Chemodiversity ofCalophyllum inophyllumL. oil bioactive components related to their specific geographical distribution in the South Pacific region

Author:

Ginigini Joape1ORCID,Lecellier Gaël J.2ORCID,Nicolas Mael3,Nour Mohammed3,Hnawia Edouard3,Lebouvier Nicolas3,Herbette Gaëtan4ORCID,Lockhart Peter5,Raharivelomanana Phila6

Affiliation:

1. Pacific Natural Products Research Centre, Institute of Applied Sciences, University of the South Pacific, Suva, Fiji

2. Départment de Biologie, Université de Versailles Saint-Quentin-en-Yvelines, Versailles, France

3. ISEA EA7484, University of Caledonia, Noumea, New Caledonia

4. Spectropole, Campus de St Jérôme, Aix-Marseille Univ, CNRS, Centrale Marseille, FSCM, Marseille, France

5. School of Fundamental Sciences, Massey University, Palmerston North, New Zealand

6. EIO UMR241, Université de la Polynésie française, Faa’a, Tahiti, French Polynesia

Abstract

BackgroundDifferent parts of the treeCalophyllum inophyllumL. (nuts, leaves, roots, bark, fruits, nut oil and resin) are used as traditional medicines and cosmetics in most of the Pacific Islands. The oil efficiency as a natural cure and in traditional cosmetics has been largely described throughout the South Pacific, which led us to investigateC. inophyllum’s chemical and genetic diversity. A correlative study of the nut resin and leaf DNA from three distinct archipelagos in the South Pacific was carried out in order to identify diversity patterns inC. inophyllumacross the South Pacific.MethodsCalophyllum inophyllumplants were sampled from French Polynesia, New Caledonia and Fiji. We extracted tamanu oil (nut oil) resin for chemo-diversity studies and sampled leaf tissues for genetic studies. We applied an analysis method designed for small quantities (at a microscale level), and used High Performance Liquid Chromatography (HPLC) to establish the chemo-diversity of tamanu oil resin. In-house standards were co-eluted for qualitative determination. Genetic diversity was assessed using chloroplast barcoding markers (the Acetyl-CoA carboxylase (accD) gene and the psaA-ycf3 intergenic spacer region).ResultsOur HPLC analysis revealed 11 previously known tamanu oil constituents, with variability among plant samples. We also isolated and characterized two new neoflavonoids from tamanu oil resin namely, tamanolide E1 and E2 which are diastereoisomers. Although genetic analysis revealed low genetic variation, our multivariate analysis (PCA) of the tamanu oil resin chemical profiles revealed differentiation among geographic regions.ConclusionWe showed here that chromatographic analysis using formalized in-house standards of oil resin compounds for co-elution studies against oil resin samples could identify patterns of variation among samples ofC. inophyllum,and discriminate samples from different geographical origins.

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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3. Le Tamanu (Calophyllum inophyllum L.) en Polynésie Française et autre espèces du genre Calophyllum: De l’usage en médecine traditionnelle à l’émergence d’un médicament anti-VIH;Assouvie,2013

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5. The chloroplast ycf3 and ycf4 open reading frames of Chlamydomonas reinhardtii are required for the accumulation of the photosystem I complex;Boudreau;EMBO Journal,1997

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