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Journal Article

Ocean acidification reduces induction of coral settlement by crustose coralline algae

Nicole S. Webster; Sven Uthicke; Emanuelle S. Botté; Florita Flores; Andrew P. Negri
Global Change Biology · Vol. 19, Issue 1 · pp. 303-315 · 2013

Abstract

Crustose coralline algae ( CCA ) are a critical component of coral reefs as they accrete carbonate for reef structure and act as settlement substrata for many invertebrates including corals. CCA host a diversity of microorganisms that can also play a role in coral settlement and metamorphosis processes. Although the sensitivity of CCA to ocean acidification ( OA ) is well established, the response of their associated microbial communities to reduced pH and increased CO 2 was previously not known. Here we investigate the sensitivity of CCA ‐associated microbial biofilms to OA and determine whether or not OA adversely affects the ability of CCA to induce coral larval metamorphosis. We experimentally exposed the CCA H ydrolithon onkodes to four pH / p CO 2 conditions consistent with current IPCC predictions for the next few centuries ( pH : 8.1, 7.9, 7.7, 7.5, p CO 2 : 464, 822, 1187, 1638 μatm). Settlement and metamorphosis of coral larvae was reduced on CCA pre‐exposed to pH 7.7 ( p CO 2 = 1187 μatm) and below over a 6‐week period. Additional experiments demonstrated that low pH treatments did not directly affect the ability of larvae to settle, but instead most likely altered the biochemistry of the CCA or its microbial associates. Detailed microbial community analysis of the CCA revealed diverse bacterial assemblages that altered significantly between pH 8.1 ( p CO 2 = 464 μatm) and pH 7.9 ( p CO 2 = 822 μatm) with this trend continuing at lower pH /higher p CO 2 treatments. The shift in microbial community composition primarily comprised changes in the abundance of the dominant microbes between the different pH treatments and the appearance of new (but rare) microbes at pH 7.5. Microbial shifts and the concomitant reduced ability of CCA to induce coral settlement under OA conditions projected to occur by 2100 is a significant concern for the development, maintenance and recovery of reefs globally.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2013-01-01
Publication Year2013
Volume19
Issue1
Pages303-315
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.12008
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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