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February 14, 2026Marine Pollution Bulletin1 citationsOpen Access

Maternal and paternal crude oil exposure differentially shapes early developmental transcriptomes and survival outcomes in Atlantic cod (Gadus morhua)

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CEClaudia ErhartJNJasmine NahrgangDODerrick Kwame Odei

Key Points

  • The study aims to understand how maternal and paternal crude oil exposure affects the development and survival of Atlantic cod offspring.
  • Exposed adult Atlantic cod to crude oil for 20 days before spawning
  • Conducted in vitro cross-fertilization to generate offspring
  • Analyzed transcriptome profiles from fertilization to hatching
  • Assessed cardiac function and morphology of hatchlings
  • Offspring from maternally exposed fish failed to survive to hatching
  • Eggs from exposed females were smaller with severe gene downregulation observed
  • Maternal transfer of petroleum hydrocarbons to oocytes was confirmed
  • Paternal exposure had minimal immediate effects but suggested larval survival issues

Abstract

Understanding the long-term biological consequences of crude oil exposure on marine fish is essential for the sustainability of ecologically and economically important species such as Atlantic cod (Gadus morhua). While the direct effects of crude oil on early life stages are well documented, adult reproductive vulnerability and intergenerational consequences remain poorly understood, despite their pivotal role in spawning stock viability. Paternal contributions to next-generation outcomes are particularly underexplored. This study examined how parental exposure to a water-soluble fraction of crude oil affects transcriptomic profiles and survival outcomes in Atlantic cod offspring. Adult fish were exposed for 20 days prior to spawning, and offspring were produced by in vitro cross-fertilization to generate four groups: control (unexposed parents), maternally exposed, paternally exposed and biparentally exposed. Embryos were reared under control conditions, and transcriptome profiles were analyzed from fertilization to hatching, alongside assessments of cardiac function and morphology post-hatch. Offspring from exposed females failed to survive to hatching. Eggs were smaller, and transcriptomic data revealed severe downregulation of genes involved in early developmental processes. Chemical analyses confirmed maternal transfer of a diverse range of petroleum aromatic hydrocarbons to oocytes. Our findings point to disrupted oocyte provisioning, likely linked to endocrine and epigenetic disturbances during oocyte maturation. Paternal exposure had minimal effect on RNA expression, and morphology at hatching. However, reduced survival in early larval stages suggests sublethal effects emerging later, possibly through epigenetic mechanisms, a hypothesis requiring further investigation.

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Cite This Study

Erhart et al. (2026) studied this question.

synapsesocial.com/papers/699010382ccff479cfe56c54https://doi.org/10.1016/j.marpolbul.2026.119374
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