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Complete mitochondrial genome sequences of  three Nakaseomyces species reveal invasion by palindromic GC clusters and considerable size expansion
Authors:Christiane Bouchier,Laurence Ma,Sophie Cré  no,Bernard Dujon,&    cile Fairhead
Affiliation:Institut Pasteur, Plate-Forme Génomique, Paris, France;and;Unitéde Génétique Moléculaire des Levures, Genomes and Genetics Department, Institut Pasteur, CNRS, URA 2171, UniversitéPierre et Marie Curie, Paris, France
Abstract:Here we report the sequence of three mitochondrial genomes from yeasts of the Nakaseomyces clade that includes the pathogenic yeast Candida glabrata , namely, that of Kluyveromyces delphensis, Candida castellii and Kluyveromyces bacillisporus . The gene content is equivalent to that of C. glabrata , but reveals the existence of new group I introns in COX1 and CYTB and new potential intronic endonucleases. Gene order is highly rearranged in these genomes, which contain numerous palindromic GC clusters. The more GC nucleotides these elements contain, the longer and more AT-rich are the intergenes containing them, leading to a direct relationship between the number of Gs and Cs within the elements and the size of the genomes. Thus, there is a fivefold difference in size between the smallest and the largest mitochondrial genome, with the largest being the most AT-rich overall. Sequences are available under EMBL accession numbers FM995164 , FM995165 , and FM995166 .
Keywords:Candida glabrata    mtDNA    palindromes    intronic ORFs
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