Publications

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Journal Article
T. Fricke, Smalakyte, D., Lapinski, M., Pateria, A., Weige, C., Pastor, M., Kolano, A., Winata, C., Siksnys, V., Tamulaitis, G., and Bochtler, M., Targeted RNA Knockdown by a Type III CRISPR-Cas Complex in Zebrafish., CRISPR J, vol. 3, no. 4, pp. 299-313, 2020.
S. Hong Lam, Winata, C. L., Tong, Y., Korzh, S., San Lim, W., Korzh, V., Spitsbergen, J., Mathavan, S., Miller, L. D., Liu, E. T., and Gong, Z., Transcriptome kinetics of arsenic-induced adaptive response in zebrafish liver., Physiol Genomics, vol. 27, no. 3, pp. 351-61, 2006.
S. Hong Lam, Winata, C. L., Tong, Y., Korzh, S., San Lim, W., Korzh, V., Spitsbergen, J., Mathavan, S., Miller, L. D., Liu, E. T., and Gong, Z., Transcriptome kinetics of arsenic-induced adaptive response in zebrafish liver., Physiol Genomics, vol. 27, no. 3, pp. 351-61, 2006.
R. Minhas, Loeffler-Wirth, H., Siddiqui, Y. H., Obrębski, T., Vashisht, S., Nahia, K. Abu, Paterek, A., Brzozowska, A., Bugajski, L., Piwocka, K., Korzh, V., Binder, H., and Winata, C. Lanny, Transcriptome profile of the sinoatrial ring reveals conserved and novel genetic programs of the zebrafish pacemaker., BMC Genomics, vol. 22, no. 1, p. 715, 2021.
A. Yin, Korzh, S., Winata, C. L., Korzh, V., and Gong, Z., Wnt signaling is required for early development of zebrafish swimbladder., PLoS One, vol. 6, no. 3, p. e18431, 2011.
A. Yin, Korzh, S., Winata, C. L., Korzh, V., and Gong, Z., Wnt signaling is required for early development of zebrafish swimbladder., PLoS One, vol. 6, no. 3, p. e18431, 2011.
H. Aanes, Winata, C. L., Lin, C. Ho, Chen, J. P., Srinivasan, K. G., Lee, S. G. P., Lim, A. Y. M., Hajan, H. Shreen, Collas, P., Bourque, G., Gong, Z., Korzh, V., Aleström, P., and Mathavan, S., Zebrafish mRNA sequencing deciphers novelties in transcriptome dynamics during maternal to zygotic transition., Genome Res, vol. 21, no. 8, pp. 1328-38, 2011.
S. Korzh, Winata, C. Lanni, Zheng, W., Yang, S., Yin, A., Ingham, P., Korzh, V., and Gong, Z., The interaction of epithelial Ihha and mesenchymal Fgf10 in zebrafish esophageal and swimbladder development., Dev Biol, vol. 359, no. 2, pp. 262-76, 2011.
S. Korzh, Winata, C. Lanni, Zheng, W., Yang, S., Yin, A., Ingham, P., Korzh, V., and Gong, Z., The interaction of epithelial Ihha and mesenchymal Fgf10 in zebrafish esophageal and swimbladder development., Dev Biol, vol. 359, no. 2, pp. 262-76, 2011.
R. Minhas, Paterek, A., Łapiński, M., Bazała, M., Korzh, V., and Winata, C. L., A novel conserved enhancer at zebrafish zic3 and zic6 loci drives neural expression., Dev Dyn, vol. 248, no. 9, pp. 837-849, 2019.
C. L. Winata, Korzh, S., Kondrychyn, I., Korzh, V., and Gong, Z., The role of vasculature and blood circulation in zebrafish swimbladder development., BMC Dev Biol, vol. 10, p. 3, 2010.
C. L. Winata, Korzh, S., Kondrychyn, I., Korzh, V., and Gong, Z., The role of vasculature and blood circulation in zebrafish swimbladder development., BMC Dev Biol, vol. 10, p. 3, 2010.
C. L. Winata, Korzh, S., Kondrychyn, I., Korzh, V., and Gong, Z., The role of vasculature and blood circulation in zebrafish swimbladder development., BMC Dev Biol, vol. 10, p. 3, 2010.
C. L. Winata and Korzh, V., The translational regulation of maternal mRNAs in time and space, FEBS Lett., 2018.
M. Migdał, Arakawa, T., Takizawa, S., Furuno, M., Suzuki, H., Arner, E., Winata, C. Lanny, and Kaczkowski, B., xcore: an R package for inference of gene expression regulators., BMC Bioinformatics, vol. 24, no. 1, p. 14, 2023.

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