Coralline red algae in the non-geniculate genera Clathromorphum, Phymatolithon and Lithothamnion are important benthic ecosystem engineers in the photic zone of the Arctic and Subarctic. In these regions, the systematics and biogeography of Clathromorphum and Phymatolithon have mostly been resolved whereas Lithothamnion has not, until now. Seventy-three specific and infraspecific names were given to Arctic and Subarctic Lithothamnion specimens in the late 19th and early 20th century by Frans R. Kjellman and Mikael H. Foslie. DNA sequences from 36 type specimens, five historical specimens, and an extensive sampling of recent collections resulted in the recognition of four Arctic and Subarctic Lithothamnion species, L. glaciale, L. lemoineae,...
Coralline red algae demonstrate phenotypic plasticity related to environmental factors, rendering th...
International audienceLithophyllum species in the Mediterranean Sea function as algal bioconstructor...
Molecular phylogenetic analyses of 18S rDNA (SSU) gene sequences confirm the placement of Crusticora...
Coralline red algae in the non-geniculate genera Clathromorphum, Phymatolithon and Lithothamnion are...
Coralline red algae in the non-geniculate genera Clathromorphum, Phymatolithon and Lithothamnion are...
International audienceCoralline red algae in the genera Clathromorphum, Phymatolithon and Lithothamn...
International audienceCoralline red algae in the genera Clathromorphum, Phymatolithon and Lithothamn...
In the Northwestern Gulf of Mexico (NWGMx), subtidal rhodolith beds offshore Louisiana at 45–80 m de...
Maerl beds are sensitive biogenic habitats built by an accumulation of loose-lying, non-geniculate c...
<div><p>Maerl beds are sensitive biogenic habitats built by an accumulation of loose-lying, non-geni...
Maerl beds are sensitive biogenic habitats built by an accumulation of loose-lying, non-geniculate c...
DNA sequences from type material in the nongeniculate coralline genus Lithophyllum were used to unam...
Systematics of the red algal order Corallinales has a long and convoluted history. In the present st...
Coralline red algae demonstrate phenotypic plasticity related to environmental factors, rendering th...
International audienceLithophyllum species in the Mediterranean Sea function as algal bioconstructor...
Molecular phylogenetic analyses of 18S rDNA (SSU) gene sequences confirm the placement of Crusticora...
Coralline red algae in the non-geniculate genera Clathromorphum, Phymatolithon and Lithothamnion are...
Coralline red algae in the non-geniculate genera Clathromorphum, Phymatolithon and Lithothamnion are...
International audienceCoralline red algae in the genera Clathromorphum, Phymatolithon and Lithothamn...
International audienceCoralline red algae in the genera Clathromorphum, Phymatolithon and Lithothamn...
In the Northwestern Gulf of Mexico (NWGMx), subtidal rhodolith beds offshore Louisiana at 45–80 m de...
Maerl beds are sensitive biogenic habitats built by an accumulation of loose-lying, non-geniculate c...
<div><p>Maerl beds are sensitive biogenic habitats built by an accumulation of loose-lying, non-geni...
Maerl beds are sensitive biogenic habitats built by an accumulation of loose-lying, non-geniculate c...
DNA sequences from type material in the nongeniculate coralline genus Lithophyllum were used to unam...
Systematics of the red algal order Corallinales has a long and convoluted history. In the present st...
Coralline red algae demonstrate phenotypic plasticity related to environmental factors, rendering th...
International audienceLithophyllum species in the Mediterranean Sea function as algal bioconstructor...
Molecular phylogenetic analyses of 18S rDNA (SSU) gene sequences confirm the placement of Crusticora...