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Article

Complete Chloroplast Genome of Argania spinosa: Structural Organization and Phylogenetic Relationships in Sapotaceae

1
CRRA-Rabat, National Institute for Agricultural Research (INRA), Rabat 10101, Morocco
2
Iridian Genomes, Inc., Bethesda, MD 20817, USA
3
National Center for Biotechnology Information, National Institutes of Health, Bethesda, MD 20817, USA
4
Laboratory of Biotechnology and Valorization of Natural Resources (LBVRN), Faculty of Sciences, University Ibn Zohr, Agadir 80000, Morocco
5
National Center for Scientific and Technological Research (CNRST), Rabat 10102, Morocco
*
Authors to whom correspondence should be addressed.
Plants 2020, 9(10), 1354; https://doi.org/10.3390/plants9101354
Submission received: 18 May 2020 / Revised: 24 June 2020 / Accepted: 25 June 2020 / Published: 13 October 2020
(This article belongs to the Special Issue Plant Molecular Phylogenetics and Evolutionary Genomics)

Abstract

Argania spinosa (Sapotaceae), an important endemic Moroccan oil tree, is a primary source of argan oil, which has numerous dietary and medicinal proprieties. The plant species occupies the mid-western part of Morocco and provides great environmental and socioeconomic benefits. The complete chloroplast (cp) genome of A. spinosa was sequenced, assembled, and analyzed in comparison with those of two Sapotaceae members. The A. spinosa cp genome is 158,848 bp long, with an average GC content of 36.8%. The cp genome exhibits a typical quadripartite and circular structure consisting of a pair of inverted regions (IR) of 25,945 bp in length separating small single-copy (SSC) and large single-copy (LSC) regions of 18,591 and 88,367 bp, respectively. The annotation of A. spinosa cp genome predicted 130 genes, including 85 protein-coding genes (CDS), 8 ribosomal RNA (rRNA) genes, and 37 transfer RNA (tRNA) genes. A total of 44 long repeats and 88 simple sequence repeats (SSR) divided into mononucleotides (76), dinucleotides (7), trinucleotides (3), tetranucleotides (1), and hexanucleotides (1) were identified in the A. spinosa cp genome. Phylogenetic analyses using the maximum likelihood (ML) method were performed based on 69 protein-coding genes from 11 species of Ericales. The results confirmed the close position of A. spinosa to the Sideroxylon genus, supporting the revisiting of its taxonomic status. The complete chloroplast genome sequence will be valuable for further studies on the conservation and breeding of this medicinally and culinary important species and also contribute to clarifying the phylogenetic position of the species within Sapotaceae.
Keywords: chloroplast genome; sapotaceae; Argania spinosa; phylogenomic analysis; molecular marker chloroplast genome; sapotaceae; Argania spinosa; phylogenomic analysis; molecular marker
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MDPI and ACS Style

Khayi, S.; Gaboun, F.; Pirro, S.; Tatusova, T.; El Mousadik, A.; Ghazal, H.; Mentag, R. Complete Chloroplast Genome of Argania spinosa: Structural Organization and Phylogenetic Relationships in Sapotaceae. Plants 2020, 9, 1354. https://doi.org/10.3390/plants9101354

AMA Style

Khayi S, Gaboun F, Pirro S, Tatusova T, El Mousadik A, Ghazal H, Mentag R. Complete Chloroplast Genome of Argania spinosa: Structural Organization and Phylogenetic Relationships in Sapotaceae. Plants. 2020; 9(10):1354. https://doi.org/10.3390/plants9101354

Chicago/Turabian Style

Khayi, Slimane, Fatima Gaboun, Stacy Pirro, Tatiana Tatusova, Abdelhamid El Mousadik, Hassan Ghazal, and Rachid Mentag. 2020. "Complete Chloroplast Genome of Argania spinosa: Structural Organization and Phylogenetic Relationships in Sapotaceae" Plants 9, no. 10: 1354. https://doi.org/10.3390/plants9101354

APA Style

Khayi, S., Gaboun, F., Pirro, S., Tatusova, T., El Mousadik, A., Ghazal, H., & Mentag, R. (2020). Complete Chloroplast Genome of Argania spinosa: Structural Organization and Phylogenetic Relationships in Sapotaceae. Plants, 9(10), 1354. https://doi.org/10.3390/plants9101354

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