Difference between revisions of "Team:HBUT-China"

 
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                 <h1 style="font-size:350%;">
 
                 <h1 style="font-size:350%;">
                    HBUT iGEM 2018
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                        HBUT iGEM 2018
 
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                 <p class="subtitle">
 
                 <p class="subtitle">
                    Wuhan China
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                        Wuhan China
                    <!-- <strong>Bulma</strong>! -->
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                        <!-- <strong>Bulma</strong>! -->
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             <p class="subtitle">
                PROJECT DESCRIPTION
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                    <!-- <div class="notification"> -->
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                     <p class="disperse"> The pollution of nickel ion is a very serious environmental problem in China. This kind of pollution
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                         is different from that of other organic compounds. Nickel ions are a common pollutant, and do not
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                         easily degrade in the environment. To solve this problem, this year we integrated protein genes (which
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                          <div class='carousel-item has-background'>
                         are capable of absorbing nickel ions) into the chromosomes of Saccharomyces cerevisiae, so that the
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                         nickel ions in the environment can be accumulated in the vacuoles of these yeast cells, thus reducing
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                         nickel ion concentrations in the environment. Secondly, we integrated the system of the E. coli itself
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                          </div>
                        with the original nickel ion detection bioaccumulation block, and created a brand new system. By
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                          <div class='carousel-item has-background'>
                        increasing the signal to noise ratio of the system via the nickel ion channel protein, the accuracy
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                        of the detection is improved. The new fluorescein protein we used this time can light itself without
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                        the need of an external light source. We also plan to link the E. coli detection system to an APP
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                        using the transmission of electrical signals, so as to achieve real-time detection.
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                     <div class="columns">
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                            <a class="twitter-timeline" data-width="100%" data-height="100%" href="https://twitter.com/HBUTiGEM?ref_src=twsrc%5Etfw">Twitter may not be available in your country</a>
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                    <h2 style="margin-left: auto;margin-right: auto;">
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                         About US
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                    </h2>
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                         <p style="text-justify: inter-ideograph;text-align: justify; font-size: 110%">
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                                This year's iGEM team decided to continue the work started by last year's team with the Nickel Hunter project; a biological device to detect nickel ions in the environment. Two shortcomings of the previous design were a small measurement range, and low precision. This year we added the nickel ions channel protein NikABCDE gene to the original gene element allowing the ions to enter the cell more smoothly, which has improved both of these issues. We also replaced the RFP gene with the luciferase LuxCDABE gene. The reporter gene emits bioluminescence in response to nickel ions which further enhances our measurement precision. It also provided the opportunity to develop a biosensing instrument for real-time nickel ions detection. Our changes improved sensitivity and range, as well as provided an opportunity for a new method of nickel ions detection.
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{{ HBUT-China/templates/footer }}
 
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Latest revision as of 03:00, 13 November 2018

HBUT iGEM 2018

Wuhan China





About US

This year's iGEM team decided to continue the work started by last year's team with the Nickel Hunter project; a biological device to detect nickel ions in the environment. Two shortcomings of the previous design were a small measurement range, and low precision. This year we added the nickel ions channel protein NikABCDE gene to the original gene element allowing the ions to enter the cell more smoothly, which has improved both of these issues. We also replaced the RFP gene with the luciferase LuxCDABE gene. The reporter gene emits bioluminescence in response to nickel ions which further enhances our measurement precision. It also provided the opportunity to develop a biosensing instrument for real-time nickel ions detection. Our changes improved sensitivity and range, as well as provided an opportunity for a new method of nickel ions detection.