Published August 2021 | Version v1
Journal article

Toxicity and developmental effects of Arctic fuel oil types on early life stages of Atlantic cod (Gadus morhua)

  • 1. SINTEF Ocean, Climate and Environment, Trondheim (Norway)
  • 2. Norwegian University of Science and Technology, Department of Biology, Trondheim (Norway)

Description

Highlights: • Short-term embryonic exposure of cod three different marine fuel oils. • AhR-, and angio- and osteogenesis gene batteries were studied in relation to phenotypic outcomes. • Comparable toxicological response trends observed for heavy fuel oil and low sulphur containing distillate fuel oils. • Effects on hatching and larvae morphology displayed higher sensitivity than molecular effects. Due to the heavy fuel oil (HFO) ban in Arctic maritime transport and new legislations restricting the sulphur content of fuel oils, new fuel oil types are continuously developed. However, the potential impacts of these new fuel oil types on marine ecosystems during accidental spills are largely unknown. In this study, we studied the toxicity of three marine fuel oils (two marine gas oils with low sulphur contents and a heavy fuel oil) in early life stages of cod (Gadus morhua). Embryos were exposed for 4 days to water-soluble fractions of fuel oils at concentrations ranging from 4.1 - 128.3 µg TPAH/L, followed by recovery in clean seawater until 17 days post fertilization. Exposure to all three fuel oils resulted in developmental toxicity, including severe morphological changes, deformations and cardiotoxicity. To assess underlying molecular mechanisms, we studied fuel oil-mediated activation of aryl hydrocarbon receptor (Ahr) gene battery and genes related to cardiovascular, angiogenesis and osteogenesis pathways. Overall, our results suggest comparable mechanisms of toxicity for the three fuel oils. All fuel oils caused concentration-dependant increases of cyp1a mRNA which paralleled ahrr, but not ahr1b transcript expression. On the angiogenesis and osteogenesis pathways, fuel oils produced concentration-specific transcriptional effects that were either increasing or decreasing, compared to control embryos. Based on the observed toxic responses, toxicity threshold values were estimated for individual endpoints to assess the most sensitive molecular and physiological effects, suggesting that unresolved petrogenic components may be significant contributors to the observed toxicity.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.aquatox.2021.105881

Additional details

Identifiers

DOI
10.1016/j.aquatox.2021.105881;
PII
S0166445X21001405;

Publishing Information

Journal Title
Aquatic Toxicology
Journal Volume
237
Journal Page Range
vp.
ISSN
0166-445X
CODEN
AQTODG

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
53109051
Subject category
S60: APPLIED LIFE SCIENCES;
Descriptors DEI
DEFORMATION; FERTILIZATION; HATCHING; HEATING OILS; LARVAE; MORPHOLOGY; RESIDUAL FUELS; SENSITIVITY
Descriptors DEC
DISTILLATES; ENERGY SOURCES; FOSSIL FUELS; FUEL OILS; FUELS; GAS OILS; LIQUID FUELS; PETROLEUM; PETROLEUM DISTILLATES; PETROLEUM FRACTIONS; PETROLEUM PRODUCTS

Optional Information

Copyright
Copyright (c) 2021 The Author(s). Published by Elsevier B.V.