TY - JOUR
T1 - An observation method for autonomous signaling- mediated synthetic diversification in escherichia coli
AU - Sekine, Ryoji
AU - Ayukawa, Shotaro
AU - Kiga, Daisuke
N1 - Publisher Copyright:
© Springer Science+Business Media New York 2014.
PY - 2014
Y1 - 2014
N2 - Phenotypic diversification of cells in development and regeneration is conceptually modeled by the motion of marbles rolling down valleys on the Waddington landscape, the main feature of which is bifurcations of the valleys. We have experimentally shown that this feature is sufficient to achieve phenotypic diversification by the construction of a synthetic phenotypic diversification system in Escherichia coli . Cells containing the synthetic phenotypic diversification system were diversified into two distinct cell states, high and low, through autonomous signaling-mediated bifurcation, when all cells were initialized to the low state. In this chapter, we illustrate the detailed experimental procedures involved in the initialization of cells and the observation of the phenotypic diversification.
AB - Phenotypic diversification of cells in development and regeneration is conceptually modeled by the motion of marbles rolling down valleys on the Waddington landscape, the main feature of which is bifurcations of the valleys. We have experimentally shown that this feature is sufficient to achieve phenotypic diversification by the construction of a synthetic phenotypic diversification system in Escherichia coli . Cells containing the synthetic phenotypic diversification system were diversified into two distinct cell states, high and low, through autonomous signaling-mediated bifurcation, when all cells were initialized to the low state. In this chapter, we illustrate the detailed experimental procedures involved in the initialization of cells and the observation of the phenotypic diversification.
KW - Bifurcation
KW - Epigenetic landscape
KW - Intercellular signaling
KW - Phenotypic diversification
KW - Synthetic biology
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U2 - 10.1007/978-1-4939-0554-6_5
DO - 10.1007/978-1-4939-0554-6_5
M3 - Article
C2 - 24838879
AN - SCOPUS:84922394685
SN - 1064-3745
VL - 1151
SP - 69
EP - 74
JO - Methods in Molecular Biology
JF - Methods in Molecular Biology
ER -