Difference between revisions of "Team:Aix-Marseille/Description"

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{{Aix-Marseille}}
 
<h1>KILL XYLL</h1>
 
  
==Abstract==
 
 
'''KILL XYL''' is a cure against the disease caused by ''Xylella fastidiosa'', a plant pathogene. Actually, no extensive cure exist against this disease that causes the loss of thousands of hectares of European crops.
 
'''KILL XYL''' has the goal to detect the symptom of the disease, then use  specific phage-likes particles in order to inject toxins into ''X. fastidiosa''. Finally, with the help of fatty acid it quench the quorum sensing activity of the bacterium and with an enzyme it degrade the biofilm, which is the principal cause of plants death.
 
To be specific to ''X. fastidiosa'', '''KILL XYL''' use a specific phage like particle able to recognized the pili and some extracellular protein by which the bacterium can be identified in a background of millions.
 
 
==Motivation==
 
 
''Xylella fastidiosa'' is a bacterium that infects the xylem tissues of a wide range of plants. This bacterium has been widespread in the Americas for many years and occurs also in Asia. The bacterium is associated with several diseases of crops of economic significance, and has a wide range of host plants comprising 312 species.
 
 
''X. fastidiosa'' is transmitted from plant to plant by xylem sucking insects. The bacterium can persist in symptomless uncultivated plants, from which insects may acquire the bacterium and pass it to crops. Symptoms of disease are only observed when xylem vessels are highly colonized by the bacterium. The xylem transports water and soluble mineral, nutrients from the roots throughout the plant, and used to replace water lost during transpiration and photosynthesis. Xylem vessels are interconnected by bordered pits, which allow the passage of xylem sap, but block the passage of larger objects (such as bacterium) by a membrane.
 
 
The control of the movement of potential hosts and insect vectors and the eradication of infected material is considered the most effective method of limiting the spread of the disease in the European Union. But there is no method yet to cure the trees.
 
 
 
[[File:T--Aix-Marseille--Xylellaworld.png|900px]]Distribution map of ''Xylella fastidiosa'' worldwide.
 
 
 
==KILL XYL concept==
 
 
At Aix-Marseille University we thought about a solution that enclose many aspect of the cure.
 
 
First, we wanted to improve the detection of the disease, to do so we wanted to use a NDVI camera that will help us to see if the plant do photosynthesis or not. If the plant is heavily affected by ''Xylella fastidiosa'', it support a hydric stress that stop the photosynthesis.
 
 
Secondly, we want to get rid of the bacterium. Phages are natural predators of bacteria. They can also be used to transfect DNA into a bacterial cell. Phages has also the advantage of being specific to a strain and to be modulable. As we wanted to be eco-friendly, we create phage-likes particles, that aren't able to spread. Thus we have nanobots specific to ''Xylella fastidiosa'', capable to inject toxic genes into the bacterium.
 
 
The main cause of the plants death, is the hydric stress induced by the accumulation of biofilm into the xylem vessels. To disrupt the biofilm we thought about different solutions. The first one is to stop the bacterium producing any extra poly-saccharide. This could be achieved by quenching the quorum sensing of the bacterium with the help of a little fatty acid called : 2-cis-decenoic acid. Secondly, we wanted to destroy the exo-polysaccharids. An enzyme coming from a bacteriophage could fulfill the use by the hydrolysis of polysaccharides.
 
 
Hence, '''KILL XYLL''' simply detects, disrupt and kill ''Xylella fastidiosa''.
 
 
 
 
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<h1>Description</h1>
 
 
<p>Tell us about your project, describe what moves you and why this is something important for your team.</p>
 
 
 
<h5>What should this page contain?</h5>
 
<ul>
 
<li> A clear and concise description of your project.</li>
 
<li>A detailed explanation of why your team chose to work on this particular project.</li>
 
<li>References and sources to document your research.</li>
 
<li>Use illustrations and other visual resources to explain your project.</li>
 
</ul>
 
 
 
</div>
 
 
<div class="column full_size" >
 
 
<h5>Advice on writing your Project Description</h5>
 
 
<p>
 
We encourage you to put up a lot of information and content on your wiki, but we also encourage you to include summaries as much as possible. If you think of the sections in your project description as the sections in a publication, you should try to be consist, accurate and unambiguous in your achievements.
 
</p>
 
 
<p>
 
Judges like to read your wiki and know exactly what you have achieved. This is how you should think about these sections; from the point of view of the judge evaluating you at the end of the year.
 
</p>
 
 
</div>
 
 
 
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<h5>References</h5>
 
<p>iGEM teams are encouraged to record references you use during the course of your research. They should be posted somewhere on your wiki so that judges and other visitors can see how you thought about your project and what works inspired you.</p>
 
 
</div>
 
 
 
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<h5>Inspiration</h5>
 
<p>See how other teams have described and presented their projects: </p>
 
 
<ul>
 
<li><a href="https://2016.igem.org/Team:Imperial_College/Description">2016 Imperial College</a></li>
 
<li><a href="https://2016.igem.org/Team:Wageningen_UR/Description">2016 Wageningen UR</a></li>
 
<li><a href="https://2014.igem.org/Team:UC_Davis/Project_Overview"> 2014 UC Davis</a></li>
 
<li><a href="https://2014.igem.org/Team:SYSU-Software/Overview">2014 SYSU Software</a></li>
 
</ul>
 
</div>
 
 
 
 
</html>
 

Latest revision as of 13:11, 18 August 2017