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February 5, 2026Biology Open0 citationsOpen Access

The impact of rearing environment on C. elegans : Phenotypic, transcriptomic and intergenerational responses to 3D enriched habitats

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AGAurélie GuisnetNHNour HalabyMcGill UniversityMRMaxime RivestMcGill University

Key Points

  • This research aims to understand how different rearing environments affect C. elegans biology, focusing on phenotypic and transcriptomic responses.
  • Compared C. elegans cultured in 3D decellularized fruit tissue to those raised on standard 2D agar plates.
  • Analyzed life history traits, including body size and reproductive strategies.
  • Performed RNA sequencing to identify transcriptional profiles.
  • Examined intergenerational inheritance of adapted traits.
  • Scaffold-grown worms exhibited reduced body size and altered reproductive strategies.
  • Increased stress resistance, enhanced burrowing ability, swimming kinematics, and exploratory behavior were observed in scaffold-grown worms.
  • Distinct transcriptional profiles between the two rearing conditions were identified, with changes occurring within one generation.
  • Some traits showed evidence of inheritance across generations.

Abstract

Environmental context profoundly influences organismal biology, yet laboratory studies often rely on simplified conditions that may not fully capture natural phenotypic repertoire. This exploratory study investigated how rearing environment affects various aspects of Caenorhabditis elegans biology by comparing worms cultured in three-dimensional decellularized fruit tissue scaffolds with those raised on standard two-dimensional agar plates. While fat content and feeding rate remained stable across conditions, other life history traits demonstrated varying degrees of plasticity in response to environmental context. We observed that scaffold-grown worms exhibited reduced body size, altered reproductive strategies, and mild enhancements in stress resistance, burrowing ability, swimming kinematics and exploratory behavior. RNA sequencing revealed distinct transcriptional profiles between scaffold-grown and agar-grown worms, with most changes arising within one generation. Some traits showed evidence of intergenerational inheritance. Our findings highlight the sensitivity of C. elegans biology to rearing conditions and underscore the importance of considering environmental context in interpreting laboratory results. This work sets the foundation for future research into the mechanisms underlying environmental adaptation and phenotypic plasticity in model organisms.

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Cite This Study

Guisnet et al. (2026) studied this question.

synapsesocial.com/papers/698434b4f1d9ada3c1fb32f2https://doi.org/10.1242/bio.062282
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