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Journal Article

Fertilisation kinetics among common Indo-Pacific broadcast spawning corals with distinct and shared functional traits

Elizabeth Buccheri; Gerard F. Ricardo; Russell C. Babcock; Peter J. Mumby; Christopher Doropoulos
Coral Reefs · Vol. 42, Issue 6 · pp. 1351-1363 · 2023

Abstract

Indo-Pacific corals predominantly reproduce using synchronous mass spawning events to maximise fertilisation. However, as disturbances continue to thin population densities, the quantities of gametes released declines and colonies become more isolated, reducing the likelihood of cross-fertilisation. Local hydrodynamic conditions can promote or inhibit gamete contact; thus, the interaction between the abiotic environment and sperm density will determine the amount of time gametes interact. In this study, we investigated the sensitivity of reproduction to manipulations of two key limiting factors of fertilisation: sperm concentration and contact time between gametes. We explored fertilisation kinetics of phylogenetically and functionally similar and diverse coral taxa on the Great Barrier Reef and Western Australia ( Acropora digitifera, A. tenuis ; Coelastrea aspera, Platygyra daedalea ). Results indicate that fertilisation is optimised at sperm concentrations > 10 3 sperm mL −1 and contact times > 30 s, but the extent of these relationships is species-specific. All species showed clear differences in fertilisation success across contact times, although these differences were less distinct for A. tenuis and P. daedalea at very high sperm concentrations. Acropora digitifera and P. daedalea exhibited nonlinear trends with steep slopes of increased fertilisation success once sperm concentration surpassed values of 10 4 sperm mL −1 and 10 2 sperm mL −1 , respectively, followed by slight declines. Acropora tenuis and A. digitifera had the highest maximum fertilisation success, likely owing to beneficial evolved functional traits like large egg sizes. The present analysis underpins studies of fertilisation kinetics in natural reef populations to help inform management and restoration practices that assist population resilience and recovery.

Bibliographic Information

JournalCoral Reefs
PublisherSpringer
Publication Date2023-12-01
Publication Year2023
Volume42
Issue6
Pages1351-1363
Document TypeJournal Article
Print ISSN0722-4028
eISSN1432-0975
DOI10.1007/s00338-023-02431-2

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NARA Access Coverage1982-01-01~Current
Journal Homepagehttps://www.springer.com/journal/338
Publisher PageOpen Publisher Page
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