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Wangari, E. G., Teo, K. Y., Mwanake, R. M., Sangok, F. E., Lindang, H. U., Chaddy, A., Lau, S. Y. L., Khan, F., Busman, N. A., Lo, K. S., Vahter, H., Kamil-Sardar, M., Kanger, K., Willibald, G., Ambus, P., Pihlatie, M., Soosaar, K., Espenberg, M., Butterbach-Bahl, K. ... Melling, L. (2026). Linking nitrogen transformations and soil δ15N to assess drivers of nitrogen losses across a tropical peat swamp forest and an oil palm plantation. Journal of Environmental Management, 413, Artikel 130427. https://doi.org/10.1016/j.jenvman.2026.130427
Dang, P., Chang, S. X., Chen, J., Delgado-Baquerizo, M., Bahram, M., Eisenhauer, N., Xu, C., Li, X., Wang, S., Mikryukov, V., Zhao, X., Wang, X., Xue, J., Qin, X., Ros, G. H. & Tedersoo, L. (2026). Long-term climate warming substantially reduces global soil microbial richness. One Earth, 9(1), Artikel 101511. https://doi.org/10.1016/j.oneear.2025.101511
Shang, Y., Tang, X., Zaman, F., Wu, X., Guo, Y., Liu, D., Peng, J. & Cui, Z. (2026). Long-term manure addition restores soil microbial network complexity disrupted by chemical fertilization across 3 m soil profiles. Agriculture, Ecosystems & Environment, 401, Artikel 110300. https://doi.org/10.1016/j.agee.2026.110300
Bogdanov, K., Bhople, P., Bondi, G., Nunan, N., Elsgaard, L., Herrmann, A. M., Richards, K. G., Ros, M., Wall, D., Brennan, F., Morales, S. E. & Clough, T. J. (2026). Long-term P management has limited impacts on soil microbial communities, with unique patterns driven by location, land use, and soil depth. Applied Soil Ecology, 220, Artikel 106877. https://doi.org/10.1016/j.apsoil.2026.106877
Sun, S., Zhou, J., Mueller, C. W., Delgado-Baquerizo, M., Zhang, Y., van Groenigen, K. J., Nottingham, A., Buss, W., Chen, X., Velasco Ayuso, S., Kristensen, J. A., Ma, Y., Liu, S., Scholz, F., Wanek, W., Olesen, J. E., Cao, J. & Chen, J. (2026). Long-term warming drives mineral-associated organic carbon accumulation on the Tibetan Plateau. Functional Ecology, 40(6), 1809-1821. https://doi.org/10.1111/1365-2435.70351
Dong, X., Vera, A., Patiño, M., Siles, J. A., Zhang, W., Aponte, C., Santín-Montanya, I., Porcel, M. Á., Tondini, E., Vitali, F., Del Duca, S., Trasar-Cepeda, C., Prieto-Fernández, Á., Edlinger, A., van de Voorde, T. F. J., Dekkers, M. F., van der Heijden, M. G. A., Wittwer, R., Pérès, G. ... Bastida, F. (2026). Low-intensity management promotes the soil priming effect in European agroecosystems. Nature Communications, 17(1), Artikel 3819. https://doi.org/10.1038/s41467-026-71255-9