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The plastid aldolase gene fromChlamydomonas reinhardtii: Intron/exon organization, evolution, and promoter structure
Authors:Birgit Pelzer-Reith  Susanne Freund  Claus Schnarrenberger  Hitome Yatsuki and Katsuji Hori
Institution:(1) Institut für Pflanzenphysiologie und Mikrobiologie Königin-Luise-Strasse, 12-16a, 14195 Berlin, Germany;(2) Department of Biochemistry, Saga Medical School, 749 Nabeshima, Saga, Japan
Abstract:Genomic clones encoding the plastidic fructose- 1,6-bisphosphate aldolase ofChlamydomonas reinhardtii were isolated and sequenced. The gene contains three introns which are located within the coding sequence for the mature protein. No introns are located within or near the sequence encoding the transit-peptide, in contrast to the genes for plastidic aldolases of higher plants. Neither the number nor the positions of the three introns of theC. reinhardtii aldolase gene are conserved in the plastidic or cytosolic aldolase genes of higher plants and animals. The 5prime border sequences of introns in the aldolase gene ofC. reinhardtii exhibit the conserved plant consensus sequence. The 3prime acceptor splice sites for introns 1 and 3 show much less similarity to the eukaryotic consensus sequences than do those of intron 2. The plastidic aldolase gene has two tandemly repeated CAAT box motifs in the promoter region. Genomic Southern blots indicate that the gene is encoded by a single locus in theC. reinhardtii genome.
Keywords:Chlamydomonas reinhardtii  Chloroplast aldolase  Evolution  Intron/exon structure
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