Artículo de publicación ISIThe evolution of the marine benthic fauna of Antarctica has been shaped by geological and climatic atmospheric factors such as the geographic isolation of the continent and the subsequent installation of the Antarctic Circumpolar Current (ACC). Despite this isolation process, strong biogeographic links still exist between marine fauna from the Antarctic Peninsula and southern South America. Recent studies in different taxa have shown, for example, that shallow benthic organisms with long larval stages maintained contact after the physical separation of the continents and divergence may be associated with the intensification of the ACC in the late Miocene-early Pliocene. In this context, here we performed phylogene...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic waters is generall...
Antarctic waters represent a unique marine environment delimited by an oceanographic barrier, the Po...
Antarctic waters represent a unique marine environment delimited by an oceanographic barrier, the Po...
Artículo de publicación ISIThe evolution of the marine benthic fauna of Antarctica has been shaped b...
The evolution of the marine benthic fauna of Antarctica has been shaped by geological and climatic a...
Artículo de publicación SCOPUSThe evolution of the marine benthic fauna of Antarctica has been shap...
Artículo de publicación SCOPUSThe evolution of the marine benthic fauna of Antarctica has been shap...
Continental drift processes such as major gateway openings have been historically advocated to expla...
The origins of present day benthic marine faunas from both the Magellan and Antarctic provinces may ...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic w...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic w...
Background The impressive adaptive radiation of notothenioid fishes in Antarctic wat...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic waters is generall...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic waters is generall...
Abstract Background The impressive adaptive radiation of notothenioid fishes in Antarctic waters is ...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic waters is generall...
Antarctic waters represent a unique marine environment delimited by an oceanographic barrier, the Po...
Antarctic waters represent a unique marine environment delimited by an oceanographic barrier, the Po...
Artículo de publicación ISIThe evolution of the marine benthic fauna of Antarctica has been shaped b...
The evolution of the marine benthic fauna of Antarctica has been shaped by geological and climatic a...
Artículo de publicación SCOPUSThe evolution of the marine benthic fauna of Antarctica has been shap...
Artículo de publicación SCOPUSThe evolution of the marine benthic fauna of Antarctica has been shap...
Continental drift processes such as major gateway openings have been historically advocated to expla...
The origins of present day benthic marine faunas from both the Magellan and Antarctic provinces may ...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic w...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic w...
Background The impressive adaptive radiation of notothenioid fishes in Antarctic wat...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic waters is generall...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic waters is generall...
Abstract Background The impressive adaptive radiation of notothenioid fishes in Antarctic waters is ...
Background: The impressive adaptive radiation of notothenioid fishes in Antarctic waters is generall...
Antarctic waters represent a unique marine environment delimited by an oceanographic barrier, the Po...
Antarctic waters represent a unique marine environment delimited by an oceanographic barrier, the Po...