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- W2038529404 abstract "The sequence organization of mtDNA‡ in Xenopus laevis and X. borealis§ has been analyzed and compared. The cleavage sites for several restriction endonucleases were determined as an aid in mapping studies. X. laevis mtDNA was cloned in the form of recombinant plasmids and used in some of the experiments. The locations of the coding sequences for the two mt-RNAs were determined relative to each other and to the restriction map. The D-loop which marks the origin of replication was also positioned on this map. The directions of transcription of rRNA in X. laevis mtDNA and of replication in X. borealis mtDNA were determined. Despite a 25% divergence of primary sequence and differences in restriction maps, the location of rRNA genes and the replication origin in X. laevis and X. borealis mtDNA are very similar. The large and small rRNA genes are close to each other and are separated by a gap of 120 to 160 base-pairs. Transcription proceeds from the small to the large mt-rRNA. The replication origin is 700 to 950 base-pairs distal from the end of the small rRNA gene, and asymmetric replication proceeds away from the rRNA genes. The mtDNA maps are presented in Figure 10. These results together with earlier work on other animal mtDNAs show that the overall anatomy of this DNA molecule is highly conserved in evolution." @default.
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- W2038529404 date "1978-02-01" @default.
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- W2038529404 title "Mapping of mitochondrial DNA in Xenopus laevis and X. borealis: The positions of ribosomal genes and D-loops" @default.
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- W2038529404 doi "https://doi.org/10.1016/0022-2836(78)90273-5" @default.
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