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Increasing spatial scale of analysis weakens and can mask the dilution effect for hantaviruses

Bibliographic Data

ID24144063
AuthorsAna Laura Vigueras-Galván (0000-0002-9840-2360, Universidad Nacional Autonoma de Mexico, corresponding author), Celine Arnathau (0000-0003-0234-6462, Centre National de la Recherche Scientifique), Oscar Rico-Chávez (Universidad Nacional Autonoma de Mexico), Oscar Rico‐Chávez (0000-0002-9833-1101, Universidad Nacional Autonoma de Mexico), Matthew T Milholland (0000-0001-9398-7243, University of Maryland, College Park), María L Vargas (Universidad Nacional Autonoma de Mexico), Gerardo Suzán (0000-0003-2508-6376, Universidad Nacional Autonoma de Mexico), Carlos Zambrana-Torrelio (George Mason University), Iván Castro-Arellano (0000-0002-0696-8982, Texas State University), James N Mills (Emory University), María Eugenia Morales (0000-0002-5265-4466, World Health Organization Regional Office for the Americas), Heliot Zarza Villanueva (Universidad Autónoma Metropolitana), Benjamin Roche (0000-0001-7975-4232, Centre National de la Recherche Scientifique), Audrey Arnal (0000-0002-5977-8816, Centre National de la Recherche Scientifique)
EditorsJulia Robinson (0000-0003-0719-3995, PLOS: Public Library of Science)
Year2026
Volume6
Issue9
Pagese0007045
Publication date2026-09-08
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenuePLOS Global Public Health (JOURNAL)
Journal identifiersISSN: 2767-3375 • E-ISSN: 2767-3375
PublisherPublic Library of Science (PLoS) (PUBLISHER)
DOI10.1371/journal.pgph.0007045
PMID42709750
OpenAlexW7211947710
LanguageEN
References cited38

Despite its major implications for biodiversity conservation and public health, the generality of a protective effect of biodiversity on zoonotic pathogen transmission ( i.e. , the dilution effect) remains strongly debated. This controversy may partly arise from the diversity of analytical approaches used, but also from the spatial scales at which studies are conducted. Here, we explicitly test whether increasing the spatial scale of analysis affects the detection of the relationship between hantavirus infection prevalence and rodent species richness, using a global dataset spanning multiple regions. Although the association between species richness and infection prevalence remains negative across all spatial scales, we show that the magnitude of the dilution effect progressively weakens as spatial aggregation increases and can become statistically non-significant at coarse spatial resolutions. These results, which are consistent across world regions, indicate that the dilution effect is likely a general feature of hantavirus–rodent systems, but that its empirical detection is highly sensitive to the spatial scale of analysis. Our findings highlight how large-scale spatial aggregation can mask underlying ecological processes and emphasize the need to carefully match spatial scale to the biological mechanisms under investigation when testing biodiversity–disease relationships. Finally, we discuss the ecological and methodological mechanisms that may obscure dilution effects and outline why scale-explicit approaches are essential for robust inference in biodiversity-disease research.

Biodiversity · Generality · Inference · Macroecology · Scale (ratio) · Spatial analysis · Spatial correlation · Spatial ecology · Species richness · Vector-Borne Animal Diseases · Viral Infections and Vectors · Zoonotic diseases and public health

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Citation velocityhistorical
Highly citedNo
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