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Breakdown in spawning synchrony: A silent threat to coral persistence
Shlesinger, T.; Loya, Y. (2019). Breakdown in spawning synchrony: A silent threat to coral persistence. Science (Wash.) 365(6457): 1002-1007. https://dx.doi.org/10.1126/science.aax0110
In: Science (Washington). American Association for the Advancement of Science: New York, N.Y. ISSN 0036-8075; e-ISSN 1095-9203, meer
Is gerelateerd aan:
Fogarty, N.D.; Marhaver, K.L. (2019). Coral spawning, unsynchronized. Science (Wash.) 365(6457): 987-988. https://dx.doi.org/10.1126/science.aay7457, meer
Peer reviewed article  

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  • Shlesinger, T.
  • Loya, Y.

Abstract
    The impacts of human and natural disturbances on coral reefs are typically quantified through visible damage (e.g., reduced coral coverage as a result of bleaching events), but changes in environmental conditions may also cause damage in less visible ways. Despite the current paradigm, which suggests consistent, highly synchronized spawning events, corals that reproduce by broadcast spawning are particularly vulnerable because their reproductive phenology is governed by environmental cues. Here, we quantify coral spawning intensity during four annual reproductive seasons, alongside laboratory analyses at the polyp, colony, and population levels, and we demonstrate that, compared with historical data, several species from the Red Sea have lost their reproductive synchrony. Ultimately, such a synchrony breakdown reduces the probability of successful fertilization, leading to a dearth of new recruits, which may drive aging populations to extinction.

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