Global Change Biology, 1354-1013

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  1. Simulated mechanisms of soil N feedback on the forest CO2 response

    Pepper, D. A., Eliasson, P., McMurtrie, R. E., Corbeels, M., Ågren, G. I., Strömgren, M. & Linder, S., 2007, In : Global Change Biology. 13, p. 1265-1281

    Research output: Contribution to journalArticle

  2. Evaluation of terrestrial carbon cycle models for their response to climate variability and to CO2 trends

    Piao, S., Sitch, S., Ciais, P., Friedlingstein, P., Peylin, P., Wang, X., Ahlström, A., Anav, A., Canadell, J. G., Cong, N., Huntingford, C., Jung, M., Levis, S., Levy, P. E., Li, J., Lin, X., Lomas, M. R., Lu, M., Luo, Y., Ma, Y. & 7 othersMyneni, R. B., Poulter, B., Sun, Z., Wang, T., Viovy, N., Zaehle, S. & Zeng, N., 2013, In : Global Change Biology. 19, 7, p. 2117-2132

    Research output: Contribution to journalArticle

  3. Yield vs. Quality trade-offs for wheat in response to carbon dioxide and ozone

    Pleijel, H. & Uddling, J., 2012, In : Global Change Biology. 18, 2, p. 596-605

    Research output: Contribution to journalArticle

  4. Comparison of Ecosystem Water-use Efficiency among Douglas Fir Forest, Aspen Forest and Grassland Using Eddy Covariance and Carbon Isotope Techniques

    Ponton, S., Flanagan, L. B., Alstad, K. P., Johnson, B. G., Morgenstern, K., Natascha Kljun, Black, T. A. & Barr, A. G., 2006, In : Global Change Biology. 12, 2, p. 294-310

    Research output: Contribution to journalArticle

  5. Hotspots of uncertainty in land-use and land-cover change projections: a global-scale model comparison

    Prestele, R., Alexander, P., Rounsevell, M. D. A., Arneth, A., Calvin, K., Doelman, J., Eitelberg, D. A., Engström, K., Fujimori, S., Hasegawa, T., Havlik, P., Humpenöder, F., Jain, A. K., Krisztin, T., Kyle, P., Meiyappan, P., Popp, A., Sands, R. D., Schaldach, R., Schüngel, J. & 5 othersStehfest, E., Tabeau, A., Van Meijl, H., Van Vliet, J. & Verburg, P. H., 2016 Dec 1, In : Global Change Biology. 22, 12, p. 3967-3983 17 p.

    Research output: Contribution to journalArticle

  6. Climatic drivers of leaf traits and genetic divergence in the tree Annona crassiflora: a broad spatial survey in the Brazilian savannas

    Ribeiro, P. C., Souza, M. L., Muller, L. A. C., Vincenzo A. Ellis, Heuertz, M., Lemos-Filho, J. P. & Lovato, M. B., 2016 Nov 1, In : Global Change Biology. 22, 11, p. 3789-3803 15 p.

    Research output: Contribution to journalArticle

  7. Fifteen years of climate change manipulations alter soil microbial communities in a subarctic heath ecosystem

    Rinnan, R., Michelsen, A., Erland Bååth & Jonasson, S., 2007, In : Global Change Biology. 13, 1, p. 28-39

    Research output: Contribution to journalReview article

  8. Plant-mediated effects of elevated ultraviolet-B radiation on peat microbial communities of a subarctic mire

    Rinnan, R., Nerg, A-M., Ahtoniemi, P., Suokanerva, H., Holopainen, T., Kyroe, E. & Erland Bååth, 2008, In : Global Change Biology. 14, 4, p. 925-937

    Research output: Contribution to journalArticle

  9. Temperature adaptation of soil bacterial communities along an Antarctic climate gradient: predicting responses to climate warming

    Rinnan, R., Johannes Rousk, Yergeau, E., Kowalchuk, G. A. & Erland Bååth, 2009, In : Global Change Biology. 15, 11, p. 2615-2625

    Research output: Contribution to journalArticle

  10. Temperature adaptation of bacterial communities in experimentally warmed forest soils

    Johannes Rousk, Frey, S. D. & Erland Bååth, 2012, In : Global Change Biology. 18, 10, p. 3252-3258

    Research output: Contribution to journalArticle