Successful management of spatially isolated coral reefs is contingent on an understanding of ecological connections across populations. To investigate genetic connectivity of the depth-generalist coral species Montastraea cavernosa, populations from both shallow (15–30 m) and mesophotic coral ecosystems (30–70 m) in the Gulf of Mexico (GOM) were analyzed with microsatellite genotyping. A series of upstream and downstream sites were chosen in marine protected areas including Carrie Bow Cay, Belize; Flower Garden Banks and nearby mesophotic bank habitats; Pulley Ridge; and Dry Tortugas. Patterns of genetic diversity within the northwest GOM supported relatively open coral populations with high levels of gene flow between shallow and mesophotic depth zones, consistent with strong oceanographic patterns and hypothesized availability of coral reef habitats in the GOM. Conversely, genetic differentiation within Belize and the southeast GOM indicate relative isolation of shallow and mesophotic M. cavernosa populations in these regions. Structure analysis showed dominant genetic clusters within each region that did not correlate strongly with depth zones, and identified a cluster of unknown origin contributing to high differentiation at Pulley Ridge. Migration modeling predicted historical region-wide panmixia for most regions, with Pulley Ridge appearing to be a potential sink population. The GOM appears to demonstrate stronger evidence of vertical connectivity compared to elsewhere in the Tropical Western Atlantic, which may be the result of oceanographic variability and/or lack of local selection at depth. These findings are consistent with previous studies identifying genetic connectivity of broadcast-spawning corals across broad spatial scales and highlight the potential importance of mesophotic habitats in the GOM as larval sources to geographically distant populations.
M. cavernosa genotypes
Datasheet containing Montastraea cavernosa multi-locus genotypes for 9 microsatellite loci (developed by Serrano et al. 2014) assessing population structure across shallow and mesophotic coral ecosystems in the Gulf of Mexico. See readme for column descriptions.
Studivan and Voss_GOM_Mcav genotypes.xlsx
Structure input file
Multi-locus genotypes for M. cavernosa from the GOM, formatted for Structure input.
Studivan and Voss_GOM_Structure input.txt
Structure parameter file
Structure run parameters for use with Structure input file.
Studivan and Voss_GOM_Structure parameters
Structure output results
Archive containing output files for Structure runs (contents of the "Results" directory created by Structure), for use with web-based Structure Harvester (http://taylor0.biology.ucla.edu/structureHarvester/).
Studivan and Voss_GOM_Structure output.zip
Migrate-n input file for Belize
Multi-locus genotypes for M. cavernosa from Belize, formatted for Migrate-n input.
Studivan and Voss_GOM_Migrate input BLZ
Migrate-n input file for West Flower Garden Bank
Multi-locus genotypes for M. cavernosa from West Flower Garden Bank, formatted for Migrate-n input.
Studivan and Voss_GOM_Migrate input WFGB
Migrate-n input file for East Flower Garden Bank
Multi-locus genotypes for M. cavernosa from East Flower Garden Bank, formatted for Migrate-n input.
Studivan and Voss_GOM_Migrate input EFGB
Migrate-n input file for Pulley Ridge and Dry Tortugas
Multi-locus genotypes for M. cavernosa from Pulley Ridge and Dry Tortugas, formatted for Migrate-n input.
Studivan and Voss_GOM_Migrate input PRG-DRT
Migrate-n input file for Gulf of Mexico
Multi-locus genotypes for M. cavernosa from the GOM, formatted for Migrate-n input.
Studivan and Voss_GOM_Migrate input GOM
Migrate-n Symm parameter file
Parameter file for Migrate-n model Symm (symmetrical migration across all populations). Designed for use with Migrate-n-mpi on a high-performance computing cluster.
Studivan and Voss_GOM_Migrate parameters Symm
Migrate-n Up parameter file
Parameter file for Migrate-n model Up (net mesophotic-to-shallow migration). Designed for use with Migrate-n-mpi on a high-performance computing cluster.
Studivan and Voss_GOM_Migrate parameters Up
Migrate-n Down parameter file
Parameter file for Migrate-n model Down (net shallow-to-mesophotic migration). Designed for use with Migrate-n-mpi on a high-performance computing cluster.
Studivan and Voss_GOM_Migrate parameters Down
Migrate-n Pan parameter file
Parameter file for Migrate-n model Panmixia (single population). Designed for use with Migrate-n-mpi on a high-performance computing cluster.
Studivan and Voss_GOM_Migrate parameters Pan