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Scaling Laws in Biology ? A scaling study of Slime Mould

Scaling Laws in Biology ? A scaling study of Slime Mould. 陳志強 中央研究院物理研究所 中央大學生物物理研究所 C. K. Chan Institute of Physics, Academia Sinica, Graduate Institute of Biophysics, National Central University. W. Chen. Emilia Hsu. P. Y. Lai. L C. Jia. Scaling Laws in Physics. Fractal Growth.

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Scaling Laws in Biology ? A scaling study of Slime Mould

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  1. Scaling Laws in Biology?A scaling study of Slime Mould 陳志強 中央研究院物理研究所 中央大學生物物理研究所 C. K. Chan Institute of Physics, Academia Sinica, Graduate Institute of Biophysics, National Central University

  2. W. Chen Emilia Hsu P. Y. Lai L C. Jia

  3. Scaling Laws in Physics

  4. Fractal Growth

  5. Scaling in Biology

  6. Heart Beats

  7. Gray and White Matter

  8. Scaling in Protein Network H. Jeong, et al. Nature, 411,41 (2001)

  9. Complex Systems

  10. Moore’s Law

  11. Importance of Allometric Scaling • Universal mechanism • Universal Structure Problems • Difficult to control • Difficult to compare Allometric Scaling in A Single Organism ?

  12. Dictyostelium Discoideum (Slime Mould) Common in Soils Wild type – NC4 Lab type – AX2 Feed on E. Coli Single Cellular(Ameoba) Starvation Multi-cellular (Slug) Allometric Scaling in Slug and Aggregation ?

  13. Experimental Setup

  14. Aggregation of dicty

  15. cAMP : Chemo-taxi for aggregation • secondary messenger in • cell activities • Accidental Discovery • By a graduate student ! • - Cells secret cAMP • - cAMP detector developed • - Movement towards high • cAMP concentration

  16. Remarks on cAMP • cAMP function not only as secondary messenger, but also a primary messenger. • Sensitive to even one molecule? • Similar to hearing? …

  17. Scaling of Slug Size

  18. Aggregation at high density

  19. Aggregation at low density

  20. Aggregation Time

  21. Distribution of Slugs • Culture with different densities • Harvest after 36 hour • Digital pictures • Population Regulation • self-similar shape • V = A*L but A = aL • V = bA3/2

  22. Density dependence of Slug size Upper critical size Lower critical size V ~ Alog(r/rcr) + V0

  23. Nearest Neighbour Model

  24. Voronoi Model

  25. Probability Distribution

  26. Summary • Mean size of slug is a function of plating density (competition?) • Distribution of size of slug can be fitted to a Voronoi distribution • Mean size of slug depends logarithmically on plating density • Existence of a critical plating density of about 10-4 /cm2 and min. slug size

  27. Adaptation and Weber’s Law

  28. cAMP – the signal 1. sense 2. relay 3. develop Alan. Science, vol 600, 6 June.p1525-1526.(2003)

  29. Martiel-Goldbeter-Levine Model rT– receptor density a - [ATP] b – int [cAMP] g – ext [cAMP] G – [CAR1]/ rT(0)

  30. Questions • How do the cells know the plating density? • How do the cells determine the aggregation territory ? • What determines the aggregation time? • How important is adaptation (Global Feedback)?

  31. Scaling of Velocity Distribution?

  32. Displacement Velocity of Non-interacting Random Walkers

  33. at 1hr at 5hr at 10hr at 15hr Aggregation at low density

  34. at 1hr at 5hr at 10hr at 15hr Aggregation at high density

  35. Velocity Scaling Data from Sawada’s Lab V ~ La a = 4/4

  36. Questions • Is there a universal cell displacement distribution when there is no cell-cell interaction? • Why there is scaling of V with slug size?

  37. Related Concepts/Tools learned in the School : • Chemotaxi/Protein Network • Signal Transduction • Adaptation/Evolution • Microfluidic devices • Micro-manipulations

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