Difference between revisions of "Team:HUST-China"

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  Y.REEF</b><hr/></div>
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  Euk.cement</b><hr/></div>
  <div class="wenzi2" align="center">Y.Reef is artificial reef in the seabed utilizing our engineered strains to consolidate the sands automatically</div>
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  <div class="wenzi2" align="center">Euk.cement is artificial reef in the seabed utilizing our engineered strains to consolidate the sands automatically</div>
 
 
 
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         <h3><b>Description</b></h3>
 
         <h3><b>Description</b></h3>
 
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         <i><b>  Y.Reef</b></i> is artificial reef in the seabed utilizing our engineered strains to consolidate the sands automatically. With it, we are able to construct marine farms since the Bio.reef provides a platform for organisms to grow in the ocean. We can have marine products raising like sea cucumbers or edible sea grass. In this way, we not only attain economical boost but also increase the biodiversity and enhance the marine system.
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         With the expanding of human settlements and the development of civil engineering, the demand of novel cementation material is increasing rapidly. To echo such demand, we developed Euk.cement: a live eukaryotic cell based auto-cementation kit. By surface displayed silica binding peptides and secreted flocculating proteins, Euk.cement will target onto any silica containing particles, such as sands and rocks, and stick them together. This system will be automatically initiated only in dark with a light operated switch. While carbon dioxide released from the metabolism of cells will finally complete the calcium carbonate sedimentation. This economical and ecological friendly innovation can be utilized for a wide range of industrial or environmental applications, such as construction and restoration of building foundations, bridge piers, or even artificial reefs for aquaculture. Since we have exploited a new kind of marine yeast as chassis, the application field of eukaryotic synthetic biology has then been considerably broadened.
 
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Revision as of 14:12, 4 August 2015

team:iGEM-HUST:home










Euk.cement

Euk.cement is artificial reef in the seabed utilizing our engineered strains to consolidate the sands automatically

Description

With the expanding of human settlements and the development of civil engineering, the demand of novel cementation material is increasing rapidly. To echo such demand, we developed Euk.cement: a live eukaryotic cell based auto-cementation kit. By surface displayed silica binding peptides and secreted flocculating proteins, Euk.cement will target onto any silica containing particles, such as sands and rocks, and stick them together. This system will be automatically initiated only in dark with a light operated switch. While carbon dioxide released from the metabolism of cells will finally complete the calcium carbonate sedimentation. This economical and ecological friendly innovation can be utilized for a wide range of industrial or environmental applications, such as construction and restoration of building foundations, bridge piers, or even artificial reefs for aquaculture. Since we have exploited a new kind of marine yeast as chassis, the application field of eukaryotic synthetic biology has then been considerably broadened.

About Us

When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.






Fixing
When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.

Fixing
When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.

Fixing
When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.

Fixing
When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.

Fixing
When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.

Fixing
When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.

Consilidation

When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration. When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration. When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration. When combining parts and modules to create larger scale systems, crosstalk and host overload often get in the way. In our project, we propose an elegant method to implement system integration.
contact us
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