Team:Groningen

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<center><html><h1>Toxic metal scavenger with a vertical gas drive</h1></html></center> '''You can click on the names of the individual parts in the image below to learn more about the different parts of our system.'''<div title="Arsie Says UP TO TRANSPORT" style="float:right" >{{linkedImage|Next.JPG|Team:Groningen/Project/Transport}}</div>
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<h1>Heavy metal scavengers<!-- with a vertical gas drive--></h1>
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Human health and the environment are endangered by heavy metal pollution in water and sediment. To battle this problem, a '''purification strategy''', in which arsenic, zinc and copper are removed from water and sediment, was developed. This strategy encompasses a biological device in which <i>E. coli</i> bacteria accumulate metal ions from solutions, after which they '''produce gas vesicles''' and '''start floating'''. This biological device consists of two integrated systems: one for metal uptake and storage, the other for metal induced buoyancy. The uptake and storage system consists of a [[Team:Groningen/Project/Transport|metal transporter]] and [[Team:Groningen/Project/Accumulation|metal binding proteins]] (to reduce toxicity and increase accumulation). The buoyancy system is made up of a [[Team:Groningen/Project/Promoters|metal induced promotor]] in front of a [[Team:Groningen/Project/Vesicle|gas vesicle gene cluster]]. The combination of both systems will enable the efficient cleaning of polluted water and sediment in a biological manner.  
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<li id="arsenic"></html>It all starts with [[Team:Groningen/Vision|arsenic]] in solution.<html></li>
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<li id="transport"></html>[[Team:Groningen/Project/Transport|Metal transport]]<html></li>
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<li id="accumulation"></html>[[Team:Groningen/Project/Accumulation|Metal accumulation]]<html></li>
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<li id="gas"></html>[[Team:Groningen/Project/Vesicle|Gas Vesicle]]<html></li>
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<li id="promoter"></html>[[Team:Groningen/Project/Promoters|Metal sensitive promoters]]<html></li>
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Heavy metal pollution in water and sediment endangers human health and the environment. To battle this problem a purification strategy, in which arsenic, zinc and copper are removed from water and sediment, was developed. This strategy encompasses a biological device in which <i>E. coli</i> bacteria accumulate metal ions from solutions, after which they produce gas vesicles and start floating. This biological device consists of two integrated systems: one for metal uptake and storage, the other for metal induced buoyancy. The uptake and storage system consists of a metal transporter and metallothioneins (metal accumulators). The buoyancy system is made up of a metal induced promotor in front of a gas vesicle gene cluster. The combination of both systems will enable the efficient cleaning of polluted water and sediment in a biological manner.
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Latest revision as of 11:46, 16 November 2009

Title_front.png

Heavy metal scavengers

Human health and the environment are endangered by heavy metal pollution in water and sediment. To battle this problem, a purification strategy, in which arsenic, zinc and copper are removed from water and sediment, was developed. This strategy encompasses a biological device in which E. coli bacteria accumulate metal ions from solutions, after which they produce gas vesicles and start floating. This biological device consists of two integrated systems: one for metal uptake and storage, the other for metal induced buoyancy. The uptake and storage system consists of a metal transporter and metal binding proteins (to reduce toxicity and increase accumulation). The buoyancy system is made up of a metal induced promotor in front of a gas vesicle gene cluster. The combination of both systems will enable the efficient cleaning of polluted water and sediment in a biological manner.

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Project_front.png Team_front.png Model_front.png Ethics.png Bricks.png