Articles dans des revues avec comité de lecture (147)

  1. 8. Meerts, P. J. (2022). New identifications of Lamiaceae (Lamioideae and Scutellarioideae) from D.R. Congo, Rwanda and Burundi. Bothalia, 52(1), 0006-8241. doi:10.38201/btha.abc.v52.I1.9
  2. 9. Nkulu, S. N., Meerts, P. J., wa Ilunga, E. I., Shutcha, M. N., & Bauman, D. (2022). Medicinal Vitex species (Lamiaceae) occupy different niches in Haut-Katanga tropical dry woodlands. Plant ecology and evolution, 155(2), 236-247. doi:10.5091/plecevo.89394
  3. 10. Boom, A., Migliore, J., Kaymak, E., Meerts, P. J., & Hardy, O. J. (2022). Nuclear ribosomal phylogeny of Brachystegia: new markers for new insights about rain forests and Miombo woodlands evolution. Plant ecology and evolution, 155(2), 301-314. doi:10.5091/PLECEVO.91373
  4. 11. Boom, A., Migliore, J., Kaymak, E., Meerts, P. J., & Hardy, O. J. (2021). Plastid introgression and evolution of African miombo woodlands: New insights from the plastome‐based phylogeny of Brachystegia trees. Journal of biogeography. doi:10.1111/jbi.14051
  5. 12. Bordbar, F. F., & Meerts, P. J. (2020). Patterns in the alien flora of the Democratic Republic of the Congo: a comparison of Asteraceae and Fabaceae. Plant ecology and evolution, 153, 373-389. doi:https://doi.org/10.5091/plecevo.2020.1754
  6. 13. Cuma Mushagalusa, F., Bauman, D., Mujinya Bazirake, B., Mleci, Y., Kalenga, M., Shutcha, M. N., & Meerts, P. J. (2020). Phenotypic plasticity, not ecotype differentiation, explains the broad ecological niche of a tree species in African dry woodlands. Environmental and experimental botany, 178, 104186. doi:10.1016/j.envexpbot.2020.104186
  7. 14. Delhaye, G., Bauman, D., Séleck, M., Ilunga wa ilunga, E., Mahy, G., & Meerts, P. J. (2020). Interspecific trait integration increases with environmental harshness: A case study along a metal toxicity gradient. Functional ecology, 34, 1428–1437. doi:10.1111/1365-2435.13570
  8. 15. Delhaye, G., Hardy, O. J., Séleck, M., Ilunga wa ilunga, E., Mahy, G., & Meerts, P. J. (2020). Plant community assembly along a natural metal gradient in central Africa: Functional and phylogenetic approach. Journal of vegetation science, 31, 151-161. doi:10.1111/jvs.12829
  9. 16. Meerts, P. J. (2020). The genus Vitex (Lamiaceae) in the flora of Cameroon. Phytotaxa, 434(2), 131-150. doi:10.11646/phytotaxa.434.2.1
  10. 17. Ilunga Muledi, J., Bauman, D., Jacobs, A., Meerts, P. J., Ngoy Shutcha, M., & Drouet, T. (2020). Tree growth, recruitment, and survival in a tropical dry woodland: The importance of soil and functional identity of the neighbourhood. Forest ecology and management, 460, 117894. doi:10.1016/j.foreco.2020.117894
  11. 18. Kattge, J., Meerts, P. J., et al. (2020). TRY plant trait database – enhanced coverage and open access. Global change biology, 26(1), 119-188. doi:10.1111/gcb.14904
  12. 19. Cuma Mushagalusa, F., Bauman, D., Ngoy Shutcha, M., & Meerts, P. J. (2019). Trait divergence of woody species in relation to affinity for termite mounds in Upper Katanga (DR Congo). Journal of vegetation science, 31, 162-172. doi:10.1111/jvs.12827

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