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<a href = "/Team:Arizona_State/Team"><button class = "button1 btn">Our Team</button></a> | <a href = "/Team:Arizona_State/Team"><button class = "button1 btn">Our Team</button></a> | ||
<!--<input type="button1" class="btn btn-default button button1" style="background-color:maroon; margin-left:5%; margin-bottom:0%; height:50px; width: 75px" value="The Team!" onclick="window.location.href='https://2016.igem.org/Team:Arizona_State/Team';"/>--> | <!--<input type="button1" class="btn btn-default button button1" style="background-color:maroon; margin-left:5%; margin-bottom:0%; height:50px; width: 75px" value="The Team!" onclick="window.location.href='https://2016.igem.org/Team:Arizona_State/Team';"/>--> | ||
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+ | <h4>Check out our Wordpress blog at <a href="https://asuigem.wordpress.com">https://asuigem.wordpress.com</a></h4> | ||
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Revision as of 22:53, 23 September 2016
Our Project
Quorom sensing (QS) allows bacteria to sense the surrounding cell population and "communicate" with their neighbors. Bacteria do this by releasing an inducer protein, such as a homo-serine lactone (HSL), which upon reaching a certain concentration, will activate genes that increase cell density. Our project aims to characterize a variety of HSL networks, increasing the number of functional QS systems with minimal crosstalk in synthetic biology.