4.1 Article

The chloroplast genome of the basal angiosperm Calycanthus fertilis - structural and phylogenetic analyses

Journal

PLANT SYSTEMATICS AND EVOLUTION
Volume 242, Issue 1-4, Pages 119-135

Publisher

SPRINGER WIEN
DOI: 10.1007/s00606-003-0056-4

Keywords

Calycanthus fertilis; angiosperms; chloroplast genome; evolution; phylogeny; substitution rates

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The nucleotide sequence of the complete chloroplast genome of a basal angiosperm, Calycanthusfertilis, has been determined. The circular 153337 bp long cpDNA is colinear with those of tobacco, Arabidopsis and spinach. A total of 133 predicted genes (115 individual gene species, 18 genes duplicated in the inverted repeats) including 88 potential protein-coding genes (81 gene species), 8 ribosomal RNA genes (4 gene species) and 37 tRNA genes (30 gene species) representing 20 amino acids were identified based on similarity to their homologs from other chloroplast genomes. This is the highest gene number ever registered in an angiosperm plastome. Calycanthus fertilis cpDNA also contains a homolog of the recently discovered mitochondrial ACRS gene. Since no gene transfer from mitochondria to the chloroplast has ever been documented, we investigated the evolutionary affinity of this gene in detail. Phylogenetic analysis of the protein-coding subset of the plastome suggests that the ancient line of Laurales emerged after the split of the angiosperms into monocots and dicots.

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