Tokyo/sunaba2
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[[Image:tokyotech3.JPG|700px]] | [[Image:tokyotech3.JPG|700px]] | ||
__NOTOC__ | __NOTOC__ | ||
- | <h1> ''' Abstruct''' </h1> | + | ==[[Tokyo_Tech|Abstruct]] [[Tokyo/Model|Concept & Model]] [[Tokyo/Requirements |Requirements]] [[Tokyo/Genetic circuit|Genetic_circuit]] [[Tokyo/Works|Works]] [[Tokyo/about our team|About_our_team]]== |
+ | |||
+ | <h1> '''Abstruct''' </h1> | ||
+ | |||
{| cellspacing="5" | {| cellspacing="5" | ||
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|width="500px" valign="top" | | |width="500px" valign="top" | | ||
- | == | + | ==1.[[Tokyo/Model|Concept & Model]]== |
- | ====We made a bacterial society that follows Pareto's principle as an [[Tokyo/ | + | ====We made a bacterial society that follows Pareto's principle as an [[Tokyo/Concepts|Ant society]] does.([[Tokyo/Model|more…]])==== |
- | <br>[[Image:TOP.JPG| | + | <br>[[Image:TOP.JPG|350px]] |
+ | ====1.coexistence==== | ||
+ | ====2.Removal of Worker==== | ||
+ | ====3.coexistence again==== | ||
+ | <br> | ||
+ | <br> | ||
- | == | + | ==2.[[Tokyo/Requirements |Requirements]]== |
- | ====Our requirements to construct this model are two things, bistability and coexistence by cell-cell communication.==== | + | ====Our requirements to construct this model are two things, bistability and coexistence by cell-cell communication.([[Tokyo/Requirements|more…]])==== |
- | + | <br>[[Image:Bistability.JPG|200px]][[Image:Coexistence.JPG|250px]] | |
+ | <!--メニュー--> | ||
+ | __NOTOC__ | ||
- | |||
- | ===[[Tokyo/ | + | ==3.[[Tokyo/Genetic circuit|Genetic circuit]]== |
- | ==== | + | ====We designed the genetic circuit to satisfy its requirements and developed [[Tokyo/new parts |new parts]] required ([[Tokyo/Genetic circuit|more…]]). ==== |
+ | <br>[[Image:Tokyo_genetic circuit_s.jpg|250px]] | ||
+ | |||
+ | ==== Our constructed parts are [[Tokyo/construction|Here]]!!! ==== | ||
+ | |||
+ | |||
+ | |width="500px" valign="top" | | ||
+ | |||
+ | ==4.[[Tokyo/Works|Works]]== | ||
+ | ====The simulation using parameters obtained from wet experiments for our brand-new part indicated that the whole system becomes unstable when there are only idlers left, and then, they can differentiate into either of workers and idlers. ([[Tokyo/Works|more…]])==== | ||
+ | |||
+ | ====<span style="color:#ff33cc;">Wet assay </span>==== | ||
+ | <br>[[Image:hill AHL.JPG|190px]]|[[Image:hill IPTG.JPG|190px]] | ||
+ | ====<span style="color:#0066ff;">Dry simulation </span>==== | ||
<br>[[Image:Tokyo_simulation_s2.jpg|350px]] | <br>[[Image:Tokyo_simulation_s2.jpg|350px]] | ||
- | + | ||
- | | | + | |
- | + | |} | |
- | == | + | |
- | + | <h1> ''' ''' </h1> | |
- | + | ==⇒[[Tokyo/No click version|"No click version"]]== |
Latest revision as of 11:27, 23 October 2007
Abstruct Concept & Model Requirements Genetic_circuit Works About_our_team
Abstruct
1.Concept & ModelWe made a bacterial society that follows Pareto's principle as an Ant society does.(more…)1.coexistence2.Removal of Worker3.coexistence again
2.RequirementsOur requirements to construct this model are two things, bistability and coexistence by cell-cell communication.(more…)
3.Genetic circuitWe designed the genetic circuit to satisfy its requirements and developed new parts required (more…).Our constructed parts are Here!!! |
4.WorksThe simulation using parameters obtained from wet experiments for our brand-new part indicated that the whole system becomes unstable when there are only idlers left, and then, they can differentiate into either of workers and idlers. (more…)Wet assayDry simulation
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