Parental genome unification is highly error-prone in mammalian embryos

Abstract
171497 pGEMHE-mClover3 T7 promotor drives in vitro transcription of mClover3 mRNA 171496 pGEMHE-mH33B-mClover3 T7 promotor drives in vitro transcription of mClover3-tagged mouse H3.3B mRNA 171495 pGEMHE-bNup98-DN-NLS-mClover3 T7 promotor drives in vitro transcription of mClover3-tagged bovine Nup98 DN mRNA 171494 pGEMHE-mClover3-bElys T7 promotor drives in vitro transcription of mClover3-tagged bovine Elys mRNA 171493 pGEMHE-GST-KASH5-DN T7 promotor drives in vitro transcription of GST-tagged bovine Kash5 DN mRNA 171492 pGEMHE-mClover3-KASH5-DN T7 promotor drives in vitro transcription of mClover3-tagged bovine Kash5 DN mRNA 171491 pGEMHE-Pom121-mScarlet T7 promotor drives in vitro transcription of mScarlet-tagged mouse Pom121 mRNA 171490 pGEMHE-mScarlet-hCenpC T7 promotor drives in vitro transcription of mScarlet-tagged human hCenpC mRNA 171489 pGEMHE-H2B-mClover3 T7 promotor drives in vitro transcription of mClover3-tagged human H2B mRNA 171488 pGEMHE-mScarlet-MAP4-MTBD T7 promotor drives in vitro transcription of mScarlet-tagged mouse MAP4-Microtubule Binding Domain mRNA 171487 pGEMHE-miRFP-MAP4-MTBD T7 promotor drives in vitro transcription of miRFP-tagged mouse MAP4-Microtubule Binding Domain mRNA 171486 pGEMHE-GST T7 promotor drives in vitro transcription of GST mRNA

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URL:https://www.addgene.org/browse/article/28216708/

Papers

Parental genome unification is highly error-prone in mammalian embryos
DOI:10.1016/j.cell.2021.04.013