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Together, these results illustrate an approach for  high-resolution, single-cell DNA domain analysis in vivo, identify domain  structures that change with cell identity, and show that border elements  contribute to the formation of physical domains in Drosophila.", "url": "https://www.ncbi.nlm.nih.gov/pubmed/30886393", "@id": "/publications/6c007db6-3eba-41d8-9d50-cb7e7c05841f/", "authors": ["Mateo LJ", "Murphy SE", "Hafner A", "Cinquini IS", "Walker CA", "Boettiger AN"], "ID": "PMID:30886393", "uuid": "6c007db6-3eba-41d8-9d50-cb7e7c05841f", "journal": "Nature", "date_published": "2019-04", "short_attribution": "Mateo LJ et al. (2019)", "principals_allowed": {"view": ["system.Everyone"], "edit": ["group.admin"]}}, "pubs_using": [], "publications_of_set": [{"status": "current", "abstract": "The establishment of cell types during development requires precise interactions  between genes and distal regulatory sequences. 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