Search results
Results: 46
Number of items: 46
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Rauwerda, H., Pagano, J. F. B., de Leeuw, W. C., Ensink, W., van Olst, M., Nehrdich, U., Jonker, M. J., Spaink, H. P., & Breit, T. M. (2022). Cellular Factors Involved in Transcriptome Dynamics in Early Zebrafish Embryogenesis. (v1 ed.) BioRxiv. https://doi.org/10.1101/2022.09.29.510050 -
Rauwerda, J., & Breit, T. M. (2020, February 17). Mother-Specific Signature in the Maternal Transcriptome Composition of Mature,Unfertilized Zebrafish Eggs [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.11860863.v1
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Breit, T. M., Rauwerda, J., Pagano, J. F. B., Ensink, W. A., Nehrdich, U., Spaink, H. P., & Dekker, R. J. (2020). Immunoglobulin switch-like recombination regions implicated in the formation of extrachromosomal circular 45S rDNA involved in the maternal-specific translation system of zebrafish. (v1 ed.) BioRxiv. https://doi.org/10.1101/2020.01.31.928739 -
Dekker, R. J., Ensink, W. A., van Leeuwen, S., Rauwerda, J., & Breit, T. M. (2020). Overhauling a faulty control in the CDC-recommended SARS-CoV-2 RT-PCR test panel. (v2 ed.) BioRxiv. https://doi.org/10.1101/2020.06.12.147819 -
Pagano, J. F. B., Locati, M. D., Ensink, W. A., van Olst, M., van Leeuwen, S., de Leeuw, W. C., Nehrdich, U., Spaink, H. P., Rauwerda, H., Jonker, M. J., Dekker, R. J., & Breit, T. M. (2020). Maternal- and Somatic-type snoRNA Expression and Processing in Zebrafish Development. (v3 ed.) BioRxiv. https://doi.org/10.1101/858936 -
Pagano, J. F. B., Dekker, R. J., Ensink, W. A., van Olst, M., Bos, A., van Leeuwen, S., de Leeuw, W. C., Nehrdich, U., Spaink, H. P., Rauwerda, H., Jonker, M. J., & Breit, T. M. (2019). An alternative spliceosome defined by distinct snRNAs in early zebrafish embryogenesis. (v1 ed.) BioRxiv. https://doi.org/10.1101/858944 -
Breit, T. M., Pagano, J. F. B., van der Jagt, P. L., Mittring, E., Ensink, W. A., van Olst, M., van Leeuwen, S., de Leeuw, W., Nehrdich, U., Spaink, H. P., Rauwerda, H., & Dekker, R. J. (2019). New observations on non-coding RNAs involved in the dual translation system in zebrafish development. (v2 ed.) BioRxiv. https://doi.org/10.1101/869651 -
Locati, M. D., Pagano, J. F. B., Abdullah, F., Ensink, W. A., van Olst, M., van Leeuwen, S., Nehrdich, U., Spaink, H. P., Rauwerda, H., Jonker, M. J., Dekker, R. J., & Breit, T. M. (2018). Identifying small RNAs derived from maternal- and somatic-type rRNAs in zebrafish development. Genome, 61(5), 371-378. https://doi.org/10.1139/gen-2017-0202
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Rauwerda, H., Pagano, J. F., de Leeuw, W. C., Ensink, W., Nehrdich, U., de Jong, M., Jonker, M., Spaink, H. P., & Breit, T. M. (2017). Additional file 1: of Transcriptome dynamics in early zebrafish embryogenesis determined by high-resolution time course analysis of 180 successive, individual zebrafish embryos [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3740003_d10.v1
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Rauwerda, H., Pagano, J. F., de Leeuw, W. C., Ensink, W., Nehrdich, U., de Jong, H. M., Jonker, M., Spaink, H. P., & Breit, T. M. (2017). Additional file 3: of Transcriptome dynamics in early zebrafish embryogenesis determined by high-resolution time course analysis of 180 successive, individual zebrafish embryos [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3740003_d12.v1
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