Cultural advice

The Australian National University acknowledges, celebrates and pays our respects to the Ngunnawal and Ngambri people of the Canberra region and to all First Nations Australians on whose traditional lands we meet and work, and whose cultures are among the oldest continuing cultures in human history.

Aboriginal and Torres Strait Islander peoples are advised that ANU Library collections may include images, names, voices, and other representations of deceased persons.

Material in the collection may contain terms, language or views that reflect the period in which the item was created and may be considered inappropriate today.

Do temporal changes in vegetation structure additional to time since fire predict changes in bird occurrence?

Loading...
Thumbnail Image

Authors

Candy, Steve G
MacGregor, Christopher I
Banks, Samuel
Westgate, Martin
Ikin, Karen
Pierson, Jennifer
Tulloch, Ayesha
Barton, Philip
Lindenmayer, David B

Journal Title

Journal ISSN

Volume Title

Publisher

Ecological Society of America

Abstract

Fire is a major ecological process in ecosystems globally. Its impacts on fauna can be both direct (e.g. mortality) and indirect (e.g. altered habitat), resulting in population recovery being driven by several possible mechanisms. Separating direct from indirect impacts of fire on faunal population recovery can be valuable in guiding management of biodiversity in fire-prone environments. However, resolving the influence of direct and indirect processes remains a key challenge because many processes affecting fauna can change concomitantly with time since fire. We explore the mechanisms influencing bird response to fire by posing the question: Can temporal changes in vegetation structure predict changes in bird occurrence on sites, and can these be separated from other temporal changes using the surrogate of time since fire? We conducted a 12-year study of bird and vegetation responses to fire at 124 sites across six vegetation classes in Booderee National Park, Australia. Approximately half of these sites, established in 2002, were burnt by a large (> 3000 ha) wildfire in 2003. To disentangle collinear effects of temporal changes in vegetation and direct demographic effects on population recovery that are subsumed by time since fire, we incorporated both longitudinal and cross-sectional vegetation effects in addition to time since fire within logistic structural equation models. We identified temporal changes in vegetation structure and richness of plant and bird species that characterized burnt and unburnt sites in all vegetation classes. For nine bird species, a significant component of the year trend was driven by temporal trends in one of three vegetation variables (number of understory or midstory plant species, or midstory cover). By contrast, we could not separate temporal effects between time since fire and vegetation attributes for bird species richness, reporting rate, and the occurrence of 11 other bird species. Our findings help identify species for which indirect effects of vegetation dominate recovery and thus may benefit from vegetation management where conservation actions are required and, conversely, those species for which direct effects of time since fire drive recovery, where simply leaving a system to recover following the last disturbance will be sufficient.

Description

Citation

Lindenmayer DB, SG Candy, CI MacGregor, SC Banks, M Westgate, K Ikin, J Pierson, A Tulloch, P Barton (2016) Do temporal changes in vegetation structure additional to time since fire predict changes in bird occurrence? ECOLOGICAL APPLICATIONS 26(7):2267-2279
Lindenmayer, D. B., Candy, S. G., MacGregor, C. I., Banks, S. C., Westgate, M. , Ikin, K. , Pierson, J. , Tulloch, A. and Barton, P. (2016), Do temporal changes in vegetation structure additional to time since fire predict changes in bird occurrence?. Ecol Appl, 26: 2267-2279. doi:10.1002/eap.1367

Source

Ecological Applications

Book Title

Entity type

Access Statement

Open Access

License Rights

Restricted until