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Results: 57,955
Number of items: 57,955
  • Hoeksema, M., Jonker, M. J., Bel, K., Brul, S., & Ter Kuile, B. H. (2018). Additional file 1: of Genome rearrangements in Escherichia coli during de novo acquisition of resistance to a single antibiotic or two antibiotics successively [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.7527944.v1
  • Vavourakis, C. D., Andrei, A.-S., Mehrshad, M., Ghai, R., Sorokin, D. Y., & Muyzer, G. (2018). Additional file 5: of A metagenomics roadmap to the uncultured genome diversity in hypersaline soda lake sediments [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.7109285.v1
  • Vavourakis, C. D., Andrei, A.-S., Mehrshad, M., Ghai, R., Sorokin, D. Y., & Muyzer, G. (2018). Additional file 4: of A metagenomics roadmap to the uncultured genome diversity in hypersaline soda lake sediments [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.7109276.v1
  • Vavourakis, C. D., Andrei, A.-S., Mehrshad, M., Ghai, R., Sorokin, D. Y., & Muyzer, G. (2018). Additional file 7: of A metagenomics roadmap to the uncultured genome diversity in hypersaline soda lake sediments [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.7109318.v1
  • Vavourakis, C. D., Andrei, A.-S., Mehrshad, M., Ghai, R., Sorokin, D. Y., & Muyzer, G. (2018). Additional file 9: of A metagenomics roadmap to the uncultured genome diversity in hypersaline soda lake sediments [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.7109339.v1
  • Onstein, R. E., Baker, W. J., Couvreur, T. L. P., Faurby, S., Herrera-Alsina, L., Svenning, J.-C., & Kissling, W. D. (2018). main_runSimulation.R from To adapt or go extinct? The fate of megafaunal palm fruits under past global change. [Data set]. The Royal Society. https://doi.org/10.6084/m9.figshare.6359003.v2
  • Onstein, R. E., Baker, W. J., Couvreur, T. L., Faurby, S., Herrera-Alsina, L., Svenning, J.-C., & Kissling, W. D. (2018). functions_for_simulation.R from To adapt or go extinct? The fate of megafaunal palm fruits under past global change. [Data set]. The Royal Society. https://doi.org/10.6084/m9.figshare.6359009.v2
  • Tikhonova, T. V., Sorokin, D. Y., Hagen, W. R., Khrenova, M. G., Muyzer, G., Rakitina, T. V., Shabalin, I. G., Trofimov, A. A., Tsallagov, S. I., & Popov, V. O. (2018, November 28). The structure of thiocyanate dehydrogenase from Thioalkalivibrio paradoxus complex with acetate ions. [Data set]. Protein Data Bank (PDB). https://doi.org/10.2210/pdb6i3q/pdb
  • Schlachter, C. R., Daneshian, L., Amaya, J., Klapper, V., Wybouw, N., Borowski, T., Van Leeuwen, T., Grbic, V., Grbic, M., Makris, T. M., & Chruszcz, M. (2018, November 14). Crystal structure of dioxygenase Tetur07g02040 [Data set]. Protein Data Bank (PDB). https://doi.org/10.2210/pdb6bdj/pdb
  • Schmidt, M., Toplak, A., Rozeboom, H. J., Wijma, H. J., Quaedflieg, P. J. L. M., Van Maarseveen, J. H., Janssen, D. B., & Nuijens, T. (2018, January 10). Crystal structure of thymoligase, a substrate-tailored peptiligase variant [Data set]. Protein Data Bank (PDB). https://doi.org/10.2210/pdb5ox2/pdb
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