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Transgenerational adaptation to ocean acidification determines the susceptibility of filter-feeding rotifers to nanoplastics

  • Min-Sub Kim
  • , Young Hwan Lee
  • , Yoseop Lee
  • , Eunjin Byeon
  • , Duck-Hyun Kim
  • , Minghua Wang
  • , Atsushi Hagiwara
  • , Manuel Aranda
  • , Rudolf Shiu Sun Wu
  • , Heum Gi Park
  • , Jae-Seong Lee*
  • *Corresponding author for this work

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    Abstract

    The adaptation of marine organisms to the impending challenges presented by ocean acidification (OA) is essential for their future survival, and mechanisms underlying OA adaptation have been reported in several marine organisms. In the natural environment, however, marine organisms are often exposed to a combination of environmental stressors, and the interactions between adaptive responses have yet to be elucidated. Here, we investigated the susceptibility of filter-feeding rotifers to short-term (ST) and long-term (LT) (≥180 generations) high CO2 conditions coupled with nanoplastic (NPs) exposure (ST+ and LT+). Adaptation of rotifers to elevated CO2 caused differences in ingestion and accumulation of NPs, resulting in a significantly different mode of action on in vivo endpoints between the ST+ and LT+ groups. Moreover, microRNA-mediated epigenetic regulation was strongly correlated with the varied adaptive responses between the ST+ and LT+ groups, revealing novel regulatory targets and pathways. Our results indicate that pre-exposure history to increased CO2 levels is an important factor in the susceptibility of rotifers to NPs. © 2023 Elsevier B.V.
    Original languageEnglish
    Article number132593
    JournalJournal of Hazardous Materials
    Volume461
    Online published21 Sept 2023
    DOIs
    Publication statusPublished - 5 Jan 2024

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 14 - Life Below Water
      SDG 14 Life Below Water

    Research Keywords

    • Nanoplastic
    • Ocean acidification
    • Rotifers
    • Transgenerational adaptation

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