<div><p>Understanding the evolution of scleractinian corals on geological timescales is key to predict how modern reef ecosystems will react to changing environmental conditions in the future. Important to such efforts has been the development of several skeleton-based criteria to distinguish between the two major ecological groups of scleractinians: zooxanthellates, which live in symbiosis with dinoflagellate algae, and azooxanthellates, which lack endosymbiotic dinoflagellates. Existing criteria are based on overall skeletal morphology and bio/geo-chemical indicators—none of them being particularly robust. Here we explore another skeletal feature, namely fine-scale growth banding, which differs between these two groups of corals. Using va...
The diversity in the skeletal features of coral species is an outcome of their evolution, distributi...
<p>SEM micrographs of polished and etched skeletons of various azooxanthellate corals (photographs a...
The diversity in the skeletal features of coral species is an outcome of their evolution, distributi...
Understanding the evolution of scleractinian corals on geological timescales is key to predict how m...
<p>Plot illustrates relationship between regularity of increments (expressed as coefficient of varia...
The presence of banding in the skeleton of coralline algae has been reported in many species, primar...
The presence of banding in the skeleton of coralline algae has been reported in many species, primar...
<p>SEM micrographs of polished and etched skeletons of various zooxanthellate corals (photographs ar...
The presence of banding in the skeleton of coralline algae has been reported in many species, primar...
Corals have the potential to record several centuries of highly detailed environmental information i...
Corals have the potential to record several centuries of highly detailed environmental information i...
Interpretation of biomineralization processes based solely on the end product - the skeleton - may s...
International audienceThe biomineralization process and skeletal growth dynamics of azooxanthellate ...
Scleractinian corals are increasingly used as recorders of modern and paleoclimates. The microstruct...
Scleractinian corals are increasingly used as recorders of modern and paleoclimates. The microstruct...
The diversity in the skeletal features of coral species is an outcome of their evolution, distributi...
<p>SEM micrographs of polished and etched skeletons of various azooxanthellate corals (photographs a...
The diversity in the skeletal features of coral species is an outcome of their evolution, distributi...
Understanding the evolution of scleractinian corals on geological timescales is key to predict how m...
<p>Plot illustrates relationship between regularity of increments (expressed as coefficient of varia...
The presence of banding in the skeleton of coralline algae has been reported in many species, primar...
The presence of banding in the skeleton of coralline algae has been reported in many species, primar...
<p>SEM micrographs of polished and etched skeletons of various zooxanthellate corals (photographs ar...
The presence of banding in the skeleton of coralline algae has been reported in many species, primar...
Corals have the potential to record several centuries of highly detailed environmental information i...
Corals have the potential to record several centuries of highly detailed environmental information i...
Interpretation of biomineralization processes based solely on the end product - the skeleton - may s...
International audienceThe biomineralization process and skeletal growth dynamics of azooxanthellate ...
Scleractinian corals are increasingly used as recorders of modern and paleoclimates. The microstruct...
Scleractinian corals are increasingly used as recorders of modern and paleoclimates. The microstruct...
The diversity in the skeletal features of coral species is an outcome of their evolution, distributi...
<p>SEM micrographs of polished and etched skeletons of various azooxanthellate corals (photographs a...
The diversity in the skeletal features of coral species is an outcome of their evolution, distributi...