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Articles 1 - 4 of 4
Full-Text Articles in Physical Sciences and Mathematics
Saving The Last Unicorns: The Genetic Rescue Of Florida’S Pillar Corals, Karen L. Neely, Cynthia L. Lewis, Keri O’Neil, Cheryl M. Woodley, Jennifer Moore, Zach Ransom, Amelia Moura, Ken Nedimyer, David Vaughan
Saving The Last Unicorns: The Genetic Rescue Of Florida’S Pillar Corals, Karen L. Neely, Cynthia L. Lewis, Keri O’Neil, Cheryl M. Woodley, Jennifer Moore, Zach Ransom, Amelia Moura, Ken Nedimyer, David Vaughan
Marine & Environmental Sciences Faculty Articles
As stony coral tissue loss disease (SCTLD) swept through the Florida Reef Tract, one of the most severely impacted species was the iconic pillar coral, Dendrogyra cylindrus. As the species’ population experienced a precipitous decline, a collaborative rescue project collected colony fragments for safekeeping at onshore and offshore nursery facilities. Between 2015 and 2019, a total of 574 fragments representing 128 genotypes were collected. These are currently dispersed among five facilities where they continue to provide opportunities to (1) refine best husbandry practices for D. cylindrus, (2) develop treatment options for SCTLD that have been adapted for use …
Rapid Population Decline Of The Pillar Coral Dendrogyra Cylindrus Along The Florida Reef Tract, Karen L. Neely, Cynthia L. Lewis, Kathleen S. Lunz, Lystina Kabay
Rapid Population Decline Of The Pillar Coral Dendrogyra Cylindrus Along The Florida Reef Tract, Karen L. Neely, Cynthia L. Lewis, Kathleen S. Lunz, Lystina Kabay
Marine & Environmental Sciences Faculty Articles
Coral reefs worldwide are in a state of decline, but the population status and impacts of stressors for rare species are generally not well documented using broad-scale monitoring protocols. We fate-tracked all known colonies of the pillar coral, Dendrogyra cylindrus, on the Florida Reef Tract (FRT) from 2013 to 2020 to assess population condition and trend, and to document the relative impacts of chronic and acute stressors. Large average colony size, an absence of juveniles, and large geographic distances between genotypes suggest that the Florida D. cylindrus population has been reproductively extinct for decades. During the study period, low-intensity …
Fallen Pillars: The Past, Present, And Future Population Dynamics Of A Rare, Specialist Coral–Algal Symbiosis, Andrea Chan, Cynthia L. Lewis, Karen L. Neely, Iliana B. Baums
Fallen Pillars: The Past, Present, And Future Population Dynamics Of A Rare, Specialist Coral–Algal Symbiosis, Andrea Chan, Cynthia L. Lewis, Karen L. Neely, Iliana B. Baums
Marine & Environmental Sciences Faculty Articles
With ongoing changes in climate, rare and ecologically specialized species are at increased risk of extinction. In sessile foundation fauna that reproduce asexually via fragmentation of existing colonies, the number of colonies does not reflect the number of genets and thus can obscure genotypic diversity. Colonies that are the product of fragmentation are not visually distinguishable from colonies that stem from sexual recruits. For this reason, molecular markers are necessary to assess genotypic variation and population structure in clonal organisms such as reef-building corals and their endosymbiotic dinoflagellates. For the rare Caribbean pillar coral, Dendrogyra cylindrus, and its endosymbiotic …
Recurring Episodes Of Thermal Stress Shift The Balance From A Dominant Host-Specialist To A Background Host-Generalist Zooxanthella In The Threatened Pillar Coral, Dendrogyra Cylindrus, Cynthia Lewis, Karen L. Neely, Mauricio Rodriguez-Lanetty
Recurring Episodes Of Thermal Stress Shift The Balance From A Dominant Host-Specialist To A Background Host-Generalist Zooxanthella In The Threatened Pillar Coral, Dendrogyra Cylindrus, Cynthia Lewis, Karen L. Neely, Mauricio Rodriguez-Lanetty
Marine & Environmental Sciences Faculty Articles
Most scleractinian corals form obligate symbioses with photosynthetic dinoflagellates (family Symbiodiniaceae), which provide differential tolerances to their host. Previously, research has focused on the influence of symbiont composition and the dynamic processes of symbiont repopulation during single episodes of hyperthermal events, followed by years of less-stressful conditions. In contrast, this study characterized for the first time, the role of Symbiodiniaceae species changes in response to annually recurring hyperthermal events, a scenario soon expected to become the norm. Consecutive hyperthermal events during summer 2014 and 2015 along the Florida Reef Tract offered a unique opportunity to study bleaching susceptibility and recovery …