Literature DB >> 7713438

Complete sequence of a sea lamprey (Petromyzon marinus) mitochondrial genome: early establishment of the vertebrate genome organization.

W J Lee1, T D Kocher.   

Abstract

The complete nucleotide sequence of a sea lamprey (Petromyzon marinus) mitochondrial genome has been determined. The lamprey genome is 16,201 bp in length and contains genes for 13 proteins, two rRNAs, 22 tRNAs and two major noncoding regions. The order and transcriptional polarities of protein-coding genes are basically identical to those of other chordate mtDNAs, demonstrating that the common mitochondrial gene organization of vertebrates was established at an early stage of vertebrate evolution. The two major noncoding regions are separated by two tRNA genes. The first region probably functions as the control region because it contains distinctive conserved sequence blocks (CSB-II and III) common to other vertebrate control regions. The central conserved domain observed in other vertebrate control regions is not found in the lamprey, suggesting that it is a recently evolved functional domain in vertebrates. Noncoding segments are not found in the expected position of the origin of replication for the second strand, suggesting either that one of the tRNA genes has a dual function or that the second noncoding region may function as the second-strand origin. The base composition at the wobble positions of fourfold degenerate codon families is highly biased toward thymine (32.7%). Values of GC- and AT-skew are typical of vertebrate mitochondrial genomes.

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Year:  1995        PMID: 7713438      PMCID: PMC1206387     

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  21 in total

1.  The complete nucleotide sequence of the Crossostoma lacustre mitochondrial genome: conservation and variations among vertebrates.

Authors:  C S Tzeng; C F Hui; S C Shen; P C Huang
Journal:  Nucleic Acids Res       Date:  1992-09-25       Impact factor: 16.971

2.  Evidence from 18S ribosomal RNA sequences that lampreys and hagfishes form a natural group.

Authors:  D W Stock; G S Whitt
Journal:  Science       Date:  1992-08-07       Impact factor: 47.728

Review 3.  Evolution by DNA turnover in the control region of vertebrate mitochondrial DNA.

Authors:  A R Hoelzel
Journal:  Curr Opin Genet Dev       Date:  1993-12       Impact factor: 5.578

4.  A molecular evolutionary framework for eukaryotic model organisms.

Authors:  A Sidow; W K Thomas
Journal:  Curr Biol       Date:  1994-07-01       Impact factor: 10.834

Review 5.  Slipped-strand mispairing: a major mechanism for DNA sequence evolution.

Authors:  G Levinson; G A Gutman
Journal:  Mol Biol Evol       Date:  1987-05       Impact factor: 16.240

6.  The mitochondrial DNA molecular of Drosophila yakuba: nucleotide sequence, gene organization, and genetic code.

Authors:  D O Clary; D R Wolstenholme
Journal:  J Mol Evol       Date:  1985       Impact factor: 2.395

7.  The complete nucleotide sequence of the Xenopus laevis mitochondrial genome.

Authors:  B A Roe; D P Ma; R K Wilson; J F Wong
Journal:  J Biol Chem       Date:  1985-08-15       Impact factor: 5.157

8.  The phylogeny of echinoderm classes based on mitochondrial gene arrangements.

Authors:  M J Smith; A Arndt; S Gorski; E Fajber
Journal:  J Mol Evol       Date:  1993-06       Impact factor: 2.395

9.  Sequence and gene organization of mouse mitochondrial DNA.

Authors:  M J Bibb; R A Van Etten; C T Wright; M W Walberg; D A Clayton
Journal:  Cell       Date:  1981-10       Impact factor: 41.582

10.  The mitochondrial genome of the honeybee Apis mellifera: complete sequence and genome organization.

Authors:  R H Crozier; Y C Crozier
Journal:  Genetics       Date:  1993-01       Impact factor: 4.562

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  45 in total

1.  Mitochondrial evidence on the phylogenetic position of caecilians (Amphibia: Gymnophiona).

Authors:  R Zardoya; A Meyer
Journal:  Genetics       Date:  2000-06       Impact factor: 4.562

2.  Mitochondrial genome of Ciona savignyi (Urochordata, Ascidiacea, Enterogona): comparison of gene arrangement and tRNA genes with Halocynthia roretzi mitochondrial genome.

Authors:  Shin-ichi Yokobori; Yukari Watanabe; Tairo Oshima
Journal:  J Mol Evol       Date:  2003-11       Impact factor: 2.395

3.  The complete mitochondrial genome of the butterfly Apatura metis (Lepidoptera: Nymphalidae).

Authors:  Min Zhang; Xinping Nie; Tianwen Cao; Juping Wang; Tao Li; Xiaonan Zhang; Yaping Guo; Enbo Ma; Yang Zhong
Journal:  Mol Biol Rep       Date:  2012-02-07       Impact factor: 2.316

Review 4.  The lamprey in evolutionary studies.

Authors:  Joana Osório; Sylvie Rétaux
Journal:  Dev Genes Evol       Date:  2008-02-15       Impact factor: 0.900

5.  Model of amino acid substitution in proteins encoded by mitochondrial DNA.

Authors:  J Adachi; M Hasegawa
Journal:  J Mol Evol       Date:  1996-04       Impact factor: 2.395

6.  Multiple independent origins of mitochondrial gene order in birds.

Authors:  D P Mindell; M D Sorenson; D E Dimcheff
Journal:  Proc Natl Acad Sci U S A       Date:  1998-09-01       Impact factor: 11.205

7.  The complete nucleotide sequence of the mitochondrial DNA of the dogfish, Scyliorhinus canicula.

Authors:  C Delarbre; N Spruyt; C Delmarre; C Gallut; V Barriel; P Janvier; V Laudet; G Gachelin
Journal:  Genetics       Date:  1998-09       Impact factor: 4.562

8.  Complete sequence of the amphioxus (Branchiostoma lanceolatum) mitochondrial genome: relations to vertebrates.

Authors:  N Spruyt; C Delarbre; G Gachelin; V Laudet
Journal:  Nucleic Acids Res       Date:  1998-07-01       Impact factor: 16.971

9.  Structure and conservation of tandem repeats in the mitochondrial DNA control region of the Least Brook lamprey (Lampetra aepyptera).

Authors:  Matthew M White; Holly R Martin
Journal:  J Mol Evol       Date:  2009-05-16       Impact factor: 2.395

10.  Genetic and biochemical impairment of mitochondrial complex I activity in a family with Leber hereditary optic neuropathy and hereditary spastic dystonia.

Authors:  D D De Vries; L N Went; G W Bruyn; H R Scholte; R M Hofstra; P A Bolhuis; B A van Oost
Journal:  Am J Hum Genet       Date:  1996-04       Impact factor: 11.025

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