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March 14, 2026Plant Ecology0 citationsOpen Access

Fire and frost can slow down tree colonization in cerrado wet grasslands

JRJonathan Wesley Ferreira RibeiroNPNatashi A. L. PilonGDGiselda Durigan

Key Points

  • The research aims to understand how fire and frost affect tree establishment in wet grasslands.
  • Planted nursery-raised seedlings of three different tree species.
  • Assessed survival, height, and growth before and after fire and frost disturbances.
  • Evaluated the impact of frost five months after planting and a prescribed fire three years later.
  • Frost reduced survival of gallery forest species by 13% and caused significant damage to other species.
  • Fire reduced survival by 22% in gallery forest species and 45% in savanna species.
  • Recovery of pre-frost height could take up to four years, while pre-fire height recovery estimated at 13 months.

Abstract

Abstract Forests, savannas, and grasslands occur as mosaics in many tropical regions, yet the drivers of different vegetation types under similar climates remain unclear. In this study, we evaluated fire and frost as potential constraints on tree establishment in a cerrado wet grassland at the transition from gallery forests to savannas. We planted nursery-raised seedlings of three species: one restricted to gallery forests, one to dry savannas, and one generalist. Five months later, a frost affected the site, and three years later, a prescribed fire was applied. Seedlings were assessed before and after each disturbance to quantify survival, height, and growth. Frost reduced the survival of the gallery forest species by 13% and caused greater above-ground damage in the gallery forest (36%) and generalist (35%) species than in the savanna species (20%), also delaying growth in all species, with recovery of pre-frost height estimated at up to four years. Fire reduced survival by 22% in the gallery forest and 45% in the savanna species and caused widespread topkill across species. Nevertheless, seedlings were estimated to recover pre-fire height within 13 months. The flood-intolerant savanna species showed the lowest recovery after both disturbances, suggesting resilience depends on tolerance to hypoxic and anoxic conditions. Disturbance severity and frequency can play a crucial role in maintaining open vegetation where environmental and climate change may drive a shift toward woodlands.

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Cite This Study

Ribeiro et al. (2026) studied this question.

synapsesocial.com/papers/69b4fb8db39f7826a300bc75https://doi.org/10.1007/s11258-026-01617-2
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