Plant population responses to environmental variability are primarily driven by survival-reproduction trade-offs and mediated by aridity

G Gabriel Silva Santos X Xianyu Yang S Samuel J. L. Gascoigne (School of Biological Sciences, University of Aberdeen) A Aldo Compagnoni (Institute of Biology) A André T. C. Dias S Shripad Tuljapurkar M Maja Kajin R Roberto Salguero-Gómez

Abstract

Abstract Natural populations may suffer negatively from increased environmental variability due to climate change; however, several mechanisms can mitigate those effects by changing the vital rates of a population ( e.g ., survival, reproduction). Despite important analytical and theoretical advances, we still do not know how and to what extent environmental regimes, life history traits, and evolutionary history determine the buffering capacity of natural populations. To address these questions, we parameterise a Bayesian generalised linear mixed model with high-resolution vital rate data from 121 natural populations across 78 plant species. We show that population responses to environmental variability vary four orders of magnitude along a ‘demographic buffering continuum’. Furthermore, the position of a given population along said continuum is predicted by a survival - reproduction trade-off and by the degree of aridity the population experiences. Our findings open a promising avenue of research to improve ecological forecasts and management of natural populations in the Anthropocene.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 28, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

G

Gabriel Silva Santos

X

Xianyu Yang

S

Samuel J. L. Gascoigne

School of Biological Sciences, University of Aberdeen

A

Aldo Compagnoni

Institute of Biology

A

André T. C. Dias

S

Shripad Tuljapurkar

M

Maja Kajin

R

Roberto Salguero-Gómez