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- W2560155066 abstract "SUMMARY Motivation: Evolution of green plants cross a few major adaptation boundaries: land plants vs. algae, seed plants (Embryophyta) vs. others, and monocotyledons (Liliopsida) vs. dicots (eudicotyledons). Evolution of chloroplasts – symbiotic bacteria inside eukaryote cells, is different from evolution of nuclear genome in both rate and driving forces of phylogenetic modifications. Several distinct approaches were applied to evaluate an impact of evolutionary leaps on chloroplast genome content and composition in aim to connect structural changes to adaptive advantages of progressive phylogenetic lineages in green plants. Results: A comparison of nucleotide and amino acid similarity for conservative genes, gene content, intron presence, amino acid and codon usage, frequency and strand asymmetry of oligonucleotides, and average distance between mononucleotides was made for 51 complete chloroplast genomes of 53 published to the date. The hypothesis of “quantum leaps” in chloroplast genome organization was tested by comparison of different parameters with consensus evolutionary distances obtained by nucleotide and amino acid similarity for conservative ribosomal rRNA and protein genes. The result demonstrates that transaction from algae to land plants, origin of seed plants and monocotyledons was attributed by significant changes in codon usage, frequency of asymmetric oligonucleotides and average similar nucleotide distance. Availability: http://www.bionet.nsc.ru/bgrs2006/." @default.
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- W2560155066 date "2006-01-01" @default.
- W2560155066 modified "2023-09-27" @default.
- W2560155066 title "PHYLOGENETIC CHANGES IN CHLOROPLAST GENOMES" @default.
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