Biogeographic processes underlying global patterns of plant diversity
成果类型:
Article
署名作者:
Daru, Barnabas H.; Nichodemus, Cornelius O.; Henao-Diaz, L. Francisco
署名单位:
Stanford University; University of Maine System; University of Maine Orono; University of Chicago
刊物名称:
SCIENCE
ISSN/ISSBN:
0036-8075; 1095-9203
DOI:
10.1126/science.adv6172
发表日期:
2026-05-21
页码:
845-849
关键词:
founder-event speciation
historical biogeography
geographic range
AUSTRALIAN FLORA
EVOLUTION
diversification
dispersal
radiation
models
CONSERVATION
摘要:
The uneven global distribution of plant diversity remains a fundamental question in biogeography. Using dated phylogenies of >300,000 plant species and ancestral biogeographical stochastic mapping, we show that in situ speciation is the predominant process underlying extant plant diversity and accounts for 78% of biogeographic events across realms. The Neotropic contributed 37% of in situ speciation, likely owing to its role as a center of species diversification. Dispersal between realms was less frequent (16% of events) but facilitated floristic exchanges, especially in the Eastern Hemisphere. Extinction was least frequent but more pronounced in East Asia. These findings support the tropical conservatism hypothesis in which many clades originated in the tropics and only recently expanded into temperate zones, where limited time and biome conservatism have restricted speciation and diversity.
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