Early life malnutrition and fluctuating asymmetry in the rat bony labyrinth

Devin L Ward1, Lauren Schroeder2, Emma Pomeroy3

  • 1Department of Anthropology, University of Toronto, Toronto, Ontario, Canada.

Insights

Maternal malnutrition did not affect offspring bony labyrinth shape or fluctuating asymmetry (FA). Bony labyrinth morphology appears stable, suggesting other factors influence intraspecific variation.

Area of Science:

  • Developmental biology
  • Comparative anatomy
  • Evolutionary biology

Background:

  • Maternal malnutrition during gestation and lactation can negatively impact offspring development.
  • Bony labyrinth morphology is a stable indicator used to assess locomotion, hearing, and phylogeny.
  • Intraspecific variation in bony labyrinth shape remains partially unexplained.

Purpose of the Study:

  • To evaluate the impact of maternal diet on offspring bony labyrinth morphology.
  • To test if poor maternal diet increases fluctuating asymmetry (FA) in the bony labyrinth.
  • To determine if maternal diet influences unilateral shape differences in the bony labyrinth.

Main Methods:

  • Two groups of rats (Rattus norvegicus) were used: a control group and a protein-restricted diet group.
  • Offspring were sampled at weaning, sexual maturity, and old age.
  • Procrustes analysis of variance and principal components analysis were employed to measure FA and shape differences.

Main Results:

  • Statistically significant FA was identified in all diet-age subgroups.
  • No differences in FA levels were found among the subgroups, rejecting the hypothesis that poor maternal diet increases FA.
  • No unilateral shape differences were identified, supporting the hypothesis of no diet-related asymmetry.

Conclusions:

  • Bony labyrinth morphology demonstrates remarkable stability and is likely protected from poor maternal diet during development.
  • The study rejects the hypothesis that maternal malnutrition directly impacts bony labyrinth fluctuating asymmetry or shape.
  • Further research is needed to identify other factors contributing to intraspecific variation in labyrinthine shape.

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