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PMID: 11919290 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Evolution of dinoflagellate unigenic minicircles and the partially concerted divergence of their putative replicon origins.

Molecular biology and evolution ·Vol. 19 ·No. 4 ·2002-04-00 ·Pages 489-500

Zhang Z, Cavalier-Smith T, Green BR

Abstract

Dinoflagellate chloroplast genes are unique in that each gene is on a separate minicircular chromosome. To understand the origin and evolution of this exceptional genomic organization we completely sequenced chloroplast psbA and 23S rRNA gene minicircles from four dinoflagellates: three closely related Heterocapsa species (H. pygmaea, H. rotundata, and H. niei) and the very distantly related Amphidinium carterae. We also completely sequenced a Protoceratium reticulatum minicircle with a 23S rRNA gene of novel structure. Comparison of these minicircles with those previously sequenced from H. triquetra and A. operculatum shows that in addition to the single gene all have noncoding regions of approximately a kilobase, which are likely to include a replication origin, promoter, and perhaps segregation sequences. The noncoding regions always have a high potential for folding into hairpins and loops. In all six dinoflagellate strains for which multiple minicircles are fully sequenced, parts of the noncoding regions, designated cores, are almost identical between the psbA and 23S rRNA minicircles, but the remainder is very different. There are two, three, or four cores per circle, sometimes highly related in sequence, but no sequence identity is detectable between cores of different species, even within one genus. This contrast between very high core conservation within a species, but none among species, indicates that cores are diverging relatively rapidly in a concerted manner. This is the first well-established case of concerted evolution of noncoding regions on numerous separate chromosomes. It differs from concerted evolution among tandemly repeated spacers between rRNA genes, and that of inverted repeats in plant chloroplast genomes, in involving only the noncoding DNA cores. We present two models for the origin of chloroplast gene minicircles in dinoflagellates from a typical ancestral multigenic chloroplast genome. Both involve substantial genomic reduction and gene transfer to the nucleus. One assumes differential gene deletion within a multicopy population of the resulting oligogenic circles. The other postulates active transposition of putative replicon origins and formation of minicircles by homologous recombination between them.

MeSH Terms
Animals Base Sequence DNA/chemistry,genetics DNA Primers/chemistry DNA, Chloroplast/genetics DNA, Circular/genetics Dinoflagellida/genetics Evolution, Molecular Gene Duplication Genetic Variation Molecular Sequence Data Photosynthetic Reaction Center Complex Proteins/genetics Plastids/genetics Polymerase Chain Reaction RNA, Ribosomal, 23S/genetics Replication Origin/genetics Sequence Analysis, DNA Sequence Deletion
Chemicals
DNA Primers DNA, Chloroplast DNA, Circular Photosynthetic Reaction Center Complex Proteins RNA, Ribosomal, 23S DNA
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Zhang Zhaoduo
Department of Botany, University of British Columbia, 3529-6270 University Blvd., Vancouver, BC, Canada V6T 1Z4.
Cavalier-Smith Thomas
Green Beverley R
Article Info
Journal
Molecular biology and evolution
Abbr.
Mol Biol Evol
ISSN
0737-4038
Published
2002-04-00
Pages
489-500
Language
English
Region
United States
NLM ID
8501455
Subset
IM
Databases
GENBANK
AY004258, AY004259, AY004260, AY004261, AY004262, AY004263, AY004264, AY004265, AY004266, AY033400
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