Details zur Publikation

Kategorie Textpublikation
Referenztyp Zeitschriften
DOI 10.1038/s41467-026-77819-z
Lizenz creative commons licence
Titel (primär) Rapid and repeated evolution of increased competitive ability in a global invader
Autor Nagy, D.U.; Callaway, R.M.; Flory, S.L.; Barratt, C.D.; Durka, W. ORCID logo ; Lekberg, Y.; Lucas, M.S.; Michalski, S.G.; Onstein, R.E.; Pal, R.W. et al.
Quelle Nature Communications
Erscheinungsjahr 2026
Department BZF; iDiv
Band/Volume 17
Seite von art. 9930
Sprache englisch
Topic T5 Future Landscapes
Daten-/Softwarelinks https://doi.org/10.6084/m9.figshare.29881193
Supplements Supplement 1
Supplement 2
Supplement 3
Supplement 4
Supplement 5
Supplement 6
Keywords Conyza canadensis; Erigeron canadensis rapid evolution; invasive species
Abstract Rapid adaptive evolution can increase the competitive ability of invasive species in their non-native ranges. However, whether this increase is a general response and what drives it remain uncertain because the evidence is largely based on studies with limited sampling, inadequate consideration of population co-ancestry, and oversimplified estimates of competitive ability. We conduct a large-scale glasshouse experiment testing the effects of competition and drought on 100 native and 165 non-native populations of Erigeron canadensis, all genotyped to account for co-ancestry. Plants from non-native populations are significantly more competitive against other species than the conspecifics from native populations under both mesic and dry conditions. Genetic clustering indicates that the rapid evolution of competitive ability occurs independently in two out of four clusters in the non-native range. This advantage is present only during interspecific interactions and is absent during intraspecific competition. Repeated evolution of increased competitive ability suggests that adaptation following introduction can reshape species interactions and promote invasion success, even under future drought conditions, highlighting the importance of rapid evolution in determining the ecological impacts of invasive plants.
Nagy, D.U., Callaway, R.M., Flory, S.L., Barratt, C.D., Durka, W., Lekberg, Y., Lucas, M.S., Michalski, S.G., Onstein, R.E., Pal, R.W. et al. (2026):
Rapid and repeated evolution of increased competitive ability in a global invader
Nat. Commun. 17 , art. 9930
10.1038/s41467-026-77819-z