Related Experiment Video
Updated: Dec 6, 2025

Fluorescence-Activated Cell Sorting for the Isolation of Scleractinian Cell Populations
Published on: May 31, 2020
Host-symbiont coevolution, cryptic structure, and bleaching susceptibility, in a coral species complex (Scleractinia;
Z H Forsman1, R Ritson-Williams2, K H Tisthammer3
1Hawai'i Institute of Marine Biology, Kāne'ohe, HI, USA. zac@hawaii.edu.
Abstract:
The 'species' is a key concept for conservation and evolutionary biology, yet the lines between population and species-level variation are often blurred, especially for corals. The 'Porites lobata species complex' consists of branching and mounding corals that form reefs across the Pacific. We used reduced representation meta-genomic sequencing to examine genetic relationships within this species complex and to identify candidate loci associated with colony morphology, cryptic genetic structure, and apparent bleaching susceptibility. We compared existing Porites data with bleached and unbleached colonies of the branching coral P. compressa collected in Kāne'ohe Bay Hawai'i during the 2015 coral bleaching event. Loci that mapped to coral, symbiont, and microbial references revealed genetic structure consistent with recent host-symbiont co-evolution. Cryptic genetic clades were resolved that previous work has associated with distance from shore, but no genetic structure was associated with bleaching. We identified many candidate loci associated with morphospecies, including candidate host and symbiont loci with fixed differences between branching and mounding corals. We also found many loci associated with cryptic genetic structure, yet relatively few loci associated with bleaching. Recent host-symbiont co-evolution and rapid diversification suggests that variation and therefore the capacity of these corals to adapt may be underappreciated.
More Related Videos
Related Concept Videos
Diversity of Protists III
Diversity of Protists II
Symbiosis
Diversity of Protists IV
Diversity of Protists I
Speciation Rates

