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Complete chloroplast genome sequence of historical olive (Olea europaea subsp. europaea) cultivar Mehras, in Jordan

The complete chloroplast genome sequence of Olea europaea subsp. europaea cultivar Mehras was determined using high-throughput sequencing technology. Chloroplast genome was 155,897 bp in length, containing a pair of 25,742 bp inverted repeat (IR) regions, which were separated by large and small sing...

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Published in:Mitochondrial DNA. Part B. Resources 2021-01, Vol.6 (1), p.194-195
Main Authors: Haddad, Nizar, Migdadi, Hussein, Brake, Mohammad, Ayoub, Salam, Obeidat, Wisam, Abusini, Yahya, Aburumman, Abeer, Al-Shagour, Banan, Al-Anasweh, Eman, Sadder, Monther
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Language:English
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Summary:The complete chloroplast genome sequence of Olea europaea subsp. europaea cultivar Mehras was determined using high-throughput sequencing technology. Chloroplast genome was 155,897 bp in length, containing a pair of 25,742 bp inverted repeat (IR) regions, which were separated by large and small single-copy regions (LSC and SSC) of 86,622 and 17,791 bp, respectively. The chloroplast genome contained 130 genes (85 protein-coding, 37 tRNA, and eight rRNA). GC content was 37.8%. We performed phylogenetic analysis with other isolates. The analysis showed that O. e. subsp. europaea cultivar Mehras has an ancient common ancestor with cultivated olives in Italy, Spain, and Cyprus.
ISSN:2380-2359
2380-2359
DOI:10.1080/23802359.2020.1860712