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Results: 57,689
Number of items: 57,689
  • Boyden, P., Bejarano, S., Mueller, B., Li, D., Wild, C., Merkel, U., Mijts, E., Scicchitano, G., Scardino, G., Chauveau, D., El-Khaled, Y. C., Stocchi, P., Vermeij, M., & Rovere, A. (2025, June 27). Electronic Supplementary Material for: "Paleoecology indicates wave conditions as key factor in coral reef development" [Data set]. Zenodo. https://doi.org/10.5281/zenodo.15754719
  • van den Barg, J. A. A., & Degeler, V. (2025, June 26). Data and Statistics for the systematic literature review entitled: "Earth Science Digital Twins: A Systematic Literature Review" [Data set]. Zenodo. https://doi.org/10.5281/zenodo.15707710
  • Ran, Y. A., Dubbeldam, D., Vlugt, T. J. H., & Calero Diaz, S. (2025, September 17). Data accompanying "Matching Pure and Mixture Isotherms using an Invertible Autoencoder". [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.30148591.v1
  • Liberatore, T., & Groth, P. T. (2025). FashionDB [Data set]. Hugging Face. https://doi.org/10.57967/hf/6494
  • Kramer, G. (2025). MassIVE MSV000099169 - Capturing the RNA-binding proteome from plants using orthogonal organic phase separationSummary RNA-binding proteins (RBPs) regulate many processes related to RNA biogenesis, localization, half-life and function. Here, we present a protocol for the en masse isolation of RBPs cross-linked to RNA and provide a strategy for proteomics analysis. We describe the steps for in vivo UV-crosslinking of RNA-protein complexes, tissue lysis, fractionation and purification of crosslinked RNA-protein adducts using organic solvents. Although the protocol was developed for Nicotiana benthamiana leaves, it can be optimized for use in different plants and tissues. [Data set]. MassIVE. https://doi.org/10.25345/c5kk94r4h
  • Desmet, P., Shamoun-Baranes, J., Kranstauber, B., Dokter, A. M., Weisshaupt, N., Schmid, B., Bauer, S., Haase, G., Hoekstra, B., Huybrechts, P., Leijnse, H., Noé, N., Van Hoey, S., Wijers, B.-C., & Nilsson, C. (2025, January 21). BALTRAD_VPTS - Vertical profiles of biological targets derived from European weather radars [Data set]. Zenodo. https://doi.org/10.5281/zenodo.13683294
  • Huang, W.-C., Dombrowski, N., Mahendrarajah, T., Wahl, N., Stamatakis, A., Szöllősi, G., Williams, T., & Spang, A. (2025, October 15). Phylogenetic reconciliation supports a methanogenic ancestor of the Archaea and a derived origin for host-associated lineages [Data set]. Zenodo. https://doi.org/10.5281/zenodo.17360805
  • Burdfield-Steel, E., & Ottocento, C. (2025, July 11). Honest signalling in predator-prey interactions: testing the resource allocation hypothesis [Data set]. DRYAD. https://doi.org/10.5061/dryad.b2rbnzsst
  • Lameris, T., Boom, C., Nuijten, R., Buitendijk, N., Eichhorn, G., Ens, B., Exo, K.-M., Glazov, P., Hanssen, S. A., Hunke, P., van der Jeugd, H., de Jong, M., Kölzsch, A., Kondratyev, A., Kruckenberg, H., Kulikova, O., Linssen, H., Loonen, M., Loshchagina, J., … van Bemmelen, R. (2025, April 10). Data from: Migratory birds advance spring arrival and egg-laying in the Arctic, mostly by travelling faster [Data set]. DRYAD. https://doi.org/10.5061/dryad.w0vt4b93d
  • Xie, K. (2025, May 19). drop-drop coalescence data set [Data set]. Zenodo. https://doi.org/10.5281/zenodo.15467489
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