This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: More than two-thirds of newly flooded coastlines worldwide could become suitable habitat for 122 non-native marine species—including Chinese mitten crabs, Pacific oysters and Asian tiger shrimp—by the middle and end of this century. The research, published in Nature Ecology & Evolution, identifies coastal regions at heightened risk, including the eastern United States, the Gulf of Mexico, coastlines bordering the North Sea, southeastern China and northern Australia.
Biological invasions are a major cause of biodiversity loss and ecosystem change. Although previous studies have examined how climate change may alter species distributions, the potential for non-native marine species to spread into coastal land newly flooded by rising seas has not been assessed globally. Estuaries may be especially vulnerable because they connect land and sea and are centers of human activity.
Qiang Lin, Xuan Liu and colleagues modeled the future distributions of 122 established non-native marine animal species, including Atlantic blue crabs, European green crabs and northern Pacific sea stars, under climate change scenarios that project continued sea-level rise. Under a moderate emissions scenario (SSP2–4.5), global median sea level is projected to rise by 20 cm (8 inches) by 2050 and 56 cm (22 inches) by 2100. The authors project that between 290,000 and 470,000 square kilometers (110,000 and 180,000 square miles) of newly inundated coastal land could become suitable habitat for these species.
This equates to an area roughly the size of Italy at the lower end and Sweden at the upper end of the estimate, particularly in midlatitude estuaries. Across all scenarios, invasive species were projected to be able to colonize more than two-thirds of inundated coastal land in regions where they are already established. Marine invaders were projected to spread most extensively in areas close to estuaries, where newly flooded land is likely to provide suitable habitat.
The findings reveal a previously overlooked pathway for biological invasions and highlight the need to incorporate sea-level rise into invasion-risk assessments. According to the authors, early monitoring and management strategies may help limit effects on biodiversity, fisheries productivity and other ecosystem services in coastal regions. However, they caution that uncertainties remain and that newly inundated habitats may not always support rapid colonization.
Zhixin Zhang et al, Global sea-level rise will create a new biological invasion front, Nature Ecology & Evolution (2026). DOI: 10.1038/s41559-026-03181-4 Journal information: Nature Ecology & Evolution MA in English, copy editor since 2021 with experience in higher education and health content. Dedicated to trustworthy science news.
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