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Chemical composition of flavonoids and styrylpyrones and the genetic variability of isozymes in natural populations of Cryptocarya mandioccana Meisner (Lauraceae)
Authors:Pedro L.R. de Moraes  Claudia J. Nehme  Marcelo C. Alves  Maria Teresa V.C. Derbyshire  Alberto J. Cavalheiro
Affiliation:1. Instituto de Biologia, Depto. de Botânica, UNICAMP, Caixa Postal 6109, 13083-970, Campinas, SP, Brazil;2. Núcleo de Bioensaios, Biossíntese e Ecofisiologia de Produtos Naturais (NuBBE), Instituto de Química, Depto. de Química Orgânica, UNESP, Araraquara, SP, CEP 14800-900, Brazil;3. Seção Técnica de Informática, ESALQ-USP, Caixa Postal 9, 13401-000, Piracicaba, SP, Brazil;4. Laboratório de Melhoramento de Plantas, CENA-USP, Caixa Postal 96, Piracicaba, SP, CEP 13400-970, Brazil
Abstract:The chemical composition of leaves of 57 trees of Cryptocarya mandioccana from three populations of southeastern Brazil was investigated through HPLC, assaying six flavonoids, seven styrylpyrones, and seven unidentified compounds. From 51 of the former trees, genotypes were obtained from 40 polymorphic loci of 19 isozymes. Cluster analyses of the phytochemical and genetical variation revealed that trees exhibited four chemotypes and five clusters from isozymes, respectively. Discriminant analyses from selected variables of the isozymic and chemical data sets were performed, respectively, in relation to the four chemotypes and the five isozyme clusters. The classification of individuals presented respective error estimates of 9.16% and 13.57%, indicating that the genetic data could explain the clusters from chemotypes and vice versa at acceptable error levels. Linear regressions with Dummy variable showed significant association of locus Skdh-2 with quercetin-3-O-β-d-glucopyranoside and cryptofolione, indicating that its alleles would be responsible for the chemotype variation between individuals.
Keywords:Cryptocarya mandioccana   Chemotype   Flavonoid   Styrylpyrone   Isozyme   Genetic variation   Discriminant analysis   Cluster analysis
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