4.4 Article

Biomixing by Chemotaxis and Enhancement of Biological Reactions

期刊

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/03605302.2011.589879

关键词

Biological reactions; Chemotaxis; Mixing; Reaction enhancement

资金

  1. NSF [DMS-0653813, DMS-0908507]
  2. Institute for Mathematics
  3. Direct For Mathematical & Physical Scien
  4. Division Of Mathematical Sciences [1453199] Funding Source: National Science Foundation
  5. Division Of Mathematical Sciences
  6. Direct For Mathematical & Physical Scien [1104415, 1015831] Funding Source: National Science Foundation

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Many phenomena in biology involve both reactions and chemotaxis. These processes can clearly influence each other, and chemotaxis can play an important role in sustaining and speeding up the reaction. However, to the best of our knowledge, the question of reaction enhancement by chemotaxis has not yet received extensive treatment either analytically or numerically. We consider a model with a single density function involving diffusion, advection, chemotaxis, and absorbing reaction. The model is motivated, in particular, by studies of coral broadcast spawning, where experimental observations of the efficiency of fertilization rates significantly exceed the data obtained from numerical models that do not take chemotaxis (attraction of sperm gametes by a chemical secreted by egg gametes) into account. We prove that in the framework of our model, chemotaxis plays a crucial role. There is a rigid limit to how much the fertilization efficiency can be enhanced if there is no chemotaxis but only advection and diffusion. On the other hand, when chemotaxis is present, the fertilization rate can be arbitrarily close to being complete provided that the chemotactic attraction is sufficiently strong. Moreover, an interesting feature of the estimates on fertilization rate and timescales in the chemotactic case is that they do not depend on the amplitude of the reaction term.

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