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January 22, 2026Australian Journal of Botany1 citations

The effectiveness of seed rain in recolonising an ecotonal mesic forest following extreme severity fire

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RPRuby ParoissienRTRyan TangneyCOCatherine A. Offord

Key Points

  • The aim is to understand how seed rain and traits influence plant recovery in mesic forests following severe fires.
  • Placed seed traps at two locations in the Blue Mountains, Australia.
  • Collected and identified seeds monthly for three years after varying fire severities.
  • Compared seed diversity with existing vegetation and measured dispersal distances.
  • Used variable selection to assess traits affecting dispersal distances.
  • Rainforest species were mostly absent in burned areas and seed rain.
  • Dispersal was mainly from local sources with distances influenced by life form and dispersal type.
  • Notable differences in species richness and composition were found between unburnt and variably burned sites.
  • Increased fire severity leads to longer recovery times and minimal recolonisation from unburnt areas.

Abstract

Context As fire severity and extent increase, recovery of fire-sensitive species in plant communities may rely increasingly on seed rain and dispersal from adjacent unburnt areas. The role dispersal plays in driving recovery trajectories is surprisingly understudied. How traits drive dispersal can contextualise compositional differences and indicate recovery trajectories. Aims This paper investigated seed rain in recently burned mesic forest, and the role of traits in driving post-fire recovery across a gradient of fire severities. Methods We placed seed traps at two locations in the Blue Mountains, located in south-eastern Australia. All seeds that fell into seed traps were collected and identified each month for a year, three years following fire of differing severities. We then compared species diversity of seed collections with extant vegetation and measured the minimum dispersal distance each species likely travelled. Variable selection was used to identify which traits impacted dispersal distances. Key results Rainforest species were generally lacking from recently burned sites in both extant vegetation and the seed rain. Composition of the seed rain indicated dispersal occurred primarily from local sources, with minimum distance travelled largely determined by life form, dispersal type and dispersal height. Differences in species richness and composition between unburnt and sites burnt at differing severities was observed in both extant vegetation and in the seed rain. Conclusions Increasing fire severity suggests lengthening recovery times, with recolonisation from unburnt areas minimal and slow. Implications The commonality of local dispersal highlights the importance of surviving individuals for maintaining diversity and replenishing populations.

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Cite This Study

Paroissien et al. (2026) studied this question.

synapsesocial.com/papers/6971bdcf642b1836717e27cehttps://doi.org/10.1071/bt25061
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