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March 18, 2026Annals of Botany2 citationsOpen Access

Fire-stimulated flowering enhances multiple plant fitness components

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JGJulia GegundeMCMaría Clara CastellanosJPJuli G Pausas

Key Points

  • The study aims to quantify the reproductive benefits of fire-stimulated flowering in fire-prone ecosystems.
  • Compared reproduction stages in burned and unburned areas across six wildfires
  • Analyzed flowering density, flower production, and seedling recruitment in four geophyte species
  • Assessed pollinator visitation and pollen deposition related to fire conditions
  • Higher flowering density and total seed output observed in burned areas
  • Increased pollinator visitation and pollen deposition in some species post-fire
  • Consistently higher seedling recruitment in burned areas compared to unburned areas

Abstract

Abstract Background and aims Fire is a key ecological driver shaping reproductive strategies in fire-prone ecosystems. One distinctive strategy is fire-stimulated flowering, whereby plants flower more profusely under post-fire conditions than in the absence of fire. Despite its widespread occurrence, the reproductive benefits of this strategy remain poorly quantified. We hypothesized that fire-stimulated flowering is an adaptive strategy that enhances plant fitness by increasing success across multiple reproductive stages. Methods We compared multi-year data on all stages of reproduction, from flowering density to seedling recruitment, in four Mediterranean geophytes (Asphodelus cerasifer, Dipcadi serotinum, Drimia maritima and Narcissus assoanus), between burned and adjacent unburned areas across six natural wildfires. Key results Plants in burned areas showed higher flowering density, flower production and total seed output, and in some species, this was also associated with increased pollinator visitation and pollen deposition. Seedling recruitment was consistently higher in burned areas. Conclusions Our results provide evidence of the adaptive value of fire-stimulated flowering, which allows plants to exploit the unique abiotic and biotic conditions of the immediate post-fire environment, and highlight fire as a key driver of plant life-history evolution in Mediterranean ecosystems.

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Cite This Study

Gegunde et al. (2026) studied this question.

synapsesocial.com/papers/69ba427c4e9516ffd37a2bafhttps://doi.org/10.1093/aob/mcag048
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