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We previously stated that dynamically organized phenomena are visualized as being spatio-temporal coherent. Several mechanisms are at the origin of this bottom-up coherence, that we briefly describe. g. second messengers or ions, may arise through a combination of amplification in biochemical reaction networks and its spatial spreading through diffusion or percolation. , 1999, 2000). Under these conditions, transduction (sensitivity amplification) and coherence (spatio-temporal waves) mutually cooperate.

Reddy and Thomas, 1996 Arabidopsis Medium chain thaliana length polyhydroxyalkanoates β-oxidation of plant fatty acids generate various R-3-hydroxyacyl-CoA that serve as precursors of polyhydroxyalkanoates in plants transformed with polyhydroxyalkanoate synthase (PhaC1) synthase from Pseudomonas aeruginosa and the gene products were directed to peroxisomes and glyoxysomes. , 1998 L-alanin Lactococcus lactis Bacillus sphaericus alanine dehydrogenase was introduced into a L. lactis strain deficient in lactate dehydrogenase shifting the carbon fate from lactate toward alanine.

2001). 5. Dynamic organisation in cells or tissues, is thus an emergent property arising from transitions between levels of organisation at bifurcation points in the dynamics of biological processes. , enzyme activity, synthesis of macromolecules, cell division; all indicated as spheres in the plot), resulting from the functioning of those processes on different spatio-temporal scales, (levels of organisation). The dotted lines that link the spheres, (different subcellular processes), indicate the coupling between them.

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