A global study finds zoantharians, colorful hexacorals, exhibit surprisingly narrow genetic and morphological divergence between oceans. Their ability to disperse via epic larval phases and raft across ocean basins may be key to their success.
Current measures to protect grasslands in the Qinghai-Tibetan Plateau are damaging the ecosystem and should be stopped. Small burrowing mammals, like the plateau pika and zokor, play crucial ecological roles in maintaining ecosystem health and biodiversity.
Human activity on Hainan Island is causing changes in the body shapes and diets of tropical birds, resulting in biotic homogenisation. Despite efforts to protect biodiversity, the island's unique ecosystem is being affected by large-scale economic and land-use changes.
A new computational method suggests that Darwin's 'jump dispersal' theory is supported by strong evidence, especially for island species. The study found that jump dispersal can explain the biogeography of Hawaiian Islands and other archipelagos with a greater statistical probability than vicariance methods.
A large-scale biogeographic analysis by GW researcher Alex Pyron shows that amphibians have moved across the planet throughout time, with some species dispersing long distances over water. The study reveals three major processes driving their distribution: vicariance, dispersal, and unexpected oceanic dispersals.