Team:ZJU-China/humanpractice.htm

From 2012.igem.org

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<p align="justify">In the beginning of February, our ZJU Jamboree started (on Feb 11-12, 2012)! Each group gave a presentation to all other club members to introduce their project plan, and most importantly their original ideas. We are all greatly inspired by their presentations, and so proud of our members. ZJU Jamboree also gave birth to the original thought of HP Creative Workshop (We received so many interesting ideas of human practice). Some of the club members remarked that it's one of the best academic experiences they ever had in college.</p>
<p align="justify">In the beginning of February, our ZJU Jamboree started (on Feb 11-12, 2012)! Each group gave a presentation to all other club members to introduce their project plan, and most importantly their original ideas. We are all greatly inspired by their presentations, and so proud of our members. ZJU Jamboree also gave birth to the original thought of HP Creative Workshop (We received so many interesting ideas of human practice). Some of the club members remarked that it's one of the best academic experiences they ever had in college.</p>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
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<h5>Group "Lignin Cinderella"</h5>
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<h3>Group "Lignin Cinderella"</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Project Abstract: Synthetic biology holds great promise regarding the production of important compounds, and the degradation of harmful ones. In this grogram, we harness the power of synthetic biology to meet the world’s needs for fuel and environment. We try to express the gene coding lignin prtoxidase (Lip), found in the white rot fungus Phanerochaete Chrysosporium, into genetically modified crop cells and degrade lignin after mechanically breaking up the structure of crop cell. And to control the expression, we design a molecular logical switch through the amplification of cascade reaction, combining the start controlling condition of expression of lignin peroxidase (Lip) or its promotor into the metabolic regulation of crop growth-related genes. So that controlling the accumulation of Lip in cell will reach peak when crop is in a specific period, such as harvest. In this way, we can also insert into another lignin degrading enzyme, such as Glox, Mnp and Lac. If we make it, it will become a new way in degrading lignin and cut the cost in paper pulp industry and biofinery. And it is also a novel way to bring and control heterologous gene in eukaryotic </p>
<p align="justify">Project Abstract: Synthetic biology holds great promise regarding the production of important compounds, and the degradation of harmful ones. In this grogram, we harness the power of synthetic biology to meet the world’s needs for fuel and environment. We try to express the gene coding lignin prtoxidase (Lip), found in the white rot fungus Phanerochaete Chrysosporium, into genetically modified crop cells and degrade lignin after mechanically breaking up the structure of crop cell. And to control the expression, we design a molecular logical switch through the amplification of cascade reaction, combining the start controlling condition of expression of lignin peroxidase (Lip) or its promotor into the metabolic regulation of crop growth-related genes. So that controlling the accumulation of Lip in cell will reach peak when crop is in a specific period, such as harvest. In this way, we can also insert into another lignin degrading enzyme, such as Glox, Mnp and Lac. If we make it, it will become a new way in degrading lignin and cut the cost in paper pulp industry and biofinery. And it is also a novel way to bring and control heterologous gene in eukaryotic </p>
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<p align="justify">"Lignin Cinderella" is probably one of the best in this Jamboree due to their fully developed project; they grasp the crucial idea of synthetic biology and brainstorm a project in detail. By going through their final report, we can see they did a good background study, and provide detailed methods in both experiment itself and plasmid designing. It’s innovative and fully developed. Apart from their experiment design, the project also has modeling part and even a website. We enjoy their idea of using Cinderella as well as the logo animation. What’s more, they even go to local high school to introduce iGEM and synthetic biology as their human practice part, which is really impressive.</p>
<p align="justify">"Lignin Cinderella" is probably one of the best in this Jamboree due to their fully developed project; they grasp the crucial idea of synthetic biology and brainstorm a project in detail. By going through their final report, we can see they did a good background study, and provide detailed methods in both experiment itself and plasmid designing. It’s innovative and fully developed. Apart from their experiment design, the project also has modeling part and even a website. We enjoy their idea of using Cinderella as well as the logo animation. What’s more, they even go to local high school to introduce iGEM and synthetic biology as their human practice part, which is really impressive.</p>
<p align="justify">&nbsp;</p>
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<h5>Group "Algae Digester"</h5>
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<h3>Group "Algae Digester"</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Project Abstract: In this project, we tackle the issue of biofuels, which is a hot spot in synthesis biology nowadays. Based on some recent researches, we plan to enable the engineered E.coli to digest algae and turn the polysaccharide to fuel substitutes or precursors suitable for gasoline, diesel, and jet engines. We also tried to make efforts in dry lab, which can contribute to our project at a systematic level.</p>
<p align="justify">Project Abstract: In this project, we tackle the issue of biofuels, which is a hot spot in synthesis biology nowadays. Based on some recent researches, we plan to enable the engineered E.coli to digest algae and turn the polysaccharide to fuel substitutes or precursors suitable for gasoline, diesel, and jet engines. We also tried to make efforts in dry lab, which can contribute to our project at a systematic level.</p>
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<p align="justify">Their systematic way of organizing their final report and presentation leave a good impression on us. </p>
<p align="justify">Their systematic way of organizing their final report and presentation leave a good impression on us. </p>
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<h5>Group "Methane Alarm"</h5>
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<h3>Group "Methane Alarm"</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Project Abstract: We aim to design a methane alarm for coal mine by methanotrophs, which consists of four parts: decomposition, sensor, signal tuner and output. Decomposition part takes in methane and conducts catalytic decomposition of methane to CO2 or assimilates methane as its own organic compounds. This function is the naturally exist in methanotrophs. Sensor senses the concentration of methane and produces activator A. As for signal tuner part, we plan to find a substance B which is sensitive to the concentration of activator A. Activator A and substance B combines to control the activity of substance C. Substance C acts as the switch of promoter--when the concentration of methane has been exceeded the alarm threshold, promoter will turn on. Output part will give the alarm by producing pigment of red lycopene when promoter is open. We plan to put methanotrophs on the miner lamp. When the bacteria produce pigment, the light through bacteria will turn out to be red.</p>
<p align="justify">Project Abstract: We aim to design a methane alarm for coal mine by methanotrophs, which consists of four parts: decomposition, sensor, signal tuner and output. Decomposition part takes in methane and conducts catalytic decomposition of methane to CO2 or assimilates methane as its own organic compounds. This function is the naturally exist in methanotrophs. Sensor senses the concentration of methane and produces activator A. As for signal tuner part, we plan to find a substance B which is sensitive to the concentration of activator A. Activator A and substance B combines to control the activity of substance C. Substance C acts as the switch of promoter--when the concentration of methane has been exceeded the alarm threshold, promoter will turn on. Output part will give the alarm by producing pigment of red lycopene when promoter is open. We plan to put methanotrophs on the miner lamp. When the bacteria produce pigment, the light through bacteria will turn out to be red.</p>
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<p align="justify">Group Member: Yan yan, Huachun Liu, Yue Zhang, Mengqi Hu.</p>
<p align="justify">Group Member: Yan yan, Huachun Liu, Yue Zhang, Mengqi Hu.</p>
<p align="justify">&nbsp;</p>
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<h5>Group "Tanbio"</h5>
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<h3>Group "Tanbio"</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Project Abstract: Tanbio is a bacterial system which can switch between different states by light. The system consists of a synthetic sensor of light and a switch which can control the express of anti-melanin gene. Thus, when exposed under the light, the bacterial system will produce melanin, while it will not without light. Tanbio can function as a biological film, such that the projection of a pattern of light on to the bacteria produces a high-definition, two-dimensional chemical image. It can also be applied to make light-tight materials which can adapt to the intensity of light automatically.</p>
<p align="justify">Project Abstract: Tanbio is a bacterial system which can switch between different states by light. The system consists of a synthetic sensor of light and a switch which can control the express of anti-melanin gene. Thus, when exposed under the light, the bacterial system will produce melanin, while it will not without light. Tanbio can function as a biological film, such that the projection of a pattern of light on to the bacteria produces a high-definition, two-dimensional chemical image. It can also be applied to make light-tight materials which can adapt to the intensity of light automatically.</p>
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<p align="justify">Group Member: Jiahui Zhang, Zhewei Wang, Yanjing Liu, Jiayi Chen</p>
<p align="justify">Group Member: Jiahui Zhang, Zhewei Wang, Yanjing Liu, Jiayi Chen</p>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
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<h5>Group "Magnetosome"</h5>
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<h3>Group "Magnetosome"</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Project Abstract: The mean point of our project is to utilize the magnetism of the magnetic bacteria to construct targeted medicine that can cure cancer. The magnetic bacteria can produce a membrane structure, magnetosome. Our work is to modify the magnetosome to carry with drug molecule. To detect them, we also fuse the yellow fluorescing protein to the membrane of magnetosome. Use additional magnetic field to fix the location of the drug molecule just in the cancer cell area in the human body. When the magnetosome and cancer cell combine, the drug molecule in the magnetosome will be released because we also fuse an antibody to the membrane protein of magnetosome. This antibody can cause the endocytosis, so the magnetosome as well as drug molecule are swallowed by the cancer cell.</p>
<p align="justify">Project Abstract: The mean point of our project is to utilize the magnetism of the magnetic bacteria to construct targeted medicine that can cure cancer. The magnetic bacteria can produce a membrane structure, magnetosome. Our work is to modify the magnetosome to carry with drug molecule. To detect them, we also fuse the yellow fluorescing protein to the membrane of magnetosome. Use additional magnetic field to fix the location of the drug molecule just in the cancer cell area in the human body. When the magnetosome and cancer cell combine, the drug molecule in the magnetosome will be released because we also fuse an antibody to the membrane protein of magnetosome. This antibody can cause the endocytosis, so the magnetosome as well as drug molecule are swallowed by the cancer cell.</p>
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<p align="justify">Group Member: Niu Fang, Kaifeng Bo</p>
<p align="justify">Group Member: Niu Fang, Kaifeng Bo</p>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
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<h5>Group "Pribnow box"</h5>
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<h3>Group "Pribnow box"</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Project Abstract: We want to explore the influence of the change of the consensus sequence in prokaryotes. The sequence is TATAAT.</p>
<p align="justify">Project Abstract: We want to explore the influence of the change of the consensus sequence in prokaryotes. The sequence is TATAAT.</p>
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<p align="justify">Group Member: Tiantian Zhou, Xiao Liu, Jiansi Gao, Hongyi You</p>
<p align="justify">Group Member: Tiantian Zhou, Xiao Liu, Jiansi Gao, Hongyi You</p>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
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<h5>Group "Methane synthesizer"</h5>
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<h3>Group "Methane synthesizer"</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Project Abstract: Our project aims to study the mechanisms and genetic nature of anaerobic archaea methanogens using small molecules such as CO2 and hydrogen to synthetizing methane. Transform its genetic code to make it a stronger ability to adapt to the environment and to be regulated, and increase their metabolism and reproductive efficiency to improve the efficiency of methane production. Building blocks to make it into sleep under aerobic conditions and make it back to active and produce much methane under high concentration of CO2 </p>
<p align="justify">Project Abstract: Our project aims to study the mechanisms and genetic nature of anaerobic archaea methanogens using small molecules such as CO2 and hydrogen to synthetizing methane. Transform its genetic code to make it a stronger ability to adapt to the environment and to be regulated, and increase their metabolism and reproductive efficiency to improve the efficiency of methane production. Building blocks to make it into sleep under aerobic conditions and make it back to active and produce much methane under high concentration of CO2 </p>
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<p align="justify">News links: ugrs.zju.edu.cn/redir.php?catalog_id=711156&object_id=751961</p>
<p align="justify">News links: ugrs.zju.edu.cn/redir.php?catalog_id=711156&object_id=751961</p>
<p align="justify">&nbsp;</p>
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<h5>High School</h5>
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<h3>High School</h3>
<p align="justify">&nbsp;</p>
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<h5>Hangzhou No.2 High School</h5>
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<h3>Hangzhou No.2 High School</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">Our High school visit back start from winter project: Group "Lignin Cinderella" went to the local high school, Hangzhou No.2 High School, delivered a presentation to the school’s biology interesting group. "Hangzhou No.2 High School has always enjoyed a high reputation in Zhejiang", in the group’s description, they mentioned that "and we’d been honored to take this as a start to introduce iGEM to all the excellent high schools in Hangzhou". Their discussion about synthetic biology triggered the interest of some high school students there, and we received emails from them. After that, two of them even pay a visit to our lab in summer, and participate our activity, "experience a real iGEM lab life".</p>
<p align="justify">Our High school visit back start from winter project: Group "Lignin Cinderella" went to the local high school, Hangzhou No.2 High School, delivered a presentation to the school’s biology interesting group. "Hangzhou No.2 High School has always enjoyed a high reputation in Zhejiang", in the group’s description, they mentioned that "and we’d been honored to take this as a start to introduce iGEM to all the excellent high schools in Hangzhou". Their discussion about synthetic biology triggered the interest of some high school students there, and we received emails from them. After that, two of them even pay a visit to our lab in summer, and participate our activity, "experience a real iGEM lab life".</p>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
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<h5>Qiushi Science Summer Camp</h5>
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<h3>Qiushi Science Summer Camp</h3>
<p align="justify">&nbsp;</p>
<p align="justify">&nbsp;</p>
<p align="justify">ZJU was the host for the Qiushi Science Summer Camp, where high school senior students came from around the country to study. As the host, ZJU gave us a chance to do a presentation about iGEM and our project. Some high school students who participate in our discussion were also gaven a brochure we made as a gift,  which about iGEM ZJU-China and our previous year projects. </p>
<p align="justify">ZJU was the host for the Qiushi Science Summer Camp, where high school senior students came from around the country to study. As the host, ZJU gave us a chance to do a presentation about iGEM and our project. Some high school students who participate in our discussion were also gaven a brochure we made as a gift,  which about iGEM ZJU-China and our previous year projects. </p>
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<div><img src="https://static.igem.org/mediawiki/2012/5/50/ZJU_HP_IGEM书签.jpg" width="500px"></div>
<div><img src="https://static.igem.org/mediawiki/2012/5/50/ZJU_HP_IGEM书签.jpg" width="500px"></div>
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<h5>Poster: </h5>
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<h3>Poster: </h3>
<div><img src="https://static.igem.org/mediawiki/2012/e/e2/ZJU_HP_Poster.JPG" width="500px"></div>
<div><img src="https://static.igem.org/mediawiki/2012/e/e2/ZJU_HP_Poster.JPG" width="500px"></div>

Revision as of 09:36, 26 September 2012

HUMAN PRACTICE

01 AT A GLANCE

02 EXPERIENCE A REAL IGEM

03 EXPLORE A NEW IGEM

04 COLLARATIONS

05 FUTURE WORK