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The effect of natural disturbances on forest biodiversity: an ecological synthesis

189Citations signalées, ce qui n’est pas une note de qualité
55Institutions déclarées
20Pays d’affiliation déclarés

Rattachement africain : de, us, cz, br, ar, tw, Maroc, kr, pt, cl, ee, ru, se, fi, gr, es, au, mx, ch, gb. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Disturbances alter biodiversity via their specific characteristics, including severity and extent in the landscape, which act at different temporal and spatial scales. Biodiversity response to disturbance also depends on the community characteristics and habitat requirements of species. Untangling the mechanistic interplay of these factors has guided disturbance ecology for decades, generating mixed scientific evidence of biodiversity responses to disturbance. Understanding the impact of natural disturbances on biodiversity is increasingly important due to human-induced changes in natural disturbance regimes. In many areas, major natural forest disturbances, such as wildfires, windstorms, and insect outbreaks, are becoming more frequent, intense, severe, and widespread due to climate change and land-use change. Conversely, the suppression of natural disturbances threatens disturbance-dependent biota. Using a meta-analytic approach, we analysed a global data set (with most sampling concentrated in temperate and boreal secondary forests) of species assemblages of 26 taxonomic groups, including plants, animals, and fungi collected from forests affected by wildfires, windstorms, and insect outbreaks. The overall effect of natural disturbances on α-diversity did not differ significantly from zero, but some taxonomic groups responded positively to disturbance, while others tended to respond negatively. Disturbance was beneficial for taxonomic groups preferring conditions associated with open canopies (e.g. hymenopterans and hoverflies), whereas ground-dwelling groups and/or groups typically associated with shady conditions (e.g. epigeic lichens and mycorrhizal fungi) were more likely to be negatively impacted by disturbance. Across all taxonomic groups, the highest α-diversity in disturbed forest patches occurred under moderate disturbance severity, i.e. with approximately 55% of trees killed by disturbance. We further extended our meta-analysis by applying a unified diversity concept based on Hill numbers to estimate α-diversity changes in different taxonomic groups across a gradient of disturbance severity measured at the stand scale and incorporating other disturbance features. We found that disturbance severity negatively affected diversity for Hill number q = 0 but not for q = 1 and q = 2, indicating that diversity-disturbance relationships are shaped by species relative abundances. Our synthesis of α-diversity was extended by a synthesis of disturbance-induced change in species assemblages, and revealed that disturbance changes the β-diversity of multiple taxonomic groups, including some groups that were not affected at the α-diversity level (birds and woody plants). Finally, we used mixed rarefaction/extrapolation to estimate biodiversity change as a function of the proportion of forests that were disturbed, i.e. the disturbance extent measured at the landscape scale. The comparison of intact and naturally disturbed forests revealed that both types of forests provide habitat for unique species assemblages, whereas species diversity in the mixture of disturbed and undisturbed forests peaked at intermediate values of disturbance extent in the simulated landscape. Hence, the relationship between α-diversity and disturbance severity in disturbed forest stands was strikingly similar to the relationship between species richness and disturbance extent in a landscape consisting of both disturbed and undisturbed forest habitats. This result suggests that both moderate disturbance severity and moderate disturbance extent support the highest levels of biodiversity in contemporary forest landscapes.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
The effect of natural disturbances on forest biodiversity: an ecological synthesis
Date Crossref
08/07/2022
Éditeur
Wiley
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

University of WürzburgUniversity of Nevada, Las VegasCharles UniversityCzech Academy of Sciences, Institute of BotanyInstituto Nacional de Pesquisas da AmazôniaSan Diego State UniversityBavarian Forest National ParkMontana State UniversityConsejo Nacional de Investigaciones Científicas y TécnicasUniversidad Nacional de CórdobaInstituto Multidisciplinario de Biología VegetalPoint Blue Conservation ScienceNational Tsing Hua UniversityAbdelmalek Essaâdi UniversityCentre National pour la Recherche Scientifique et Technique (CNRST)Seoul National UniversityUniversity of AveiroColorado State UniversityOregon State UniversityUniversidad de La FronteraPontificia Universidad Católica de ChileUniversity of GeorgiaNorthern Arizona UniversityUniversity of TartuSevertsov Institute of Ecology and EvolutionSouthern Research StationStockholm UniversityCal Poly HumboldtUniversity of Eastern FinlandFinland UniversityMontana Department of TransportationLouisiana Department of Natural ResourcesMontana Department of Environmental QualityClemson UniversityUniversity of the AegeanUniversidad de GranadaAustralian National UniversityMax Planck Institute for BiogeochemistryUniversidad de ValladolidManagement Research InstituteUniversidad Nacional Autónoma de MéxicoSwiss Federal Institute for Forest, Snow and Landscape ResearchUniversitat de GironaUniversity of ReadingInstitute of Ecology of Mountain TerritoriesNorth Idaho CollegeIdaho State Department of AgricultureCollege of Staten IslandUniversity of MichiganUniversidade do PortoUniversity of California, BerkeleyUniversidad de Buenos AiresCzech Academy of SciencesInstitute of EntomologyCzech Academy of Sciences, Biology Centre

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Ecology and Vegetation Dynamics StudiesForest Ecology and Biodiversity StudiesFire effects on ecosystems

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