发表论文

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2. Yin Q., Yang C., Strelkova O.S., Sun Y.H., Gopalan S., Yang L., Dekker J., Fazzio T.G., Li X.Z., Gibcus J., Rando O.J. (2022) Revisiting chromatin packaging in mouse sperm. bioRxiv. doi: https://doi.org/10.1101/2022.12.26.521943

3. Sun, Y.H., Wang, Y.R., Du, K, Y.H., and Li, X.Z. (2021) The birth of piRNAs: How mammalian piRNAs are produced, originated, and evolved. Mammalian Genome. 33(2):293

4. Yu, Y.H., Wang, Y.R., Du, K., Zheng, J., Xie, L.H., Pereira A., Zhang, C., Ricci, E.P., and Li, X.Z. (2021) Coupled protein synthesis and ribosome-guided piRNA processing on mRNAs. Nature Communications. 12(1): 5970

5. Sun, Y.H., Wang, A., Song, C., Srivastava, R.K., Au, K.F., Li, X.Z. (2021) Single-molecule long-read sequencing reveals a conserved intact long RNA profile in sperm. Nature Communications. 12(1):1361

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6. Gu, H., Yu, Y.H., Li, X.Z. (2021) Novel rRNA-depletion methods for total RNA sequencing and ribosome profiling developed for avian species. Poultry Science. 100:101321

7. Abe, H., Meduri, R., Li, Z., Andreassen P.R., Li, X.Z., Namekawa S.H. (2020) RNF8 is not required for histone-to-protamine exchange in spermiogenesis. bioRxiv.2020.12.05.413005

8. Avidor-Reiss, T., Zhang, Z., Li, X.Z. (2020) Sperm differentiation and spermatozoa function: mechanisms, diagnostics, and treatment. Frontiers in Cell and Developmental Biology; 8:219

9. Sun, Y.H., Zhu, J., Xie, L.H., Li, Z., Zhu, X., Song, C. Chen, C., Ricci, E.P., Weng, Z., and Li, X.Z. (2020) Ribosomes guide pachytene piRNA formation on long intergenic piRNA precursors. Nature Cell Biology. 22, 200-212

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10. Li, X.Z. (2019) What can piRNA research learn from chickens, and vice versa? Canadian Journal of Animal Science. 99: 641–648

11. Sun, Y.H., Jiang F., Li, X.Z. (2018) Disruption of Tdrd5 decouples the stepwise processing of long precursor transcripts during pachytene piRNA biogenesis. Biology of Reproduction, 99(4):684-685

12. Sun, Y.H., Xie, L.H., Zhuo, X., Chen, Q., Ghoneim, D., Zhang, B., Jagne, J., Yang, C., Li, X.Z. (2017) Domestic chickens activate a piRNA defense against avian leukosis virus. eLife,6:e24695

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14. Ishiguro, K., Kim, J., Shibuya, H., Hernández-Hernández, A., Suzuki, A., Fukagawa, T., Shioi, G., Kiyonari, H., Li, X.C., Schimenti, J., Höög, C., and Watanabe Y. (2014) Meiosis-specific cohesin mediates homolog recognition in mouse spermatocytes. Genes & Development, 28(6):594-607

15. Moran, Y., Fredman, D., Praher D., Li, X.Z., Wee, L., Rentzsch, F., Zamore, P.D., Technau, U. and Seitz, H. (2014) Cnidarian microRNAs frequently regulate targets by cleavage. Genome Research, 24(4):651-63

16. Li, X.Z., Roy, C.K., Moore, M.J., and Zamore, P.D. (2013) Defining piRNA primary transcripts. Cell Cycle, 12:1657-8

17. Li, X.Z., Roy, C.K., Dong, X., Bolcun-Filas, E.M., Wang, J., Han, B.W., Xu, J., Moore, M.J., Schimenti, J.C., Weng Z., and Zamore, P.D. (2013) An ancient transcription factor initiates the burst of piRNA production during early meiosis in mouse testes. Molecular Cell, 50: 67-81

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22. Li, X.C. and Schimenti, J.C. (2007) Mouse pachytene checkpoint 2 (Trip13) is required for completing meiotic recombination but not synapsis. PLoS Genetics 3: 1785-1785

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