Niche unfilling dominates the naturalization of species from intercontinentally disjunct genera

Author:

Liu Yunpeng12ORCID,Heberling J. Mason3,Wang Zhiheng1,Soltis Douglas E.2456,Soltis Pamela S.256

Affiliation:

1. Institute of Ecology, College of Urban and Environmental Sciences, and Key Laboratory of Earth Surface Processes of Ministry of Education Peking University Beijing China

2. Florida Museum of Natural History University of Florida Gainesville Florida USA

3. Section of Botany Carnegie Museum of Natural History Pittsburgh Pennsylvania USA

4. Department of Biology University of Florida Gainesville Florida USA

5. Genetics Institute University of Florida Gainesville Florida USA

6. Biodiversity Institute University of Florida Gainesville Florida USA

Abstract

AbstractAimQuantifying niche shifts of non‐native species and their interactions with natives is vital in evaluating invasion risk yet remains difficult. Climate filtering and competition with native congeners are two important processes impacting niche changes and yielding contradictory predictions for the coexistence of non‐native and native species. Closely related species representing the Eastern Asia (EA)–Eastern North America (ENA) floristic disjunction provide a powerful yet unexplored system for assessing the relative roles of these two processes. Here, we tested three niche change scenarios (unfilling, expansion and stable) using EA species naturalized in ENA. We aim to answer: (1) which scenario is observed for naturalized species? and (2) how has niche overlap between EA and ENA congeners changed after naturalization?LocationENA and EA.Time PeriodPresent.Major Taxa StudiedAngiosperms.MethodsNiches were estimated using both occurrences and predictions generated by ecological niche models. Niche changes of naturalized species and their niche overlap with natives were measured using Schoener's D. Contributions of niche expansion and unfilling on niche changes of naturalized niches were evaluated using hierarchical partitioning and linear regressions. We further measured pairwise phylogenetic distances among EA and ENA congeners and evaluated the association with niche overlap.ResultsUnfilling‐dominated postintroduction niche changes of the naturalized species. EA species naturalized in ENA exhibited lower niche overlap with ENA native congeners compared with native range populations in EA. These results remain when considering time since introduction and potential physical dispersal limitations interpreted by projecting suitable niche space between EA and ENA. However, dispersal limitation may contribute to the degree of niche unfilling.Main ConclusionsUsing intercontinental disjunct species as a study system, we found that naturalization is shaped jointly by climate filtering and competition with native congeners, providing valuable insights for evaluating invasion risk underlying global floristic exchanges.

Funder

National Natural Science Foundation of China

Directorate for Biological Sciences

Publisher

Wiley

Subject

Ecology,Ecology, Evolution, Behavior and Systematics,Global and Planetary Change

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