• Title of article

    Damage segregation at fissioning may increase growth rates: A superprocess model

  • Author/Authors

    Steven N. Evans، نويسنده , , David Steinsaltz، نويسنده ,

  • Issue Information
    دوماهنامه با شماره پیاپی سال 2007
  • Pages
    18
  • From page
    473
  • To page
    490
  • Abstract
    A fissioning organism may purge unrepairable damage by bequeathing it preferentially to one of its daughters. Using the mathematical formalism of superprocesses, we propose a flexible class of analytically tractable models that allow quite general effects of damage on death rates and splitting rates and similarly general damage segregation mechanisms. We show that, in a suitable regime, the effects of randomness in damage segregation at fissioning are indistinguishable from those of randomness in the mechanism of damage accumulation during the organismʹs lifetime. Moreover, the optimal population growth is achieved for a particular finite, non-zero level of combined randomness from these two sources. In particular, when damage accumulates deterministically, optimal population growth is achieved by a moderately unequal division of damage between the daughters, while too little or too much division is sub-optimal. Connections are drawn both to recent experimental results on inheritance of damage in protozoans, and to theories of aging and resource division between siblings.
  • Keywords
    Damage accumulation , asymptotic growth , intergenerational transfers , aging , Bacteria , Superprocess
  • Journal title
    Theoretical Population Biology
  • Serial Year
    2007
  • Journal title
    Theoretical Population Biology
  • Record number

    773988