Climate mediates phenological and phylogenetic differentiation in plant invasions

T Tadeo H. Ramirez-Parada (Department of Ecology, Evolution, and Marine Biology, University of California) I Isaac W. Park (Department of Biology, Georgia Southern University) S Shijia Peng (Department of Organismic and Evolutionary Biology, Harvard University Herbaria, Harvard University) M Misako Nishino (Biota of North America Program) J John T. Kartesz (Biota of North America Program) S Sydne Record (Department of Wildlife, Fisheries, and Conservation Biology, University of Maine) C Charles C. Davis (Department of Organismic and Evolutionary Biology, Harvard University Herbaria, Harvard University) S Susan J. Mazer (Department of Ecology, Evolution, and Marine Biology, University of California)

Abstract

Darwin’s Naturalization Conundrum holds that both functional similarity and distinctiveness can facilitate biological invasions: invaders similar to natives may succeed through preadaptation to local abiotic conditions, whereas functionally distinct invaders may succeed by reducing competition. Yet the contexts in which either mechanism dominates are unclear. Prior research has primarily attributed variability in native–invasive differentiation to shifts in the balance between biotic and climatic barriers to invasion from local to regional scales. However, similarity and distinctiveness are frequent at both local and regional levels, indicating key drivers of native–invasive differentiation remain overlooked. Crucially, theory and evidence show that as climatic stress increases, competition weakens. This implies that harsh climates should favor invaders functionally similar to natives, whereas mesic climates should favor distinctiveness. However, this hypothesis has not been tested across climate regimes and functional traits. We addressed this gap by combining models of species distributions and flowering phenology for 2,810 species across the United States, estimating phylogenetic distance and phenological differentiation between natives and invasives relative to differentiation among co-occurring natives. In warm, humid regions, invasives flowered earlier, less synchronously, and were more distantly related to natives. In cold or dry regions, they flowered at similar or later times, more synchronously, and were more closely related than natives themselves. Across all climates, invasives consistently exhibited longer flowering durations, with little evidence of greater phenological plasticity. These findings reveal that Darwin’s Conundrum reflects a predictable continuum shaped by environmental context, highlighting climate as a key axis of invasion success.

Article Details

Volume / Issue Vol. 123, Issue 21
Published May 26, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (8)

T

Tadeo H. Ramirez-Parada

Department of Ecology, Evolution, and Marine Biology, University of California

I

Isaac W. Park

Department of Biology, Georgia Southern University

S

Shijia Peng

Department of Organismic and Evolutionary Biology, Harvard University Herbaria, Harvard University

M

Misako Nishino

Biota of North America Program

J

John T. Kartesz

Biota of North America Program

S

Sydne Record

Department of Wildlife, Fisheries, and Conservation Biology, University of Maine

C

Charles C. Davis

Department of Organismic and Evolutionary Biology, Harvard University Herbaria, Harvard University

S

Susan J. Mazer

Department of Ecology, Evolution, and Marine Biology, University of California