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Ressources citées dans les capsules

  • Anthony, M. A., Bender, S. F., & Van Der Heijden, M. G. (2023). Enumerating soil biodiversity. Proceedings of the National Academy of Sciences120(33), e2304663120.
  • Association pulmonaire du Québec. Herbe à poux. Site consulté en janvier 2026. https://poumonquebec.ca/sante-pulmonaire/environnement/allergies-herbe-a-poux/
  • Biquette (2025). Biquette – Écopâturage. Site consulté en janvier 2026. https://www.biquette-eco.org/
  • Coutié, M & Lavoie, C. (11 mai 2023). Les origines de la pelouse et de son ennemi juré, le pissenlit. Aujourd’hui l’histoire, Ici Radio-Canada Première. https://ici.radio-canada.ca/ohdio/premiere/emissions/aujourd-hui-l-histoire/segments/entrevue/443104/pelouse-gazon-pissenlit-tondeuse-banlieue
  • Delgado-Baquerizo, M., Reich, P. B., Trivedi, C., Eldridge, D. J., Abades, S., Alfaro, F. D., ... & Singh, B. K. (2020). Multiple elements of soil biodiversity drive ecosystem functions across biomes. Nature ecology & evolution, 4(2), 210-220.
  • Fan, K., Chu, H., Eldridge, D. J., Gaitan, J. J., Liu, Y. R., Sokoya, B., ... & Delgado-Baquerizo, M. (2023). Soil biodiversity supports the delivery of multiple ecosystem functions in urban greenspaces. Nature Ecology & Evolution, 7(1), 113-126.
  • Fortin Faubert, M. et Huet A. 2024. Partage ta pelouse : identifier le potentiel de diversification du territoire par la transformation des pelouses. Fondation David Suzuki. 37 p.
  • Leblanc-Gagné, C., Brice, M. H., & Pellerin, S. (2025). Diversity and composition of plant communities in former lawns converted into urban meadows. Urban Ecosystems, 28(4), 174.
  • Lerman, S. B., & Contosta, A. R. (2019). Lawn mowing frequency and its effects on biogenic and anthropogenic carbon dioxide emissions. Landscape and Urban Planning, 182, 114-123.
  • Linske, M. A., & Williams, S. C. (2024). Evaluation of landscaping and vegetation management to suppress host-seeking Ixodes scapularis (Ixodida: Ixodidae) nymphs on residential properties in Connecticut, USA. Environmental Entomology, 53(2), 268-276.
  • MacInnis, G., Normandin, E., & Ziter, C. D. (2023). Decline in wild bee species richness associated with honey bee (Apis mellifera L.) abundance in an urban ecosystem. PeerJ, 11, e14699.
  • Ngom, R., & Gosselin, P. (2013). Development of a remote sensing-based method to map likelihood of common ragweed (Ambrosia artemisiifolia) presence in urban areas. IEEE Journal of selected topics in applied earth observations and remote sensing, 7(1), 126-139.
  • Proske, A., Lokatis, S., & Rolff, J. (2022). Impact of mowing frequency on arthropod abundance and diversity in urban habitats: a meta-analysis. Urban Forestry & Urban Greening, 76, 127714.
  • Slade, N. A., & Crain, S. (2006). Impact on rodents of mowing strips in old fields of eastern Kansas. Journal of Mammalogy, 87(1), 97-101.
  • Watson, C. J., Carignan‐Guillemette, L., Turcotte, C., Maire, V., & Proulx, R. (2020). Ecological and economic benefits of low‐intensity urban lawn management. Journal of Applied Ecology, 57(2), 436-446.

Autres ressources

  • Biella, P., Borghesan, S., Colombo, B., Galimberti, A., Guzzetti, L., Maggioni, D., ... & Labra, M. (2025). Lawn management promoting tall herbs, flowering species and urban park attributes enhance insect biodiversity in urban green areas. Urban Forestry & Urban Greening104, 128650.
  • Initiative Partage ta pelouse (2024) de la Fondation David Suzuki https://fr.davidsuzuki.org/passez-a-laction/agissez-localement/partage-ta-pelouse/
  • Rada, P., Bogusch, P., Rom, J., & Horák, J. (2024). Adding a mosaic mowing regime to urban lawns is the key to city biodiversity management for pollinators. Urban Forestry & Urban Greening99, 128452.

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