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April 22, 2026Proceedings of the National Academy of Sciences0 citations

The crucial and unique role of extreme tropical cyclones in promoting freshwater invasions in China

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SGShimin GuDGDangen GuLSLu Shu

Key Points

  • This research aims to understand how extreme tropical cyclones contribute to the invasion of nonnative freshwater species in China.
  • Compiled data on landfalling tropical cyclones in Southeast China over 70 years.
  • Conducted field surveys and environmental DNA investigations at TC-frequent and TC-free sites.
  • Analyzed the effects of hydrometeorological factors on species invasions.
  • Higher richness and abundance of nonnative freshwater animals at TC-frequent sites compared to TC-free sites.
  • No significant differences in native species richness between TC-frequent and TC-free sites.
  • TC-induced precipitation, wind, and natural discharge were identified as key factors predicting invasions.

Abstract

Climate change induced extreme weather events (EWEs) and invasive species are major threats to global biodiversity and social economy; however, the unique role of EWEs in facilitating biological invasions remains uncertain. Here, we compiled an extensive dataset of landfalling tropical cyclones (TCs) over the past 70 y covering thousands of kilometers of the Southeast China coast. Through intensive field surveys and environmental DNA investigations, we found that the richness and relative abundance of nonnative freshwater animals, especially fishes, were greater at TC-frequent sites than at TC-free sites after accounting for effects of water body landscapes, native biodiversity, and anthropogenic factors such as aquaculture and religious release of nonnative animals. Nevertheless, no significant differences were observed in native species richness or relative abundance between TC-frequent and TC-free sites. TC-induced precipitation, wind, and natural discharge were the key hydrometeorological parameters for predicting invasions. Our findings highlight the importance of developing proactive strategies against the combined impacts of EWEs and biological invasions under sustained global change.

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Cite This Study

Gu et al. (2026) studied this question.

synapsesocial.com/papers/69e866c96e0dea528ddeb1cehttps://doi.org/10.1073/pnas.2526367123
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