Search results
Results: 36
Number of items: 36
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Kou, X., Morriën, E., Tian, Y., Zhang, X., Lu, C., Xie, H., Liang, W., Li, Q., & Liang, C. (2023). Exogenous carbon turnover within the soil food web strengthens soil carbon sequestration through microbial necromass accumulation. Global Change Biology, 29(14), 4069-4080. https://doi.org/10.1111/gcb.16749 -
Hannula, S. E., & Morriën, E. (2022). Will fungi solve the carbon dilemma? Geoderma, 413, Article 115767. https://doi.org/10.1016/j.geoderma.2022.115767 -
Zhang, J., Ai, Z., Liu, H., Tang, D. W. S., Yang, X., Wang, G., Liu, Y., Liu, G., Morriën, E., & Xue, S. (2022). Short-term N addition in a Pinus tabuliformis plantation: Microbial community composition and interactions show different linkages with ecological stoichiometry. Applied Soil Ecology, 174, Article 104422. https://doi.org/10.1016/j.apsoil.2022.104422 -
Ochoa-Hueso, R., Delgado-Baquerizo, M., Risch, A. C., Schrama, M., Morriën, E., Barmentlo, S. H., Geisen, S., Hannula, S. E., Resch, M. C., Snoek, B. L., & van der Putten, W. H. (2021). Ecosystem coupling: A unifying framework to understand the functioning and recovery of ecosystems. One Earth, 4(7), 951-966. https://doi.org/10.1016/j.oneear.2021.06.011 -
Krishna, M., Gupta, S., Delgado–Baquerizo, M., Morriën, E., Garkoti, S. C., Chaturvedi, R., & Ahmad, S. (2020). Successional trajectory in soil bacterial communities are shaped by plant-driven changes in soil during secondary succession. Scientific Reports, 10, Article 9864. https://doi.org/10.1038/s41598-020-66638-x -
Kooijman, A. M., Morriën, E., Jagers op Akkerhuis, G., Missong, A., Bol, R., Klumpp, E., van Hall, R., van Til, M., Kalbitz, K., & Bloem, J. (2020). Resilience in coastal dune grasslands: pH and soil organic mattereffects on P nutriti on, plant strategies, and soil communities. Ecosphere, 11(5), Article e03112. https://doi.org/10.1002/ecs2.3112 -
Moreno-Mateos, D., Alberdi, A., Morriën, E., van der Putten, W. H., Rodríguez-Uña, A., & Montoya, D. (2020). The long-term restoration of ecosystem complexity. Nature Ecology and Evolution, 4, 676-685. https://doi.org/10.1038/s41559-020-1154-1 -
Hannula, S. E., Morriën, E., van der Putten, W. H., & de Boer, W. (2020). Rhizosphere fungi actively assimilating plant-derived carbon in a grassland soil. Fungal Ecology, 48, Article 100988. https://doi.org/10.1016/j.funeco.2020.100988 -
Oostra, R.-J., Gelderman, T., Groen, W. J. M., Uiterdijk, H. G., Cammeraat, E. L. H., Krap, T., Wilk, L. S., Lüschen, M., Morriën, W. E., Wobben, F., Duijst, W. L. J. M., & Aalders, M. C. G. (2020). Amsterdam Research Initiative for Sub-surface Taphonomy and Anthropology (ARISTA) - A taphonomic research facility in the Netherlands for the study of human remains. Forensic Science International, 317, Article 110483. https://doi.org/10.1016/j.forsciint.2020.110483 -
Veen, G. F., Fry, E. L., ten Hooven, F. C., Kardol, P., Morriën, E., & De Long, J. R. (2019). The Role of Plant Litter in Driving Plant-Soil Feedbacks. Frontiers in Environmental Science, 7, Article 168. https://doi.org/10.3389/fenvs.2019.00168
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