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Comparative chloroplast genomics: analyses including new sequences from the angiosperms Nuphar advena and Ranunculus macranthus

BMC Genomics · 2007 · Vol. 8(1) · pp. 174–174
Linda A. RaubesonRhiannon M. PeeryTimothy W. ChumleyChris DziubekH. Matthew FourcadeJeffrey L. BooreRobert K. Jansen

Abstract

SSR and SDR abundance varies by genome and, for SSRs, is proportional to genome size. Long SDRs are rare in the genomes assessed. SSRs occur less frequently than predicted and, although the majority of the repeat motifs do include A and T nucleotides, the A+T bias in SSRs is less than that predicted from the underlying genomic nucleotide composition. In codon usage third positions show an A+T bias, however variation in codon usage does not correlate with differences in A+T-richness. Thus, although plastome nucleotide composition shows "A+T richness", an A+T bias is not apparent upon more in-depth analysis, at least in these aspects. The pattern of evolution in the sequences identified as ycf15 and ycf68 is not consistent with them being protein-coding genes. In fact, these regions show no evidence of sequence conservation beyond what is normal for non-coding regions of the IR.

Genomics and Phylogenetic StudiesPlant and Fungal Species DescriptionsPhotosynthetic Processes and MechanismsBiologyGenomeGenBankGeneticsComparative genomicsPlastidGC-contentGenome evolutionEvolutionary biologyGenomics

MeSH terms

Base SequenceChloroplastsChromosome MappingModels, GeneticMolecular Sequence DataSpecies SpecificityGenomeGenes, PlantGenome, PlantEvolution, MolecularComputational BiologyAmino Acid MotifsGenomicsNupharRanunculus

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Office of Science
  • Biological and Environmental Research
  • Lawrence Berkeley National Laboratory
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