accordingly</b>. It supports various screen size down from smartphones and up to computers. To be future-proof, it's <b>touch-friendly</b> and can even support large-width devices such as 4KTV!</p>
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<p>When iGEMers log into 2014.igem.org, <b>"Edit" link for each sections appears automatically</b>. Users can click into specific section to modify it. The history log of the page (link located at the top of the screen) can <b>show the section modified and the user who modified it</b>. Since editing contents becomes so straight-forward, our team members edit it spontaneously. We believe the <b>coeditability suggests the spirit of cooperating and sharing</b>, which are what wiki ought to be and the reason why iGEM lets us show our project upon wiki. Please check out <a href="https://2013.igem.org/wiki/index.php?title=Team:NCTU_Formosa/project&action=history">the history log of our project page</a>.</p>
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<p>To elevate the user experience, we introduce a submenu that fix on the screen when scrolling though the page. It serves as a normal menu that links to each section. So what's special about it? It is so smart that it <b>shows the place we're currently browsing</b>, and the links to sub-section that collapsed at first will expand automatically.</p>
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<p>We also introduce <b>buttons for changing the font size</b> and a button that can back to the top of the page when page is scrolled down. This wiki is also <b>friendly for blind and visually impaired people</b> that use screen reading softwares. </p>
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<p>The submenus in our wiki are auto-generated by the Mediawiki system. Since we use the wiki markup language to <b>make our content a hierarchic structure</b>, the system can read our structure and generate a menu correspondingly. We took a step forward and made the menu even smarter. It can now collapse and expand <b>according to our mouse and the place we're browsing</b>. We believe that this is what a good customization should be.</p>
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<p>Our wiki follows <a href="https://2014.igem.org/Requirements/Wiki">the requirements</a> announced by iGEM. We understand that wiki serves as a resource for current and future iGEMers, so our code, images and files are all hosted on the 2014.igem.org server to prevent from data losing.</p>
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<p>Plus, we not only put the user editing menu on the top of the screen, <b>we also place the footer box</b> on the bottom of every page, including creative commons logo, mediawiki logo and some links, because these are useful information that shouldn't be hidden.</p>
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<p style="text-align:left;font-size:150%;">Abstract</p>
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<div style="font-size:110%;line-height:105%;font-family:"Times New Roman", Times, serif;">Insect damage has been a severe problem ever since ancient agricultural times. Nowadays, people are still suffering from harmful insects. People have been striving to resolve these problems by using pesticides. It seemed to be really effective at first, but after several years, people became conscious of the side effects of those environmentally hazardous chemicals. This year, our team NCTU Formosa established a taskforce, Harmful Insects Elimination Force, to solve this problem. Compared to the complex biosynthesis pathway of pheromones, we found the simple act of expressing the DNA sequence of PBAN (Pheromone Biosynthesis Activating Neuropeptide) to be equally, if not more, efficient and effective. Just like pheromones, PBAN is species-specific. Once our target species comes in contact with the PBAN produced by our <i>E.coli</i>, its pheromone glands will be stimulated and thus attract more of its own kind into our capturing device. So far, we have already collected sequences of a few common species of harmful insects. Hopefully this model can be widely used in the future when PBANs of more insects are found.</div>
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                    <p>Project</p>
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                    <p>We establish an alternative way to improve the severe pests problem that people have been suffering from. We hope that our device can save the world from insect damage.</p>
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                    <p>Results</p>
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                    <p>The current progress of our project, including detailed experimental data and the overall evaluation of project feasibility.</p>
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                    <p>Modeling</p>
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                    <p>Modeling is our first step forward. When validated with our experimental data, modeling is also a verification of the accuracy of our experiments.</p>
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                    <p>Biobricks</p>
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                    <p>To obtain the best results, we designed and carried out plenty of experiments. Our team always works together and we have fun conducting experiments.</p>
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                    <p>Human Practice</p>
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                    <p>We hosted an exciting and memorable iGEM Conference for the 2<sup>nd</sup> time in NCTU. Currently, we are cooperating with Sunnymorning Organic Farm to do field testing on our device.</p>
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                    <p>Team</p>
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                    <p>Our team is a big family. We have 16 members, 16 advisors, and 4 instructors. All of us are working the hardest to contribute to our team's success.</p>
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                    <p>Notebook</p>
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                    <p>The experimental log that records the purpose, method, results and date of each experiment that we have conducted.</p>
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                    <p>Safety</p>
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                    <p>Inside a newly built, well-equipped laboratory, we conducted our experiment. Besides safety equipment, each member is well trained for the safety rules and emergency handling.</p>
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<p>E.colightuner</p>
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<p>Using sRNA, temperature and light, we want to construct a complicated regulation system.
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First, we took advantage of a powerful regulated molecules, sRNA. Bacterial small RNAs(sRNA) are small non-coding molecules, and they are highly structured and contain several stem-loops. sRNAs can either bind to protein targets, and modify the function of the bound protein , or bind to mRNA targets and regulate gene expression.
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Second, we used a Ribosome binding site which can sense change of temperature, 37oC RBS. Because this sequence has a unique secondary structure, it can’t function in room temperature. When temperature increasing, the secondary structure would change and can function.
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Third, we designed a new promoter, Pred. It is activated by red light. When removing the red light, it would be turned off, so we use this promoter to strengthen our project.
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  By these important factors, we can achieve the pathway regulation and do more applications.</p></a>
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     <p>2013 NCTU_Formosa</p>
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     <p>2014 NCTU_Formosa</p>
     <p class="author">Website designed by Calvin Hue.</p>
     <p class="author">Website designed by Calvin Hue.</p>
     <p>Cover image credit: <a href="http://www.dvq.co.nz/" target="_blank">DVQ</a>, <a href="http://www.apple.com/" target="_blank">Apple Inc.</a></p>
     <p>Cover image credit: <a href="http://www.dvq.co.nz/" target="_blank">DVQ</a>, <a href="http://www.apple.com/" target="_blank">Apple Inc.</a></p>
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Latest revision as of 03:15, 18 October 2014

a regulation system that does multitasking.

Abstract

Insect damage has been a severe problem ever since ancient agricultural times. Nowadays, people are still suffering from harmful insects. People have been striving to resolve these problems by using pesticides. It seemed to be really effective at first, but after several years, people became conscious of the side effects of those environmentally hazardous chemicals. This year, our team NCTU Formosa established a taskforce, Harmful Insects Elimination Force, to solve this problem. Compared to the complex biosynthesis pathway of pheromones, we found the simple act of expressing the DNA sequence of PBAN (Pheromone Biosynthesis Activating Neuropeptide) to be equally, if not more, efficient and effective. Just like pheromones, PBAN is species-specific. Once our target species comes in contact with the PBAN produced by our E.coli, its pheromone glands will be stimulated and thus attract more of its own kind into our capturing device. So far, we have already collected sequences of a few common species of harmful insects. Hopefully this model can be widely used in the future when PBANs of more insects are found.

Retrieved from "http://2014.igem.org/Team:NCTU_Formosa"