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Publikationen des Instituts für Pflanzengenetik

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2022


Arnold, S., & Braun, H-P. (2022). The complexome profiling approach for direct biochemical analysis of multiprotein assemblies. Biochimica et Biophysica Acta - Bioenergetics, 1863(3), [148522].

doi.org/10.1016/j.bbabio.2021.148522

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Assou, J., Zhang, D., Roth, K. D. R., Steinke, S., Hust, M., Reinard, T., Winkelmann, T., & Boch, J. (2022). Removing the major allergen Bra j I from brown mustard (Brassica juncea) by CRISPR/Cas9. Plant Journal, 109(3), 649-663.

doi.org/10.1111/tpj.15584

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Becker, S., Mücke, S., Grau, J., & Boch, J. (2022). Flexible TALEs for an expanded use in gene activation, virulence and scaffold engineering. Nucleic Acids Research, 50(4), 2387-2400.

doi.org/10.1093/nar/gkac098

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Belghith, I., Senkler, J., Abdelly, C., Braun, H-P., & Debez, A. (2022). Changes in leaf ecophysiological traits and proteome profile provide new insights into variability of salt response in the succulent halophyte Cakile maritima. Functional Plant Biology, 49(7), 613-624.

doi.org/10.1071/fp21151

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Brito, D. S., Quinhones, C. G. S., Neri-Silva, R., Heinemann, B., Schertl, P., Cavalcanti, J. H. F., Eubel, H., Hildebrandt, T., Nunes-Nesi, A., Braun, H-P., & Araújo, W. L. (2022). The role of the electron-transfer flavoprotein: ubiquinone oxidoreductase following carbohydrate starvation in Arabidopsis cell cultures. Plant cell reports, 41(2), 431–446.

doi.org/10.1007/s00299-021-02822-1

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Chen, Y. H., Straube, J., Khanal, B. P., Zeisler-Diehl, V., Suresh, K., Schreiber, L., Debener, T., & Knoche, M. (2022). Apple fruit periderms (russeting) induced by wounding or by moisture have the same histologies, chemistries and gene expressions. PLOS ONE, 17(9), [e0274733].

doi.org/10.1371/journal.pone.0274733

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Debener, T. (2022). State of the art of omics technologies in horticultural crops. in G. R. Rout (Hrsg.), Omics in Horticultural Crops (S. 1-14). Academic Press Inc..

doi.org/10.1016/B978-0-323-89905-5.00016-1

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Domes, H. S., Neu, E., Linde, M., & Debener, T. (2022). P Starvation in Roses Leads to Strongly Genotype-Dependent Induction of P-Transporter Genes during Black Spot Leaf Disease. Journal of Fungi, 8(6), [549].

doi.org/10.3390/jof8060549

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Heinemann, D., Zabic, M., Terakawa, M., & Boch, J. (2022). Laser-based molecular delivery and its applications in plant science. Plant Methods, 18(1), [82].

doi.org/10.1186/s13007-022-00908-9

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Johannsmeier, S., Londenberg, A., Zabic, M., Schiwack, J., Boch, J., Ripken, T., & Heinemann, D. (2022). Plasmonic-induced molecular transfer and its perspectives in plant Science. in D. L. Andrews, A. J. Bain, & J-M. Nunzi (Hrsg.), Nanophotonics IX [1213113] (Proceedings of SPIE - The International Society for Optical Engineering; Band 12131). SPIE.

doi.org/10.1117/12.2634131

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Liu, Y-T., Senkler, J., Herrfurth, C., Braun, H-P., & Feussner, I. (2022). Defining the lipidome of Arabidopsis leaf mitochondria: Specific lipid complement and lipid biosynthesis capacity.

doi.org/10.1101/2022.07.14.500104

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Schröder, L., Eubel, H., & Braun, H-P. (2022). Complexome Profiling of Plant Mitochondrial Fractions. in O. Van Aken, & A. G. Rasmusson (Hrsg.), Plant Mitochondria: Methods and Protocols (S. 101-110). (Methods in Molecular Biology; Band 2363). Humana Press.

doi.org/10.1007/978-1-0716-1653-6_9

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Schröder, L., Hegermann, J., Pille, P., & Braun, H-P. (2022). The photosynthesis apparatus of European mistletoe (Viscum album). Plant physiology, 190(3), 1896-1914.

doi.org/10.1093/plphys/kiac377

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Skoppek, C. I., Punt, W., Heinrichs, M., Ordon, F., Wehner, G., Boch, J., & Streubel, J. (2022). The barley HvSTP13GR mutant triggers resistance against biotrophic fungi. Molecular Plant Pathology, 23(2), 278-290.

doi.org/10.1111/mpp.13161

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Wei, J., Brophy, B., Cole, S. A., Moormann, J., Boch, J., & Laible, G. (2022). Cytoplasmic injection of zygotes to genome edit naturally occurring sequence variants into bovine embryos. Frontiers in Genetics, 13, [925913].

doi.org/10.3389/fgene.2022.925913

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2021


Becker, S. (2021). Analysis of TALE repeats of aberrant length and identification of novel candidate target genes for Xanthomonas oryzae pv. oryzicola TALEs. [Dissertation, Gottfried Wilhelm Leibniz Universität Hannover]. Leibniz Universität Hannover.

doi.org/10.15488/11090

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Becker, S., & Boch, J. (2021). TALE and TALEN genome editing technologies. Gene and Genome Editing, 2, [100007].

doi.org/10.1016/j.ggedit.2021.100007

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Braun, H-P. (2021). Enzymes: The two roles of complex III in plants. ELIFE, 10, [e65239].

doi.org/10.7554/eLife.65239

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doi.org/10.15488/11675

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Cable, J., Ronald, P. C., Voytas, D., Zhang, F., Levy, A. A., Takatsuka, A., Arimura, S-I., Jacobsen, S. E., Toki, S., Toda, E., Gao, C., Zhu, J-K., Boch, J., Van Eck, J., Mahfouz, M., Andersson, M., Fridman, E., Weiss, T., Wang, K., ... Bagchi, R. (2021). Plant genome engineering from lab to field: a Keystone Symposia report. Annals of the New York Academy of Sciences, 1506(1), 35-54.

doi.org/10.1111/nyas.14675

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Costa, J., Pothier, J. F., Boch, J., Stefani, E., Jacques, M-A., Catara, V., & Koebnik, R. (2021). Integrating science on Xanthomonadaceae for sustainable plant disease management in Europe. Molecular Plant Pathology, 22(12), 1461-1463.

doi.org/10.1111/mpp.13150

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