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Caribbean king crab larvae and juveniles show tolerance to ocean acidification and ocean warming

Philip M. Gravinese; Shelby A. Perry; Angelo Jason Spadaro; Albert E. Boyd; Ian C. Enochs
Marine Biology · Vol. 169, Issue 5 · 2022

Abstract

Coastal habitats are experiencing decreases in seawater pH and increases in temperature due to anthropogenic climate change. The Caribbean king crab, Maguimithrax spinosissimus , plays a vital role on Western Atlantic reefs by grazing macroalgae that competes for space with coral recruits. Therefore, identifying its tolerance to anthropogenic stressors is critically needed if this species is to be considered as a potential restoration management strategy in coral reef environments. We examined the effects of temperature (control: 28 °C and elevated: 31 °C) and pH (control: 8.0 and reduced pH: 7.7) on the king crab’s larval and early juvenile survival, molt-stage duration, and morphology in a fully crossed laboratory experiment. Survival to the megalopal stage was reduced (13.5% lower) in the combined reduced pH and elevated temperature treatment relative to the control. First-stage (J1) juveniles delayed molting by 1.5 days in the reduced pH treatment, while second-stage (J2) crabs molted 3 days earlier when exposed to elevated temperature. Juvenile morphology did not differ among treatments. These results suggests that juvenile king crabs are tolerant to changes associated with climate change. Given the important role of the king crab as a grazer of macroalgae, its tolerance to climate stressors suggests that it could benefit restoration efforts aimed at making coral reefs more resilient to increasingly warm and acidic oceans into the future.

Bibliographic Information

JournalMarine Biology
PublisherSpringer
Publication Date2022-05-01
Publication Year2022
Volume169
Issue5
Document TypeJournal Article
Print ISSN0025-3162
eISSN1432-1793
DOI10.1007/s00227-022-04053-8

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NARA Access Coverage1967-01-01~Current
Journal Homepagehttps://www.springer.com/journal/227
Publisher PageOpen Publisher Page
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