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Journal Article

Modelling the spatial abundance of invasive deer and their impacts on vegetation at the landscape scale

Melissa Fedrigo; Ami Bennett; Stephen B. Stewart; David M. Forsyth; Joe Greet
Biological Invasions · Vol. 26, Issue 6 · pp. 1901-1918 · 2024

Abstract

Deer populations and their impacts on forest ecosystems are increasing globally. Given the imperative and expense to mitigate impacts of invasive deer, we aimed to elucidate critical drivers of (i) deer density, (ii) deer impacts, and (iii) the relationship between them, to facilitate targeted management. We used quantile regression forests to model deer density (faecal pellet counts at 1948 locations) and impacts (browsing and other impacts on > 23,000 woody plants at 343 locations) across a mosaic of agricultural and forested ecosystems in Victoria, Australia (12,775 km 2 ). Climate, topography, vegetation cover, and distance to water features were included as model covariates. Modelled deer density ( r 2 = 0.71, MAE = 0.56 pellets/m 2 ) was most influenced by distance to waterbodies (> 10 ha, 31.2%), elevation (14.3%) and woody vegetation cover (12.9%). Modelled deer impact ( r 2 = 0.32, MAE = 6.9%) was most influenced by deer density (21.0%), mean annual precipitation (12.8%) and elevation (12.2%). Deer density was typically highest near large waterbodies, at low elevation, and with intermediate tree cover (40–70%). Impacts increased steadily with deer density up to ~ 2 pellets/m 2 . Our study demonstrates the importance of forest water and forest agricultural interfaces for both deer density and impacts. Deer are likely to be most abundant near waterbodies due to the availability of high-quality forage and water, and prefer lowland locations that have access to both open and forested habitats. Spatial models can be used to predict deer density and associated impacts to facilitate targeted invasive deer management.

Bibliographic Information

JournalBiological Invasions
PublisherSpringer
Publication Date2024-06-01
Publication Year2024
Volume26
Issue6
Pages1901-1918
Document TypeJournal Article
Print ISSN1387-3547
eISSN1573-1464
DOI10.1007/s10530-024-03282-w

Access Information

NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10530
Publisher PageOpen Publisher Page
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