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+ | <div class="topic"><p class="text_color">Applied Design</p></div> | ||
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+ | <p class="title">Applied Design—A Farming System<p> | ||
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+ | <p class="content">For the practical application in the farmland, the farm will be divided into several areas, in each area, several sets of devices and sensors will be installed. The devices in each area will collect the farmland conditions respectively, and the data will be transmitted to one host device in each area through Bluetooth, and then the host will upload the data of its area up to the cloud through WiFi. When the data are uploaded to the cloud, it will send into the app in real time; thus the user can know the conditions in their farm simultaneously. As the time goes by, a database of the environmental information cloud will be created, the farm conditions will become big databases, and according to it, we can use the statistics of the big data to predict the future conditions as the number of pests, and auto-control the spraying system to spray Pantide or water more efficiently and accurately.<br>(See more in the <a href="https://2016.igem.org/Team:NCTU_Formosa/Demonstrate" style="color:#44E287;">Device</a>) </p> | ||
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<p class="title">What is “Pantide”?<p> | <p class="title">What is “Pantide”?<p> | ||
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Russia</p> | Russia</p> | ||
<p class="content">On account of the vast multicomponent mixture in spider toxins, the selection of spider toxin required evaluation in an organized methodology. In this case, first, we searched two online databases-AnachnoServer and UniProt (Universal Protein Resource)-for toxic candidates. AnachnoServer is an online database that contains nearly 800 peptide toxin information from 78 spider species<sup>[1]</sup>, and UniProt is a library of protein information. We selected the toxin peptides from the databases with the following several criteria.</p> | <p class="content">On account of the vast multicomponent mixture in spider toxins, the selection of spider toxin required evaluation in an organized methodology. In this case, first, we searched two online databases-AnachnoServer and UniProt (Universal Protein Resource)-for toxic candidates. AnachnoServer is an online database that contains nearly 800 peptide toxin information from 78 spider species<sup>[1]</sup>, and UniProt is a library of protein information. We selected the toxin peptides from the databases with the following several criteria.</p> | ||
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+ | <ul style="list-style-image:none;list-style-type:disc;"> | ||
<li class="list">The toxin should have multiple references which back up the origin, structure, and mechanism.</li> | <li class="list">The toxin should have multiple references which back up the origin, structure, and mechanism.</li> | ||
<li class="list">The toxin should not be toxic to mammals with the authentication of mice experiment.</li> | <li class="list">The toxin should not be toxic to mammals with the authentication of mice experiment.</li> | ||
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<li class="list">The toxin was done with some orally-active experiment on certain species.</li> | <li class="list">The toxin was done with some orally-active experiment on certain species.</li> | ||
<li class="list">The toxin has no antibiotic activity to bacteria.</li> | <li class="list">The toxin has no antibiotic activity to bacteria.</li> | ||
+ | </ul> | ||
<p class="content">After months of searching and winnowing, Pantide comes into existence. The three selected toxins are Omega-hexatoxin-Hv1a(Hv1a), μ-segestritoxin-Sf1a(Sf1a) and Orally active insecticidal peptide(OAIP).</p> | <p class="content">After months of searching and winnowing, Pantide comes into existence. The three selected toxins are Omega-hexatoxin-Hv1a(Hv1a), μ-segestritoxin-Sf1a(Sf1a) and Orally active insecticidal peptide(OAIP).</p> | ||
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Revision as of 18:57, 19 October 2016