The global diversity and decline of glacier animals

成果类型:
Article
署名作者:
Simoncini, Andrea; Cantera, Isabel; Giachello, Simone; Valle, Barbara; Gobbi, Mauro; Fontaneto, Diego; Zawierucha, Krzysztof; Laniecki, Ronald; Coulson, Stephen James; Lencioni, Valeria; Cauvy-Fraunie, Sophie; Ordonez, Alejandra Moran; Losapio, Gianalberto; Takeuchi, Nozomu; Liu, Qiao; Shain, Daniel H.; Fair, Heather; Janko, Karel; Devetter, Miloslav; Jimenez-Santos, Marco Antonio; Sabacka, Marie; Falaschi, Mattia; Marta, Silvio; Ficetola, Gentile Francesco
署名单位:
University of Milan; Universite de Toulouse (EPE); Communaute d'universites et etablissements de Toulouse (Comue); Centre National de la Recherche Scientifique (CNRS); Institut National Polytechnique de Toulouse; University of Siena; National Biodiversity Future Center; Adam Mickiewicz University; Polish Academy of Sciences; Institute of Biochemistry & Biophysics - Polish Academy of Sciences; University Centre Svalbard (UNIS); University of Basel; University of Lausanne; University of Milan; Chiba University; Chinese Academy of Sciences; Institute of Mountain Hazards & Environment, CAS; Rutgers University System; Rutgers University Camden; Rutgers University New Brunswick; University of Minnesota System; University of Minnesota Twin Cities; Czech Academy of Sciences; Institute of Animal Physiology & Genetics of the Czech Academy of Sciences; University of Ostrava; Czech Academy of Sciences; Biology Centre of the Czech Academy of Sciences; Charles University Prague; Consiglio Nazionale delle Ricerche (CNR); Istituto di Geoscienze e Georisorse (IGG-CNR)
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2514455123
发表日期:
2026-06-23
页码:
e2514455123
关键词:
biodiversity climate extinction distribution extinction risk CLIMATE-CHANGE ice terrestrial ecosystems colonization CONSERVATION biodiversity shortfalls TARDIGRADA
摘要:
Glacier environments host an unrecognized number of animals that are at high risk of extinction due to global warming. Yet, the absence of comprehensive analyses has hampered the development of a coordinated agenda for research and conservation. By assembling a global dataset of terrestrial and freshwater animals in glacial habitats, we show that glacier environments host at least 152 animal species from 14 classes and 7 phyla. This diversity is underestimated for nearly all the groups and we detected widespread taxonomical, ecological, and geographical biases. Glacier animals exhibited diverse ecological patterns, with 73 species reported exclusively from glacial habitats (glacier specialists). Biogeographical patterns showed clear differences between groups, with some taxa (tardigrades, rotifers) found mostly in polar areas and others (insects, springtails) associated with tropical and temperate mountains. Glacier regions with a lower temperature showed a higher richness of glacier specialists. Glacier animals were widespread across the metazoan tree of life; the ability to disperse passively by wind emerged as the strongest driver of the occurrence of glacier animals. By linking the distribution of glacier specialists to scenarios of glacier retreat, we identified areas and species that are likely to experience abrupt declines in the next few decades, as well as species that could face complete habitat loss. Our results call for urgent actions to secure the future of glacier environments and their singular, understudied fauna.
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