Corydon, T. J., Schulz, H., Richter, P., Strauch, S. M., Böhmer, M., Ricciardi, D. A., Wehland, M., Krüger, M., Erzinger, G. S., Lebert, M., Infanger, M., Wise, P. M., and Grimm, D. (2023). Current knowledge about the impact of microgravity on gene regulation. Cells
Hammer, A., Cerretti, G., Ricciardi, D.A., Schiffmann, D., Maranda, S., Kummer, R., Zumbühl, C., Rattenbacher-Kiser, K.F., Arx, S. von, Ammann, S., Strobl, F., Berkane, R., Stolz, A., Stelzer, E. H. K., Egli, M., Schleiff, E., Wuest, S.L., and Böhmer, M. (2022). Retrograde Analysis of Calcium Signaling by CaMPARI2 Shows Cytosolic Calcium in Chondrocytes Is Unaffected by Parabolic Flights. Biomedicines, 10, Page 138 10 (1), p. 138.
DOI: 10.3390/BIOMEDICINES10010138.
Paul, P., Mesihovic, A., Chaturvedi, P., Ghatak, A., Weckwerth, W., Böhmer, M., Schleiff, E. (2020). Structural and functional heat stress responses of chloroplasts of Arabidopsis thaliana. Genes, 11(6), 1–20.
DOI: 10.3390/genes11060650.
Hauslage, J., Görög, M., Krause, L., Schüler, O., Schäfer, M., Witten, A., Kesseler, L., Böhmer, M., and Hemmersbach, R. (2020). ARABIDOMICS—A new experimental platform for molecular analyses of plants in drop towers, on parabolic flights, and sounding rockets. Review of Scientific Instruments, 91(3), 034504.
DOI: 10.1063/1.5120573.
Böhmer, Maik; Schleiff, Enrico (2019): Microgravity research in plants: A range of platforms and options allow research on plants in zero or low gravity that can yield important insights into plant physiology. In EMBO reports 20 (7), e48541.
DOI: 10.15252/embr.201948541.
Gadalla, D. S., Braun, M., and Böhmer, M. (2018) in Gravitational Biology – Gravity sensing and graviorientation in microorganisms and plants, ed Braun, M., Böhmer, M., Häder, D.-P., Hemmersbach, R., and Palme, K. (Springer International Publishing, Cham), pp 75–92.
DOI: 10.1007/978-3-319-93894-3_6.
Geilen, K., Heilmann, M., Hillmer, S., and Böhmer, M. (2017) WRKY43 regulates polyunsaturated fatty acid content and seed germination under unfavourable growth conditions. Sci. Rep. 7, 14235.
DOI: 10.1038/s41598-017-14695-0.
Pandey, G. K., Pandey, A., Prasad, M., and Böhmer, M. (2016) Editorial: Abiotic stress signaling in plants: Functional genomic intervention. Front. Plant Sci. 7,
DOI: 10.3389/fpls.2016.00681.
Schüler, O., Krause, L., Görög, M., Hauslage, J., Kesseler, L., Böhmer, M., and Hemmersbach, R. (2016) ARADISH - Development of a Standardized Plant Growth Chamber for Experiments in Gravitational Biology Using Ground Based Facilities. Microgravity Sci. Technol. 28, 297–305
DOI: 10.1007/s12217-015-9454-9.
Hu, H., Rappel, W.-J., Occhipinti, R., Ries, A., Böhmer, M., You, L., Xiao, C., Engineer, C. B., Boron, W. F., and Schroeder, J. I. (2015) Distinct Cellular Locations of Carbonic Anhydrases Mediate Carbon Dioxide Control of Stomatal Movements. Plant Physiol. 169, 1168–1178
DOI: 10.1104/pp.15.00646.
Geilen, K., and Böhmer, M. (2015) Dynamic subnuclear relocalization of WRKY40, a potential new mechanism of ABA-dependent transcription factor regulation. Plant Signal. & Behav. 10,
DOI: 10.1080/15592324.2015.1106659.
Geilen, K., and Böhmer, M. (2015) Dynamic subnuclear relocalisation of WRKY40 in response to Abscisic acid in Arabidopsis thaliana. Sci. Rep. 5,
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Böhmer, M. (2015) in Elucidation of Abiotic Stress Signaling in Plants (Springer New York, New York, NY), pp 75–92.
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Schüler, O., Hemmersbach, R., and Böhmer, M. (2015) A Bird's-Eye View of Molecular Changes in Plant Gravitropism Using Omics Techniques. Front. Plant Sci. 6, 1176
DOI: 10.3389/fpls.2015.01176.
Sawinski, K., Mersmann, S., Robatzek, S., and Böhmer, M. (2013) Guarding the green: Pathways to stomatal immunity. Mol. Plant-Microbe Interact. 26,
DOI: 10.1094/MPMI-12-12-0288-CR.
Berendzen, K. W., Böhmer, M., Wallmeroth, N., Peter, S., Vesić, M., Zhou, Y., Tiesler, F. K. E., Schleifenbaum, F., and Harter, K. (2012) Screening for in planta protein-protein interactions combining bimolecular fluorescence complementation with flow cytometry. Plant Methods 8,
DOI: 10.1186/1746-4811-8-25.
Böhmer, M., and Schroeder, J. I. J. I. (2011) Quantitative transcriptomic analysis of abscisic acid-induced and reactive oxygen species-dependent expression changes and proteomic profiling in Arabidopsis suspension cells. Plant J. 67, 105–118,
DOI: 10.1111/j.1365-313X.2011.04579.x.
Kim, T. H., Hauser, F., Ha, T., Xue, S., Böhmer, M., Nishimura, N., Hubbard, K., Peine, N., Lee, B. H., Lee, S., Robert, N., Jane, E., Schroeder, J. I., Munemasa, S., Hubbard, K., Peine, N., Lee, B. H., Lee, S., Robert, N., Parker, J. E., and Schroeder, J. I. (2011) Chemical genetics reveals negative regulation of abscisic acid signaling by a plant immune response pathway. Curr. Biol. 21, 990–997,
DOI: 10.1016/j.cub.2011.04.045.Chemical.
Böhmer, M., Bölker, M., and Romeis, T. (2011) Chemical Genetic Analysis of Protein Kinase Function in Plants. in Methods in Molecular Biology, pp 259–271.
DOI: 10.1007/978-1-61779-264-9_15.
Hu, H., Boisson-Dernier, A., Israelsson-Nordström, M., Böhmer, M., Xue, S., Ries, A., Godoski, J., Kuhn, J. M. J. M., and Schroeder, J. I. J. I. (2010) Carbonic anhydrases are upstream regulators of CO2-controlled stomatal movements in guard cells. Nat. Cell Biol. 12, 87–93
Kim, T.-H., Böhmer, M., Hu, H., Nishimura, N., and Schroeder, J. I. (2010) Guard cells signal transduction network: advances in understanding abscisic acid CO2, and Ca2+ signalling. Annu. Rev. Plant Biol. 61, 561–591,
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Böhmer, C., Böhmer, M., Bölker, M., and Sandrock, B. (2008) Cdc42 and the Ste20-like kinase Don3 act independently in triggering cytokinesis in Ustilago maydis. J. Cell Sci. 121,
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Böhmer, M., Colby, T., Böhmer, C., Bräutigam, A., Schmidt, J., and Bölker, M. (2007) Proteomic analysis of dimorphic transition in the phytopathogenic fungus Ustilago maydis. Proteomics 7, 675–685,
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Böhmer, M., and Romeis, T. (2007) A chemical-genetic approach to elucidate protein kinase function in planta. Plant Mol. Biol. 65, 817–827,
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Böhmer, M., Kurth, J., Romeis, T., and Witte, C.-P. (2006) Function of Plant Calcium-Dependent Protein Kinases in the Activation of Abiotic and Pathogen- Related Stress Responses and Potential Application in the Generation of Stress-Resistant Plants.