Correlation Engine 2.0
Clear Search sequence regions


  • alga (7)
  • anthozoa (1)
  • biofilms (1)
  • ethanol (2)
  • larva (1)
  • metamorphosis (2)
  • morphogenesis (1)
  • rhodophyta (1)
  • spp (1)
  • taxa (2)
  • Sizes of these terms reflect their relevance to your search.

    Healthy benthic substrates that induce coral larvae to settle are necessary for coral recovery. Yet, the biochemical cues required to induce coral settlement have not been identified for many taxa. Here we tested the ability of the crustose coralline alga (CCA) Porolithon onkodes to induce attachment and metamorphosis, collectively termed settlement, of larvae from 15 ecologically important coral species from the families Acroporidae, Merulinidae, Poritidae, and Diploastreidae. Live CCA fragments, ethanol extracts, and hot aqueous extracts of P. onkodes induced settlement (> 10%) for 11, 7, and 6 coral species, respectively. Live CCA fragments were the most effective inducer, achieving over 50% settlement for nine species. The strongest settlement responses were observed in Acropora spp.; the only non-acroporid species that settled over 50% were Diploastrea heliopora, Goniastrea retiformis, and Dipsastraea pallida. Larval settlement was reduced in treatments with chemical extracts compared with live CCA, although high settlement (> 50%) was reported for six acroporid species in response to ethanol extracts of CCA. All experimental treatments failed (< 10%) to induce settlement in Montipora aequituberculata, Mycedium elephantotus, and Porites cylindrica. Individual species responded heterogeneously to all treatments, suggesting that none of the cues represent a universal settlement inducer. These results challenge the commonly-held notion that CCA ubiquitously induces coral settlement, and emphasize the critical need to assess additional cues to identify natural settlement inducers for a broad range of coral taxa.

    Citation

    Taylor N Whitman, Andrew P Negri, David G Bourne, Carly J Randall. Settlement of larvae from four families of corals in response to a crustose coralline alga and its biochemical morphogens. Scientific reports. 2020 Oct 02;10(1):16397

    Expand section icon Mesh Tags


    PMID: 33009428

    View Full Text