Environmental Reviews, volume 32, issue 4, pages 498-524

Restoring forest ecosystem services through trait-based ecology

Isabelle Aubin 1
I. Aubin 2
Élise Deschênes 1
Elise Deschenes 2
Kierann Santala 1
Kierann R Santala 2
Erik J S Emilson 1
E J S Emilson 2
Amanda L Schoonmaker 3, 4
Anne C S Mcintosh 5
Bérenger Bourgeois 6, 7
Françoise Cardou 8
Angélique Dupuch 9, 10
I. Tanya Handa 11
Mélanie Lapointe 12, 13
Jonathan Lavigne 2
Audrey Maheu 10, 14
Solange Nadeau 15
M. ANNE NAETH 16
Eric W Neilson 17, 18
Philip A. Wiebe 2, 19
Show full list: 21 authors
3
 
Northern Alberta Institute of Technology, 41464, Edmonton, Alberta, Canada;
4
 
Centre for Boreal Research, Northern Alberta Institute of Technology, Peace River, AB, Canada
12
 
Ville de Montreal, 98579, Service des grands parcs, Montreal, Quebec, Canada;
13
 
Service des grands parcs, du Mont-Royal et des sports, Ville de Montréal, Québec, Canada
Publication typeJournal Article
Publication date2024-12-01
scimago Q1
SJR1.316
CiteScore9.8
Impact factor4.3
ISSN11818700, 12086053
Abstract

Restoration is moving towards a more mechanistic approach that emphasizes restoration of ecosystem services. Trait-based approaches provide links between species identity and ecosystem functions and have been suggested as a promising way to formally integrate ecosystem services in the design of restoration programs. While practitioners have been routinely using informal knowledge on plant traits in their practices, these approaches are underutilized as operationalization remains challenging. The goal of this paper is to provide guidance for applied scientists and restoration practitioners looking to apply a trait-based approach to restore forest ecosystems. We present a five-step framework: (1) selection of services to be restored, (2) trait selection, (3) data acquisition, (4) analytical planning, and (5) empirical testing and monitoring. We use three Canadian case studies to illustrate the applicability of our framework and the variety of ways trait-based approaches can inform restoration practices: (1) restoration of urban woodlots after an insect outbreak, (2) restoration of a smelter-damaged landscape surrounding an urban area, and (3) reclamation of remote upland forests after oil- and gas-related disturbances. We describe the major mechanisms and traits that determine vegetation effects on ecosystem services of importance in each case study. We then discuss data availability, methodological constraints, comparability issues, analytical methods, and the importance of empirical testing and monitoring to ensure realistic prediction of service restoration. By outlining issues and offering practical information, we aim to contribute to a more robust use of traits in ecological restoration.

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