• Title of article

    Fate of neuroblast progeny during postembryonic development of mushroom bodies in the house cricket, Acheta domesticus

  • Author/Authors

    Cayre، نويسنده , , Myriam and Malaterre، نويسنده , , Jordane and Charpin، نويسنده , , Pierre and Strambi، نويسنده , , Colette and Strambi، نويسنده , , Alain، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2000
  • Pages
    7
  • From page
    313
  • To page
    319
  • Abstract
    Mushroom bodies represent the main sensory integrative center of the insect brain and probably play a major role in the adaptation of behavioral responses to the environment. Taking into account the continuous neurogenesis of cricket mushroom bodies, we investigated ontogenesis of this brain structure. Using BrdU labeling, we examined the fate of neuroblast progeny during the postembryonic development. Preimaginal Kenyon cells survived throughout larval and imaginal moults and persisted during adulthood. Our results indicate that the location of labelled Kenyon cells in the cortex of the adult cricket mainly depends upon the period when they were produced during development. The present data demonstrate that cricket mushroom bodies grow from the inside out and that, at any developmental stage, the center of the cortex contains the youngest Kenyon cells. This study also allowed us to observe the occurrence of quiescent neuroblasts. Kenyon cell death during postembryonic and adult life seems to be reduced. Although preimaginal Kenyon cells largely contribute to adult mushroom body structure, a permanent remodeling of the mushroom body occurs throughout the whole insect life due to the persistence of neurogenesis in the house cricket. Further studies are needed to understand the functional significance of these findings.
  • Keywords
    neurogenesis , mushroom body , Acheta domesticus , Postembryonic development
  • Journal title
    Journal of Insect Physiology
  • Serial Year
    2000
  • Journal title
    Journal of Insect Physiology
  • Record number

    1411797