Difference between revisions of "Team:Macquarie Australia"

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<h2>Project Description</h2>
 
<p>Our project has its focus on photosynthesis - the natural process where plants and algae convert sunlight into useable energy. By developing artificial photosynthesis in a biological system we can better harvest the unlimited supply of solar energy. The long-term goal is to engineer bacteria that can produce hydrogen gas on an industrial scale.</p>
 
<p>This year the aim of our team is to engineer bacteria to manufacture chlorophyll, the primary molecule of photosynthesis. Chlorophyll harvests light and is involved in the excitation transfer of energy. Chlorophyll-<i>a</i> can be synthesised via a pathway from the protoporphyrin-IX molecule. By placing 13 genes into 4 biobrick vectors we can recreate the pathway in <i>Escherichia coli</i>.</p>
 
  
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<h2>So You Think You Can Synthesise</h2>
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<p>Click below to visit our So You Think You Can Synthesise contest page!</p>
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<a href="https://2015.igem.org/Team:Macquarie_Australia/Practices/SYTYCS"><img src="https://static.igem.org/mediawiki/2015/a/a3/MqAust_SYTYCS_v07.png" width="400px" alt="Link to SYTYCS page"></a>
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    <h1 style="font-size: 80px;" class="font_0">Solar</h1>
  
<h2>Our team is supported by:</h2>
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<h1 style="font-size: 80px;" class="font_0">    Synthesisers</h1>
  
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    <h2 style="font-size: 20px;" class="font_2"><span style="font-size:20px;"><span style="font-family:helvetica-w01-light,helvetica-w02-light,sans-serif;">Our project has its focus on photosynthesis - the natural process where plants and algae convert sunlight into useable energy. By developing artificial photosynthesis in a biological system we can better harvest the unlimited supply of solar energy. The long-term goal is to engineer bacteria that can produce hydrogen gas on an industrial scale.</span></span></h2>
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<p style="font-size: 20px;" class="font_7"> </p>
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<p style="font-size: 20px;" class="font_7"><span style="font-size:20px;"><span style="font-family:helvetica-w01-light,helvetica-w02-light,sans-serif;">This year the aim of our team is to engineer bacteria to manufacture chlorophyll, the primary molecule of photosynthesis. Chlorophyll harvests light and is involved in the excitation transfer of energy. Chlorophyll-a can be synthesised via a pathway from the protoporphyrin-IX molecule. By placing 13 genes into 4 biobrick vectors we can recreate the pathway in Escherichia coli.</span></span></p>
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    <p style="font-size: 20px;" class="font_7"><span style="font-size:20px;"><span style="font-family:helvetica-w01-light,helvetica-w02-light,sans-serif;">Ever wondered how an igem lab really works? Watch the thrilling second installment of hit realitly show So You Think You Can Synthesise!</span></span></p>
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    <h2 style="font-size: 40px;" class="font_2"><span style="font-size:40px;">Meet Burpey</span></h2>
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    <p style="font-size: 20px;" class="font_7"><span style="font-size:20px;"><span style="font-family:helvetica-w01-light,helvetica-w02-light,sans-serif;">Our photosynthesising &amp; hydrogen burping mascot; part part algae, part fuel factory</span></span><span style="font-size:20px;"><span style="font-family:helvetica-w01-light,helvetica-w02-light,sans-serif;"> and all E.coli!</span></span></p>
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Revision as of 00:34, 13 August 2015

<!DOCTYPE html> igem3

Solar

Synthesisers

Project Description

Our project has its focus on photosynthesis - the natural process where plants and algae convert sunlight into useable energy. By developing artificial photosynthesis in a biological system we can better harvest the unlimited supply of solar energy. The long-term goal is to engineer bacteria that can produce hydrogen gas on an industrial scale.

This year the aim of our team is to engineer bacteria to manufacture chlorophyll, the primary molecule of photosynthesis. Chlorophyll harvests light and is involved in the excitation transfer of energy. Chlorophyll-a can be synthesised via a pathway from the protoporphyrin-IX molecule. By placing 13 genes into 4 biobrick vectors we can recreate the pathway in Escherichia coli.

View The Contest, Cast Your Vote, Have Your Say!

Ever wondered how an igem lab really works? Watch the thrilling second installment of hit realitly show So You Think You Can Synthesise!

Meet Burpey

Our photosynthesising & hydrogen burping mascot; part part algae, part fuel factory and all E.coli!

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