Data

Data: Aridity modulates post-fire succession of plant communities and plant function groups in two vegetation types.

La Trobe University
Rachel McIntosh (Aggregated by)
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.26181/29369474.v1&rft.title=Data: Aridity modulates post-fire succession of plant communities and plant function groups in two vegetation types.&rft.identifier=10.26181/29369474.v1&rft.publisher=La Trobe University&rft.description=AimsUnderstanding how plant communities change during post-fire succession is essential for effective fire management that seeks to ensure both human safety and biodiversity conservation. We investigated post-fire succession of plant communities along an environmental gradient in semi-arid southern Australia and compared fire responses for two vegetation types in each of two climate zones.LocationTwo conservation reserve systems in Victoria, south-eastern Australia: Little Desert National Park (132,000 ha; ‘less-arid zone’) and Big Desert Wilderness Area/Wyperfeld National Park (744,850 ha; ‘more-arid zone’).MethodsWe conducted floristic surveys at 251 sites, stratified by climate zone, vegetation type, and time since last fire (across a 75-year chrono-sequence).ResultsTime since fire had a significant influence on floristic composition, species richness and species diversity in each vegetation type and across both climate zones. Floristic composition between sites within early successional age-classes tended to be more similar than composition within late successional age-classes. There were distinct patterns of post-fire succession between climate zones, with time-since-fire having a stronger influence in the more-arid environment. Above-ground species richness and species diversity declined with increasing time since fire. Species diversity of several functional trait groups exhibited divergent time-since-fire responses between climate zones; notably, resprouter diversity was lower and declined more rapidly in the more-arid zone.ConclusionsTime-since-fire had a strong influence on post-fire vegetation succession, with such patterns also influenced by climate for a given vegetation type or fire-response trait group. We highlight the need for context-specific fire management, particularly when applying guidelines across environmental gradients, to ensure the provision of diverse age-classes across the landscape that meet the needs of both plants and animals. This is particularly relevant in the light of a mega-fire (>90,000 ha) in Jan 2025, that reduced >65% of the less-arid study zone to a single age-class.&rft.creator=Rachel McIntosh&rft.date=2025&rft_rights= https://creativecommons.org/licenses/by/4.0/&rft_rights=© 2025 The Author(s). This dataset is open access distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license: https://creativecommons.org/licenses/by/4.0&rft_subject=Climate gradient&rft_subject=fire management&rft_subject=fire-response traits&rft_subject=heathland&rft_subject=mallee&rft_subject=plant communities&rft_subject=Post-fire succession&rft_subject=time-since-fire&rft.type=dataset&rft.language=English Access the data

Licence & Rights:

Other view details
Cc by 4.0

https://creativecommons.org/licenses/by/4.0/

© 2025 The Author(s). This dataset is open access distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license: https://creativecommons.org/licenses/by/4.0

Access:

Other

Full description

Aims

Understanding how plant communities change during post-fire succession is essential for effective fire management that seeks to ensure both human safety and biodiversity conservation. We investigated post-fire succession of plant communities along an environmental gradient in semi-arid southern Australia and compared fire responses for two vegetation types in each of two climate zones.

Location

Two conservation reserve systems in Victoria, south-eastern Australia: Little Desert National Park (132,000 ha; ‘less-arid zone’) and Big Desert Wilderness Area/Wyperfeld National Park (744,850 ha; ‘more-arid zone’).

Methods

We conducted floristic surveys at 251 sites, stratified by climate zone, vegetation type, and time since last fire (across a 75-year chrono-sequence).

Results

Time since fire had a significant influence on floristic composition, species richness and species diversity in each vegetation type and across both climate zones. Floristic composition between sites within early successional age-classes tended to be more similar than composition within late successional age-classes. There were distinct patterns of post-fire succession between climate zones, with time-since-fire having a stronger influence in the more-arid environment. Above-ground species richness and species diversity declined with increasing time since fire. Species diversity of several functional trait groups exhibited divergent time-since-fire responses between climate zones; notably, resprouter diversity was lower and declined more rapidly in the more-arid zone.

Conclusions

Time-since-fire had a strong influence on post-fire vegetation succession, with such patterns also influenced by climate for a given vegetation type or fire-response trait group. We highlight the need for context-specific fire management, particularly when applying guidelines across environmental gradients, to ensure the provision of diverse age-classes across the landscape that meet the needs of both plants and animals. This is particularly relevant in the light of a mega-fire (>90,000 ha) in Jan 2025, that reduced >65% of the less-arid study zone to a single age-class.

Issued: 02 07 2025

This dataset is part of a larger collection

Click to explore relationships graph
Subjects

User Contributed Tags    

Login to tag this record with meaningful keywords to make it easier to discover

Identifiers
ACN 633 798 857