Many plants naturalized as aliens abroad have also become more common within their native regions

R Rashmi Paudel T Trevor S. Fristoe (Department of Biology, University of Puerto Rico—Río Piedras) N Nicole L. Kinlock A Amy J. S. Davis W Weihan Zhao (AbbVie, North Chicago, IL) H Hans Van Calster M Milan Chytrý J Jiří Danihelka G Guillaume Decocq L Luise Ehrendorfer - Schratt K Kun Guo (The Second Hospital of Dalian Medical University) W Wen-Yong Guo (Zhejiang Tiantong Forest Ecosystem National Observation and Research Station, Institute of Eco-Chongming, Research Center for Global Change and Ecological Forecasting, School of Ecological and Environmental Sciences, East China Normal University) Z Zdeněk Kaplan S Simon Pierce J Jan Wild W Wayne Dawson F Franz Essl H Holger Kreft (Department of Biodiversity, Macroecology and Biogeography, University of Göttingen) J Jan Pergl P Petr Pyšek (Czech Academy of Sciences, Institute of Botany, Průhonice, Czech Republic.) M Marten Winter M Mark van Kleunen

Abstract

Abstract Due to anthropogenic pressure some species have declined whereas others have increased within their native ranges. Simultaneously, many species introduced by humans have established self-sustaining populations elsewhere (i.e. have become naturalized aliens). Previous studies have shown that particularly plant species that are common within their native range have become naturalized elsewhere. However, how changes in native distributions correlate with naturalization elsewhere is unknown. We compare data on grid-cell occupancy of native vascular plant species over time for 10 European regions (countries or parts thereof). For nine regions, both early occupancy and occupancy change correlate positively with global naturalization success (quantified as naturalization in any administrative region and as the number of such regions). In other words, many plant species spreading globally as naturalized aliens are also expanding within their native regions. This implies that integrating data on native occupancy dynamics in invasion risk assessments might help prevent new invasions.

Article Details

Volume / Issue Vol. 16, Issue 1
Published September 05, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (22)

R

Rashmi Paudel

T

Trevor S. Fristoe

Department of Biology, University of Puerto Rico—Río Piedras

N

Nicole L. Kinlock

A

Amy J. S. Davis

W

Weihan Zhao

AbbVie, North Chicago, IL

H

Hans Van Calster

M

Milan Chytrý

J

Jiří Danihelka

G

Guillaume Decocq

L

Luise Ehrendorfer - Schratt

K

Kun Guo

The Second Hospital of Dalian Medical University

W

Wen-Yong Guo

Zhejiang Tiantong Forest Ecosystem National Observation and Research Station, Institute of Eco-Chongming, Research Center for Global Change and Ecological Forecasting, School of Ecological and Environmental Sciences, East China Normal University

Z

Zdeněk Kaplan

S

Simon Pierce

J

Jan Wild

W

Wayne Dawson

F

Franz Essl

H

Holger Kreft

Department of Biodiversity, Macroecology and Biogeography, University of Göttingen

J

Jan Pergl

P

Petr Pyšek

Czech Academy of Sciences, Institute of Botany, Průhonice, Czech Republic.

M

Marten Winter

M

Mark van Kleunen