Marine systems have traditionally been thought of as “open” with few barriers to gene flow. In particular, many marine organisms in the Southern Ocean purportedly possess circumpolar distributions that have rarely been well verified. Here, we use the highly abundant and endemic Southern Ocean brittle star Ophionotus victoriae to examine genetic structure and determine whether barriers to gene flow have existed around the Antarctic continent. Ophionotus victoriae possesses feeding planktotrophic larvae with presumed high dispersal capability, but a previous study revealed genetic structure along the Antarctic Peninsula. To test the extent of genetic differentiation within O. victoriae, we sampled from the Ross Sea through the eastern Weddell...
Klimova A, Hoffman J, Gutierrez-Rivera JN, Leon de la Luz J, Ortega-Rubio A. Molecular genetic analy...
Abstract Crayfish can be used as model organisms in phylogeographic and divergence time studies if r...
Human‐induced climate change is expected to cause major biotic changes in species distributions and ...
Kelp aquaculture is globally developing steadily as human food source, along with other applications...
In anticipation of the current biodiversity crisis, it has become critical to rapidly and accuratel...
Due to their worldwide distribution and occupancy of different types of environments, bottlenose dol...
Vendrami D, Houston RD, Gharbi K, et al. Detailed insights into pan-European population structure an...
M.N. was funded by a Crawford‐Hayes studentship and National Parks and Wildlife Service (NPWS), Depa...
The southern blue-ringed octopus, Hapalochlaena maculosa (Hoyle, 1883) lacks a planktonic dispersal ...
Ocean circulation, geological history, geographic distance, and seascape heterogeneity play an impor...
We conducted a large-scale population genetic survey of genetic diversity of the host grass Festuca ...
Determining whether comparable processes drive genetic divergence among marine species is relevant t...
Pteropods are a group of small marine gastropods that are highly sensitive to multiple stressors ass...
Although species richness can be determined by different mechanisms at different spatial scales, the...
In the course of the ongoing global intensification and diversification of human pressures, the stud...
Klimova A, Hoffman J, Gutierrez-Rivera JN, Leon de la Luz J, Ortega-Rubio A. Molecular genetic analy...
Abstract Crayfish can be used as model organisms in phylogeographic and divergence time studies if r...
Human‐induced climate change is expected to cause major biotic changes in species distributions and ...
Kelp aquaculture is globally developing steadily as human food source, along with other applications...
In anticipation of the current biodiversity crisis, it has become critical to rapidly and accuratel...
Due to their worldwide distribution and occupancy of different types of environments, bottlenose dol...
Vendrami D, Houston RD, Gharbi K, et al. Detailed insights into pan-European population structure an...
M.N. was funded by a Crawford‐Hayes studentship and National Parks and Wildlife Service (NPWS), Depa...
The southern blue-ringed octopus, Hapalochlaena maculosa (Hoyle, 1883) lacks a planktonic dispersal ...
Ocean circulation, geological history, geographic distance, and seascape heterogeneity play an impor...
We conducted a large-scale population genetic survey of genetic diversity of the host grass Festuca ...
Determining whether comparable processes drive genetic divergence among marine species is relevant t...
Pteropods are a group of small marine gastropods that are highly sensitive to multiple stressors ass...
Although species richness can be determined by different mechanisms at different spatial scales, the...
In the course of the ongoing global intensification and diversification of human pressures, the stud...
Klimova A, Hoffman J, Gutierrez-Rivera JN, Leon de la Luz J, Ortega-Rubio A. Molecular genetic analy...
Abstract Crayfish can be used as model organisms in phylogeographic and divergence time studies if r...
Human‐induced climate change is expected to cause major biotic changes in species distributions and ...