As coral reefs continue to decline worldwide, it becomes ever more necessary to understand the connectivity between coral populations to develop efficient management strategies facilitating survival and adaptation of coral reefs in the future. Orbicella faveolata is one of the most important reef-building corals in the Caribbean and has recently experienced severe population reductions. Here, we utilize a panel of nine microsatellite loci to evaluate the genetic structure of O. faveolata and to infer connectivity across ten sites spanning the wider Caribbean region. Populations are generally well-mixed throughout the basin (FST = 0.038), although notable patterns of substructure arise at local and regional scales. Eastern and western popula...
The critically endangered coral species Acropora palmata used to dominate shallow Caribbean reefs bu...
Understanding how genetic diversity is maintained across patchy marine environments remains a fundam...
The Deep Reef Refugia Hypothesis proposes that deep reefs can act as local recruitment sources for s...
As coral reefs continue to decline worldwide, it becomes ever more necessary to understand the conne...
As coral reefs continue to decline worldwide, it becomes ever more necessary to understand the conne...
Studies of genetic diversity and population genetic structure in marine organisms are relevant to un...
Successful management of spatially isolated coral reefs is contingent on an understanding of ecologi...
Understanding patterns of connectivity among populations of marine organisms is essential for the de...
Limited dispersal and connectivity in marine organisms can have negative fitness effects in populati...
While there are several areas containing shallow coral habitats in the Gulf of Mexico (GOM), the ava...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Connectivity underpins the persistence and recovery of marine ecosystems. The Great Barrier Reef (GB...
The critically endangered coral species Acropora palmata used to dominate shallow Caribbean reefs bu...
Understanding how genetic diversity is maintained across patchy marine environments remains a fundam...
The Deep Reef Refugia Hypothesis proposes that deep reefs can act as local recruitment sources for s...
As coral reefs continue to decline worldwide, it becomes ever more necessary to understand the conne...
As coral reefs continue to decline worldwide, it becomes ever more necessary to understand the conne...
Studies of genetic diversity and population genetic structure in marine organisms are relevant to un...
Successful management of spatially isolated coral reefs is contingent on an understanding of ecologi...
Understanding patterns of connectivity among populations of marine organisms is essential for the de...
Limited dispersal and connectivity in marine organisms can have negative fitness effects in populati...
While there are several areas containing shallow coral habitats in the Gulf of Mexico (GOM), the ava...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Connectivity underpins the persistence and recovery of marine ecosystems. The Great Barrier Reef (GB...
The critically endangered coral species Acropora palmata used to dominate shallow Caribbean reefs bu...
Understanding how genetic diversity is maintained across patchy marine environments remains a fundam...
The Deep Reef Refugia Hypothesis proposes that deep reefs can act as local recruitment sources for s...