Deep Sea hydrothermal vent habitats support gravid Antarctic krill

The long-term resilience of the Southern Ocean ecosystem relies on healthy populations of Antarctic krill, but climate change and increasing fishing pressure are placing this species at risk. Protecting Antarctic krill requires identification of key habitats for critical life history stages. Here, we present multiple lines of evidence that reproductively active female Antarctic krill utilize deep-sea hydrothermal vent habitats. Gravid females collected at Hook Ridge (Bransfield Strait) bore paired spermatophores and exhibited stable isotope signatures, microbial gut communities, and trace-metal profiles consistent with direct consumption of chemosynthetic microbes and prior visitation to vent sites. Complementary ROV footage from Quest Caldera (Scotia Arc) confirms that such vent use is not isolated. Collectively, our findings reveal a previously unrecognized role of vent habitats in the ecology of one of the Southern Ocean's most ecologically critical taxa and highlight the importance of incorporating vent-associated regions into marine protected area planning.

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Publication Details

Journal
Communications Biology
Published
2026-09-14
DOI
https://doi.org/10.1038/s42003-026-10780-1
Primary Topic
Marine Biology and Ecology Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Deep Sea hydrothermal vent habitats support gravid Antarctic krill

Salvatore Caprara, Kim S. Bernard, Laura E. Moore, Ângelo F. Bernardino et al.
Communications Biology
Marine Biology and Ecology Research
article

Deep Sea hydrothermal vent habitats support gravid Antarctic krill

Salvatore Caprara, Kim S. Bernard, Laura E. Moore, Ângelo F. Bernardino, Andrew R. Thurber, Rachel L Kaplan, Sarah Seabrook, Kristen N. Buck, Aaron Micallef, R. Ben Freiberger, Elizabeth Hogan
article en

Abstract

The long-term resilience of the Southern Ocean ecosystem relies on healthy populations of Antarctic krill, but climate change and increasing fishing pressure are placing this species at risk. Protecting Antarctic krill requires identification of key habitats for critical life history stages. Here, we present multiple lines of evidence that reproductively active female Antarctic krill utilize deep-sea hydrothermal vent habitats. Gravid females collected at Hook Ridge (Bransfield Strait) bore paired spermatophores and exhibited stable isotope signatures, microbial gut communities, and trace-metal profiles consistent with direct consumption of chemosynthetic microbes and prior visitation to vent sites. Complementary ROV footage from Quest Caldera (Scotia Arc) confirms that such vent use is not isolated. Collectively, our findings reveal a previously unrecognized role of vent habitats in the ecology of one of the Southern Ocean's most ecologically critical taxa and highlight the importance of incorporating vent-associated regions into marine protected area planning.

Communications BiologyVol. 9(1)
Oregon State University (US), Monterey Bay Aquarium Research Institute (US), University of California, Santa Barbara (US), National Geographic Society (US), Universidade Federal do Espírito Santo (BR), University of Otago (NZ)
National Science Foundation, National Geographic Society, Rolex, Schmidt Ocean Institute, University of California, Santa Barbara
Life below water
Openalex Percentile: Top 15%
Marine Biology and Ecology Research
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