Search results
Results: 23
Number of items: 23
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Wilken, S., Choi, C. J., & Worden, A. Z. (2020). Contrasting nutritional strategies in two closely related marine mixotrophic chrysophytes. Journal of phycology, 56(1), 52-67. https://doi.org/10.1111/jpy.12920 -
Choi, C. J., Jimenez, V., Needham, D. M., Poirier, C., Bachy, C., Alexander, H., Wilken, S., Chavez, F. P., Sudek, S., Giovannoni, S. J., & Worden, A. Z. (2020). Seasonal and Geographical Transitions in Eukaryotic Phytoplankton Community Structure in the Atlantic and Pacific Oceans. Frontiers in Microbiology, 11, Article 542372. https://doi.org/10.3389/fmicb.2020.542372 -
Labarre, A., Obiol, A., Wilken, S., Forn, I., & Massana, R. (2020). Expression of genes involved in phagocytosis in uncultured heterotrophic flagellates. Limnology and Oceanography, 65(S1), S149-S160. https://doi.org/10.1002/lno.11379 -
Wilken, S., Yung, C., Hamilton, M., Hoadley, K., Nzongo, J., Eckmann, C., Corrochano-Luque, M., Poirier, C., & Worden, A. Z. (2019). Flow cytometry data and taxonomic information for sorted cells from The need to account for cell biology in characterizing predatory mixotrophs in aquatic environments. [Data set]. The Royal Society. https://doi.org/10.6084/m9.figshare.9730847.v2
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Wilken, S., Yung, C. C. M., Hamilton, M., Hoadley, K., Nzongo, J., Eckmann, C., Corrochano-Luque, M., Poirier, C., & Worden, A. Z. (2019). The need to account for cell biology in characterizing predatory mixotrophs in aquatic environments. Philosophical Transactions of the Royal Society B - Biological Sciences, 374(1786), Article 20190090. https://doi.org/10.1098/rstb.2019.0090
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Needham, D. M., Yoshizawa, S., Hosaka, T., Poirier, C., Choi, C. J., Hehenberger, E., Irwin, N. A. T., Wilken, S., Yung, C.-M., Bachy, C., Kurihara, R., Nakajima, Y., Kojima, K., Kimura-Someya, T., Leonard, G., Malmstrom, R. R., Mende, D. R., Olson, D. K., Sudo, Y., ... Worden, A. Z. (2019). A distinct lineage of giant viruses brings a rhodopsin photosystem to unicellular marine predators. Proceedings of the National Academy of Sciences of the United States of America, 116(41), 20574-20583. https://doi.org/10.1073/pnas.1907517116 -
Guo, J., Wilken, S., Jimenez, V., Choi, C. J., Ansong, C., Dannebaum, R., Sudek, L., Milner, D. S., Bachy, C., Reistetter, E. N., Elrod, V. A., Klimov, D., Purvine, S. O., Wei, C.-L., Kunde-Ramamoorthy, G., Richards, T. A., Goodenough, U., Smith, R. D., Callister, S. J., & Worden, A. Z. (2018). Specialized proteomic responses and an ancient photoprotection mechanism sustain marine green algal growth during phosphate limitation. Nature Microbiology, 3(7), 781-790. https://doi.org/10.1038/s41564-018-0178-7
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Wilken, S., Verspagen, J. M. H., Naus-Wiezer, S., Van Donk, E., & Huisman, J. (2016). Appendix A. Detailed methods of additional experiments to explain the lack of biological control at high nitrogen loads. [Data set]. Wiley. https://doi.org/10.6084/m9.figshare.3519638.v1
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Wilken, S., Verspagen, J. M. H., Naus-Wiezer, S., van Donk, E., & Huisman, J. (2014). Biological control of toxic cyanobacteria by mixotrophic predators: an experimental test of intraguild predation theory. Ecological Applications, 24(5), 1235-1249. https://doi.org/10.1890/13-0218.1
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Wilken, S., Verspagen, J. M. H., Naus-Wiezer, S., van Donk, E., & Huisman, J. (2014). Comparison of predator-prey interactions with and without intraguild predation by manipulation of the nitrogen source. Oikos, 123(4), 423-432. https://doi.org/10.1111/j.1600-0706.2013.00736.x
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