Phylogenetic screening of the human genome: Identification of differentially hybridizing repetitive sequence families

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Abstract

The Φ-screen, a method of phylogenetic screening, can be employed to detect repetitive sequence families that differentially hybridize between closely related species. Such differences may involve sequence divergence or variations in copy number, including total presence versus absence of a family of repeated DNA. We present the results of the Φ-screen comparing the human genome to that of the prosimian, Galago crassicaudatus. Three human repetitive families that are divergent or not present in galago have been detected. One of these families is described in detail; it is similar among the anthropoids but is present in a lower copy number and/or divergent form in prosimians. The family is clearly related to the transposon-like human element (THE) described by Paulson et al. (1985). THEs have long terminal repeats reminiscent of retroviruses but are unique in that they have no sequence similarity to known mammalian retroviruses. The sequence of a solo long terminal repeat, found unassociated with THE internal sequence, is presented. This family member, THE p2, is bordered by a 5-bp target-site repeat and is interrupted by the insertion of an Alu element. A solo THE element sequenced by Wiginton et al. (1986) contains an insertion of Alu at precisely the same position at does THE p2.

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Lloyd, J. A., Lamb, A. N., & Potter, S. S. (1987). Phylogenetic screening of the human genome: Identification of differentially hybridizing repetitive sequence families. Molecular Biology and Evolution, 4(2), 85–98. https://doi.org/10.1093/oxfordjournals.molbev.a040429

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