Coordination of zygotic genome activation entry and exit by H3K4me3 and H3K27me3 in porcine early embryos is a research paper published in Genome Research (2022). On theSindex it has a DataRank of 0. It has been cited 61 times.
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Major Project of Hubei Hongshan Laboratory
Grant: 2021hszd003
Fundamental Research Funds for the Central Universities
Grant: 2662022DKPY001
Key Research and Development Program of Hubei Province
Grant: 2021BBA221
HZAU-AGIS Cooperation Fund
Grant: SZYJY2021009
National Natural Science Foundation of China
Grant: 31941006
National Natural Science Foundation of China
Grant: 31970822
National Key R&D Program of China, Stem Cell and Translational Research
Grant: 2016YFA0100203
National Natural Science Foundation of China
Grant: 31902161
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Additional file 1 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 1 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 2 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 7 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 7 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 4 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 2 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 3 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 4 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 6 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 5 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 5 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 6 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 3 of Chromatin profiling and state predictions reveal insights into epigenetic regulation during early porcine development
Additional file 2 of Imprinting at the KBTBD6 locus involves species-specific maternal methylation and monoallelic expression in livestock animals
Additional file 2 of Imprinting at the KBTBD6 locus involves species-specific maternal methylation and monoallelic expression in livestock animals