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Widespread homogenization of plant communities in the Anthropocene

Authors :
Barnabas H. Daru
T. Jonathan Davies
Charles G. Willis
Emily K. Meineke
Argo Ronk
Martin Zobel
Meelis Pärtel
Alexandre Antonelli
Charles C. Davis
Source :
Nature communications, vol 12, iss 1, Nature Communications, Nature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
Publication Year :
2021
Publisher :
eScholarship, University of California, 2021.

Abstract

Native biodiversity decline and non-native species spread are major features of the Anthropocene. Both processes can drive biotic homogenization by reducing trait and phylogenetic differences in species assemblages between regions, thus diminishing the regional distinctiveness of biotas and likely have negative impacts on key ecosystem functions. However, a global assessment of this phenomenon is lacking. Here, using a dataset of >200,000 plant species, we demonstrate widespread and temporal decreases in species and phylogenetic turnover across grain sizes and spatial extents. The extent of homogenization within major biomes is pronounced and is overwhelmingly explained by non-native species naturalizations. Asia and North America are major sources of non-native species; however, the species they export tend to be phylogenetically close to recipient floras. Australia, the Pacific and Europe, in contrast, contribute fewer species to the global pool of non-natives, but represent a disproportionate amount of phylogenetic diversity. The timeline of most naturalisations coincides with widespread human migration within the last ~500 years, and demonstrates the profound influence humans exert on regional biotas beyond changes in species richness.<br />Human-driven movements and extinctions of species have made plant communities across biomes more homogenous. Here the authors quantify plant vascular species and phylogenetic homogenization across the globe, finding that non-native species naturalisations have been a major driver.

Details

Database :
OpenAIRE
Journal :
Nature communications, vol 12, iss 1, Nature Communications, Nature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
Accession number :
edsair.doi.dedup.....ce8f8e3a0e409d1a9bb31686fa6d2eac