# Antarctic macroalgal-associated amphipod assemblages exhibit long-term resistance to ocean acidification

**Authors:** Hannah E. Oswalt, Julie B. Schram, Margaret O. Amsler, Charles D. Amsler, James B. McClintock

PMC · DOI: 10.7717/peerj.19368 · PeerJ · 2025-05-13

## TL;DR

Antarctic amphipods living on macroalgae show no significant decline under long-term ocean acidification, suggesting they may be resistant to future pH changes.

## Contribution

Demonstrates long-term resistance of amphipod assemblages to ocean acidification in Antarctic macroalgal habitats.

## Key findings

- Amphipod assemblage numbers remained similar across different pH treatments.
- Species proportions within the assemblage were unaffected by pH changes.
- Results suggest resistance to long-term acidification in these Antarctic amphipods.

## Abstract

The pH of the world’s oceans has decreased since the Industrial Revolution due to the oceanic uptake of increased atmospheric CO2 in a process called ocean acidification. Low pH has been linked to negative impacts on the calcification, growth, and survival of calcifying invertebrates. Along the Western Antarctic Peninsula, dominant brown macroalgae often shelter large numbers of diverse invertebrate mesograzers, many of which are calcified. Mesograzer assemblages in this region are often composed of large numbers of amphipods which have key roles in Antarctic macroalgal communities. Understanding the impacts of acidification on amphipods is vital for understanding how these communities will be impacted by climate change. To assess how long-term acidification may influence the survival of different members in these assemblages, mesograzers, particularly amphipods, associated with the brown alga Desmarestia menziesii were collected from the immediate vicinity of Palmer Station, Antarctica (S64°46′, W64°03′) in January 2020 and maintained under three different pH treatments simulating ambient conditions (approximately pH 8.1), near-future conditions for 2100 (pH 7.7), and distant future conditions (pH 7.3) for 52 days then enumerated. Total assemblage number and the relative proportion of each species in the assemblage were found to be similar across the pH treatments. These results suggest that amphipod assemblages associated with D. menziesii may be resistant to long-term exposure to decreased pH.

## Linked entities

- **Species:** Desmarestia menziesii (taxon 62307)

## Full-text entities

- **Diseases:** calcification (MESH:D002114)
- **Chemicals:** CO2 (MESH:D002245)
- **Species:** Desmarestia menziesii (species) [taxon 62307]

## Full text

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## References

106 references — full list in the complete paper: https://tomesphere.com/paper/PMC12083470/full.md

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Source: https://tomesphere.com/paper/PMC12083470