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Results: 58
Number of items: 58
  • Open Access
    Knight, C. G., Nicolitch, O., Griffiths, R. I., Goodall, T., Jones, B., Weser, C., Langridge, H., Davison, J., Dellavalle, A., Eisenhauer, N., Gongalsky, K. B., Hector, A., Jardine, E., Kardol, P., Maestre, F. T., Schädler, M., Semchenko, M., Stevens, C., Tsiafouli, M., ... de Vries, F. T. (2024). Soil microbiomes show consistent and predictable responses to extreme events. Nature, 636(8043), 690–696. https://doi.org/10.1038/s41586-024-08185-3
  • Open Access
    Gao, C., Hannula, S. E., van Bodegom, P. M., Bezemer, T. M., de Vries, F. T., Hassink, J., in ’t Zandt, M. H., & Moinet, G. Y. K. (2024). Land use intensity differently affects soil microbial functional communities in arable fields. Applied Soil Ecology, 204, Article 105723. https://doi.org/10.1016/j.apsoil.2024.105723
  • Open Access
    Johnson, K., Kihara, J., Fan, M., Congreves, K. A., González-Pérez, J. A., Deb, S., & de Vries, F. (2024). Understanding soil health. One Earth, 7(12), 2088-2091. https://doi.org/10.1016/j.oneear.2024.11.011
  • Gliesch Silva, M., de Vries, F., & De Vries, F. (2024, March 18). Heathland management affects soil response to drought [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.24146508.v3
  • Enderle, E., de Vries, F., & Hou, F. (2024, October 28). Plant-soil feedback responses to drought are species-specific and only marginally predicted by root traits [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.26348590.v1
  • Open Access
    Lavallee, J. M., Chomel, M., Alvarez Segura, N., de Castro, F., Goodall, T., Magilton, M., Rhymes, J. M., Delgado-Baquerizo, M., Griffiths, R. I., Baggs, E. M., Caruso, T., de Vries, F. T., Emmerson, M., Johnson, D., & Bardgett, R. D. (2024). Land management shapes drought responses of dominant soil microbial taxa across grasslands. Nature Communications, 15, Article 29. https://doi.org/10.1038/s41467-023-43864-1
  • Heredia Acuña, C., Semchenko, M., & de Vries, F. (2023, September 27). Root litter decomposition is suppressed in species mixtures and in the presence of living roots [Data set]. DRYAD. https://doi.org/10.5061/dryad.6m905qg5r
  • Li, P., Tedersoo, L., Crowther, T. W., Dumbrell, A. J., Dini-Andreote, F., Bahram, M., Kuang, L., Li, T., Wu, M., Jiang, Y., Luan, L., Saleem, M., de Vries, F. T., Li, Z., Wang, B., & Jiang, J. (2023). Fossil-fuel-dependent scenarios could lead to a significant decline of global plant-beneficial bacteria abundance in soils by 2100. Nature Food, 4(11), 996–1006. https://doi.org/10.1038/s43016-023-00869-9
  • Open Access
    de Vries, F., Lau, J., Hawkes, C., & Semchenko, M. (2023). Plant–soil feedback under drought: does history shape the future? Trends in Ecology and Evolution, 38(8), 708-718. https://doi.org/10.1016/j.tree.2023.03.001
  • Open Access
    Rodríguez, A., de Vries, F. T., Manning, P., Sebastià, M. T., & Bardgett, R. D. (2023). Soil Abiotic Properties Shape Plant Functional Diversity Across Temperate Grassland Plant Communities. Ecosystems, 26(5), 1000–1017. https://doi.org/10.1007/s10021-022-00812-2
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