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Nighttime exposure to ozone reduces whole-plant production in <em>Betula pendula</em>
Matyssek, R., Günthardt-Goerg, M. S., Maurer, S., & Keller, T. (1995). Nighttime exposure to ozone reduces whole-plant production in Betula pendula. Tree Physiology, 15(3), 159-165. https://doi.org/10.1093/treephys/15.3.159
Effects of metal-contaminated soil on the performance of young trees growing in model ecosystems under field conditions
Hermle, S., Günthardt-Goerg, M. S., & Schulin, R. (2006). Effects of metal-contaminated soil on the performance of young trees growing in model ecosystems under field conditions. Environmental Pollution, 144(2), 703-714. https://doi.org/10.1016/j.envpol.2005.12.040
Updating beliefs and combining evidence in adaptive forest management under climate change: a case study of Norway spruce (<i>Picea abies</i> L. Karst) in the Black Forest, Germany
Yousefpour, R., Temperli, C., Bugmann, H., Elkin, C., Hanewinkel, M., Meilby, H., … Thorsen, B. J. (2013). Updating beliefs and combining evidence in adaptive forest management under climate change: a case study of Norway spruce (Picea abies L. Karst) in the Black Forest, Germany. Journal of Environmental Management, 122, 56-64. https://doi.org/10.1016/j.jenvman.2013.03.004
Subordinate plant species impact on soil microbial communities and ecosystem functioning in grasslands: findings from a removal experiment
Mariotte, P., Vandenberghe, C., Meugnier, C., Rossi, P., Bardgett, R. D., & Buttler, A. (2013). Subordinate plant species impact on soil microbial communities and ecosystem functioning in grasslands: findings from a removal experiment. Perspectives in Plant Ecology, Evolution and Systematics, 15(2), 77-85. https://doi.org/10.1016/j.ppees.2012.12.003
Growth and metal accumulation of young forest trees and understorey plants on contaminated topsoil: influence of subsoil and time
Günthardt-Goerg, M. S., Vollenweider, P., Hermle, S., & Schulin, R. (2019). Growth and metal accumulation of young forest trees and understorey plants on contaminated topsoil: influence of subsoil and time. Plant and Soil, 437, 375-395. https://doi.org/10.1007/s11104-019-03986-2
Soil properties as key predictors of global grassland production: have we overlooked micronutrients?
Radujković, D., Verbruggen, E., Seabloom, E. W., Bahn, M., Biederman, L. A., Borer, E. T., … Vicca, S. (2021). Soil properties as key predictors of global grassland production: have we overlooked micronutrients? Ecology Letters, 24(12), 2713-2725. https://doi.org/10.1111/ele.13894