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Vascular plant-mediated controls on atmospheric carbon assimilation and peat carbon decomposition under climate change
Gavazov, K., Albrecht, R., Buttler, A., Dorrepaal, E., Garnett, M. H., Gogo, S., … Bragazza, L. (2018). Vascular plant-mediated controls on atmospheric carbon assimilation and peat carbon decomposition under climate change. Global Change Biology, 24(9), 3911-3921. https://doi.org/10.1111/gcb.14140
Seasonality alters drivers of soil enzyme activity in subalpine grassland soil undergoing climate change
Puissant, J., Jassey, V. E. J., Mills, R. T. E., Robroek, B. J. M., Gavazov, K., De Danieli, S., … Cécillon, L. (2018). Seasonality alters drivers of soil enzyme activity in subalpine grassland soil undergoing climate change. Soil Biology and Biochemistry, 124, 266-274. https://doi.org/10.1016/j.soilbio.2018.06.023
The impact of experimental temperature and water level manipulation on carbon dioxide release in a poor fen in Northern Poland
Samson, M., Słowińska, S., Słowiński, M., Lamentowicz, M., Barabach, J., Harenda, K., … Chojnicki, B. H. (2018). The impact of experimental temperature and water level manipulation on carbon dioxide release in a poor fen in Northern Poland. Wetlands, 38(3), 551-563. https://doi.org/10.1007/s13157-018-0999-4
Response to Editor to the comment by Delarue (2016) to our paper entitled ‘Persistent high temperature and low precipitation reduce peat carbon accumulation’
Bragazza, L., Buttler, A., Robroek, B. J. M., Albrecht, R., Zaccone, C., Jassey, V. E. J., & Signarbieux, C. (2017). Response to Editor to the comment by Delarue (2016) to our paper entitled ‘Persistent high temperature and low precipitation reduce peat carbon accumulation’. Global Change Biology, 23(10), e7-e8. https://doi.org/10.1111/gcb.13559
Slash-and-burn agriculture and tropical cyclone activity in Madagascar: implication for soil fertility dynamics and corn performance
Gay-des-Combes, J. M., Robroek, B. J. M., Hervé, D., Guillaume, T., Pistocchi, C., Mills, R. T. E., & Buttler, A. (2017). Slash-and-burn agriculture and tropical cyclone activity in Madagascar: implication for soil fertility dynamics and corn performance. Agriculture, Ecosystems and Environment, 239, 207-218. https://doi.org/10.1016/j.agee.2017.01.010
Tropical soils degraded by slash-and-burn cultivation can be recultivated when amended with ashes and compost
Gay-des-Combes, J. M., Sanz Carrillo, C., Robroek, B. J. M., Jassey, V. E. J., Mills, R. T. E., Arif, M. S., … Buttler, A. (2017). Tropical soils degraded by slash-and-burn cultivation can be recultivated when amended with ashes and compost. Ecology and Evolution, 7(14), 5378-5388. https://doi.org/10.1002/ece3.3104
Freeze-thaw cycles simultaneously decrease peatland photosynthetic carbon uptake and ecosystem respiration
Küttim, M., Hofsommer, M. L., Robroek, B. J. M., Signarbieux, C., Jassey, V. E. J., Laine, A. M., … Mills, R. T. E. (2017). Freeze-thaw cycles simultaneously decrease peatland photosynthetic carbon uptake and ecosystem respiration. Boreal Environment Research, 22, 267-276.
Genetic determinism vs. phenotypic plasticity in protist morphology
Mulot, M., Marcisz, K., Grandgirard, L., Lara, E., Kosakyan, A., Robroek, B. J. M., … Mitchell, E. A. D. (2017). Genetic determinism vs. phenotypic plasticity in protist morphology. Journal of Eukaryotic Microbiology, 64(6), 729-739. https://doi.org/10.1111/jeu.12406
Climate change effects on the stability and chemistry of soil organic carbon pools in a subalpine grassland
Puissant, J., Mills, R. T. E., Robroek, B. J. M., Gavazov, K., Perrette, Y., De Danieli, S., … Cécillon, L. (2017). Climate change effects on the stability and chemistry of soil organic carbon pools in a subalpine grassland. Biogeochemistry, 132(1-2), 123-139. https://doi.org/10.1007/s10533-016-0291-8
Taxonomic and functional turnover are decoupled in European peat bogs
Robroek, B. J. M., Jassey, V. E. J., Payne, R. J., Martí, M., Bragazza, L., Bleeker, A., … Verhoeven, J. T. A. (2017). Taxonomic and functional turnover are decoupled in European peat bogs. Nature Communications, 8(1), 1161 (9 pp.). https://doi.org/10.1038/s41467-017-01350-5
Interaction of compost additives with phosphate solubilizing rhizobacteria improved maize production and soil biochemical properties under dryland agriculture
Shahzad, S. M., Arif, M. S., Riaz, M., Ashraf, M., Yasmeen, T., Zaheer, A., … Robroek, B. J. M. (2017). Interaction of compost additives with phosphate solubilizing rhizobacteria improved maize production and soil biochemical properties under dryland agriculture. Soil and Tillage Research, 174, 70-80. https://doi.org/10.1016/j.still.2017.06.004
Persistent high temperature and low precipitation reduce peat carbon accumulation
Bragazza, L., Buttler, A., Robroek, B. J. M., Albrecht, R., Zaccone, C., Jassey, V. E. J., & Signarbieux, C. (2016). Persistent high temperature and low precipitation reduce peat carbon accumulation. Global Change Biology, 22(12), 4114-4123. https://doi.org/10.1111/gcb.13319
Loss of testate amoeba functional diversity with increasing frost intensity across a continental gradient reduces microbial activity in peatlands
Jassey, V. E. J., Lamentowicz, M., Bragazza, L., Hofsommer, M. L., Mills, R. T. E., Buttler, A., … Robroek, B. J. M. (2016). Loss of testate amoeba functional diversity with increasing frost intensity across a continental gradient reduces microbial activity in peatlands. European Journal of Protistology, 55, 190-202. https://doi.org/10.1016/j.ejop.2016.04.007
Peatland vascular plant functional types affect dissolved organic matter chemistry
Robroek, B. J. M., Albrecht, R. J. H., Hamard, S., Pulgarin, A., Bragazza, L., Buttler, A., & Jassey, V. E. J. (2016). Peatland vascular plant functional types affect dissolved organic matter chemistry. Plant and Soil, 407(1-2), 135-143. https://doi.org/10.1007/s11104-015-2710-3
Experimental warming interacts with soil moisture to discriminate plant responses in an ombrotrophic peatland
Buttler, A., Robroek, B. J. M., Laggoun-Défarge, F., Jassey, V. E. J., Pochelon, C., Bernard, G., … Bragazza, L. (2015). Experimental warming interacts with soil moisture to discriminate plant responses in an ombrotrophic peatland. Journal of Vegetation Science, 26(5), 964-974. https://doi.org/10.1111/jvs.12296
An unexpected role for mixotrophs in the response of peatland carbon cycling to climate warming
Jassey, V. E. J., Signarbieux, C., Hättenschwiler, S., Bragazza, L., Buttler, A., Delarue, F., … Robroek, B. J. M. (2015). An unexpected role for mixotrophs in the response of peatland carbon cycling to climate warming. Scientific Reports, 5, 16931 (10 pp.). https://doi.org/10.1038/srep16931
Subordinate plants mitigate drought effects on soil ecosystem processes by stimulating fungi
Mariotte, P., Robroek, B. J. M., Jassey, V. E. J., & Buttler, A. (2015). Subordinate plants mitigate drought effects on soil ecosystem processes by stimulating fungi. Functional Ecology, 29(12), 1578-1586. https://doi.org/10.1111/1365-2435.12467
Seasonal influence of climate manipulation on microbial community structure and function in mountain soils
Puissant, J., Cécillon, L., Mills, R. T. E., Robroek, B. J. M., Gavazov, K., De Danieli, S., … Brun, J. J. (2015). Seasonal influence of climate manipulation on microbial community structure and function in mountain soils. Soil Biology and Biochemistry, 80, 296-305. https://doi.org/10.1016/j.soilbio.2014.10.013
Peatland vascular plant functional types affect methane dynamics by altering microbial community structure
Robroek, B. J. M., Jassey, V. E. J., Kox, M. A. R., Berendsen, R. L., Mills, R. T. E., Cecillon, L., … Bodelier, P. L. E. (2015). Peatland vascular plant functional types affect methane dynamics by altering microbial community structure. Journal of Ecology, 103(4), 925-934. https://doi.org/10.1111/1365-2745.12413
Plant functional diversity drives niche-size-structure of dominant microbial consumers along a poor to extremely rich fen gradient
Jassey, V. E. J., Lamentowicz, Ł., Robroek, B. J. M., Gabka, M., Rusińska, A., & Lamentowicz, M. (2014). Plant functional diversity drives niche-size-structure of dominant microbial consumers along a poor to extremely rich fen gradient. Journal of Ecology, 102(5), 1150-1162. https://doi.org/10.1111/1365-2745.12288