1998Journal of Essential Oil ResearchOpen access

Chemical Segregation of Progeny of Camphor Trees with High Camphorc.q.Linalool Content

Pham Van Khiên, Hô Trung Chiên, Nguyêñ Xuân Dũng, Antoine X. Leclercq, Piet A. Leclercq

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Abstract

The propagation of open pollinated seed from two camphor trees with a high camphor and linalool content, respectively, yielded 115 progeny. The chemical composition of the leaf oils of these trees was analyzed by a combination of capillary GC and GC/MS. Four chemotypes could be distinguished among the 57 trees cultivated from a single mother tree rich in camphor [Cinnamomum camphora (L.) Sieb.]. The first group (23 trees) was rich in camphor (62–93%), and the second group (13 progeny) contained 1,8-cineole and a-terpineol as major compounds (30–57% and 14–25%, respectively). Thirteen trees yielded oils rich in (E)-nerolidol and 9-oxonerolidol (47–84%). The oils of eight other trees also contained (E)-nerolidol and 9-oxonerolidol (22–36%) but contained higher proportions of safrole (30–70%). The leaf oils of 58 individual trees propagated from another mother tree which was rich in linalool [C. camphora (L.) Sieb. var. linaloolifera], indicated the presence of six chemotypes. Most of the progeny, 33 trees, contained oils rich in linalool (72–96%), and seven trees yielded oils containing camphor as major constituent (70–86%). The oils from eight trees contained mainly (E)-nerolidol and 9-oxonerolidol (61–91%), while those from six progeny contained a mixture of camphor (19–71%) and linalool (14–72%). Three trees yielded oils rich in 1,8-cineole (54–56%), β-pinene (16–24%) and α-terpineol (9–11%). The oil of one tree was characterized by the significant presence of linalool (38%), 1,8-cineole (36%) and β-pinene (11%).

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The propagation of open pollinated seed from two camphor trees with a high camphor and linalool content, respectively, yielded 115 progeny. The chemical composition of the leaf oils of these trees was analyzed by a combination of capillary GC and GC/MS. Four chemotypes could be distinguished among the 57 trees cultivated from a single mother tree rich in camphor [Cinnamomum camphora (L.) Sieb.]. The first group (23 trees) was rich in camphor (62–93%), and the second group (13 progeny) contained 1,8-cineole and a-terpineol as major compounds (30–57% and 14–25%, respectively). Thirteen trees yielded oils rich in (E)-nerolidol and 9-oxonerolidol (47–84%). The oils of eight other trees also contained (E)-nerolidol and 9-oxonerolidol (22–36%) but contained higher proportions of safrole (30–70%). The leaf oils of 58 individual trees propagated from another mother tree which was rich in linalool [C. camphora (L.) Sieb. var. linaloolifera], indicated the presence of six chemotypes. Most of the progeny, 33 trees, contained oils rich in linalool (72–96%), and seven trees yielded oils containing camphor as major constituent (70–86%). The oils from eight trees contained mainly (E)-nerolidol and 9-oxonerolidol (61–91%), while those from six progeny contained a mixture of camphor (19–71%) and linalool (14–72%). Three trees yielded oils rich in 1,8-cineole (54–56%), β-pinene (16–24%) and α-terpineol (9–11%). The oil of one tree was characterized by the significant presence of linalool (38%), 1,8-cineole (36%) and β-pinene (11%).

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Available abstract

The propagation of open pollinated seed from two camphor trees with a high camphor and linalool content, respectively, yielded 115 progeny. The chemical composition of the leaf oils of these trees was analyzed by a combination of capillary GC and GC/MS. Four chemotypes could be distinguished among the 57 trees cultivated from a single mother tree rich in camphor [Cinnamomum camphora (L.) Sieb.]. The first group (23 trees) was rich in camphor (62–93%), and the second group (13 progeny) contained 1,8-cineole and a-terpineol as major compounds (30–57% and 14–25%, respectively). Thirteen trees yielded oils rich in (E)-nerolidol and 9-oxonerolidol (47–84%). The oils of eight other trees also contained (E)-nerolidol and 9-oxonerolidol (22–36%) but contained higher proportions of safrole (30–70%). The leaf oils of 58 individual trees propagated from another mother tree which was rich in linalool [C. camphora (L.) Sieb. var. linaloolifera], indicated the presence of six chemotypes. Most of the progeny, 33 trees, contained oils rich in linalool (72–96%), and seven trees yielded oils containing camphor as major constituent (70–86%). The oils from eight trees contained mainly (E)-nerolidol and 9-oxonerolidol (61–91%), while those from six progeny contained a mixture of camphor (19–71%) and linalool (14–72%). Three trees yielded oils rich in 1,8-cineole (54–56%), β-pinene (16–24%) and α-terpineol (9–11%). The oil of one tree was characterized by the significant presence of linalool (38%), 1,8-cineole (36%) and β-pinene (11%).

Key concepts: Linalool, Camphor, Nerolidol, Botany, Cinnamomum camphora, Chemotype, Chemistry, Horticulture

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