Search results
Results: 58
Number of items: 58
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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 -
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 -
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
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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
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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
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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
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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 -
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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