4.7 Article

Ocean pH fluctuations affect mussel larvae at key developmental transitions

出版社

ROYAL SOC
DOI: 10.1098/rspb.2018.2381

关键词

ocean acidification; pH fluctuations; mollusc; development; shell field; trochophore

资金

  1. US National Science Foundation (NSF) [OCE-1521597]
  2. European Commission Horizon 2020 Marie Sklodowska-Curie Action [747637]
  3. US Department of Education [200A150101]
  4. NSF Graduate Research Fellowship [1000198423]
  5. Erasmusthorn traineeship scholarship (University of Genova)
  6. Observatoire Oceanologique de Villefranche
  7. Marie Curie Actions (MSCA) [747637] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

Coastal marine ecosystems experience dynamic fluctuations in seawater carbonate chemistry. The importance of this variation in the context of ocean acidification requires knowing what aspect of variability biological processes respond to. We conducted four experiments (ranging from 3 to 22 days) with different variability regimes (pHT 7.4-8.1) assessing the impact of diel fluctuations in carbonate chemistry on the early development of the mussel Mytilus galloprovincialis. Larval shell growth was consistently correlated to mean exposures, regardless of variability regimes, indicating that calcification responds instantaneously to seawater chemistry. Larval development was impacted by timing of exposure, revealing sensitivity of two developmental processes: development of the shell field, and transition from the first to the second larval shell. Fluorescent staining revealed developmental delay of the shell field at low pH, and abnormal development thereof was correlated with hinge defects in D-veligers. This study shows, for the first time, that ocean acidification affects larval soft-tissue development, independent from calcification. Multiple developmental processes additively underpin the teratogenic effect of ocean acidification on bivalve larvae. These results explain why trochophores are the most sensitive life-history stage in marine bivalves and suggest that short-term variability in carbonate chemistry can impact early larval development.

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