The complete mitochondrial genomes of deep-sea squid (Bathyteuthis abyssicola), bob-tail squid (Semirossia patagonica) and four giant cuttlefish (Sepia apama, S. latimanus, S. lycidas and S. pharaonis), and their application to the phylogenetic analysis of Decapodiformes

被引:32
作者
Kawashima, Yuumi [1 ]
Nishihara, Hidenori [2 ]
Akasaki, Tetsuya [1 ]
Nikaido, Masato [2 ]
Tsuchiya, Kotaro [3 ]
Segawa, Susumu [3 ]
Okada, Norihiro [2 ,4 ]
机构
[1] Cent Customs Lab, Kashiwa, Chiba 2770082, Japan
[2] Tokyo Inst Technol, Dept Biol Sci, Grad Sch Biosci & Biotechnol, Midori Ku, Yokohama, Kanagawa 2268501, Japan
[3] Tokyo Univ Marine Sci & Technol, Fac Marine Sci, Dept Ocean Sci, Minato Ku, Tokyo 1088477, Japan
[4] Natl Cheng Kung Univ, Dept Life Sci, Tainan 701, Taiwan
关键词
Mitochondrial gene arrangement; Evolution; Squid; Phylogeny; COLEOID CEPHALOPODS MOLLUSCA; AMINO-ACID SUBSTITUTIONS; DNA-SEQUENCE; GENE ORDER; MOLECULAR PHYLOGENY; EVOLUTION; INFERENCE; MODEL; REARRANGEMENTS; INVERTEBRATES;
D O I
10.1016/j.ympev.2013.06.007
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We determined the complete mitochondrial (mt) genomes of the deep-sea squid (Bathyteuthis abyssicola; supperfamily Bathyteuthoidea), the bob-tail squid (Semirossia patagonica; order Sepiolida) and four giant cuttlefish (Sepia apama, S. latimanus, S. lycidas and S. pharaonis; order Sepiida). The unique structures of the mt genomes of Bathyteuthis and Semirossia provide new information about the evolution of decapodiform mt genomes. We show that the mt genome of B. abyssicola, like those of other oegopsids studied so far, has two long duplicated regions that include seven genes (COX1-3, ATP6 and ATP8, tRNA(Asn), and either ND2 or ND3) and that one of the duplicated COX3 genes has lost its function. The mt genome of S. patagonica is unlike any other decapodiforms and, like Nautilus, its ATP6 and ATP8 genes are not adjacent to each other. The four giant cuttlefish have identical mt gene order to other cuttlefish determined to date. Molecular phylogenetic analyses using maximum likelihood and Bayesian methods suggest that traditional order Sepioidea (Sepiolida + Sepiida) is paraphyletic and Sepia (cuttlefish) has the sister-relationship with all other decapodiforms. Taking both the phylogenetic analyses and the mt gene order analyses into account, it is likely that the octopus-type mt genome is an ancestral state and that it had maintained from at least the Cephalopoda ancestor to the common ancestor of Oegopsida, Myopsida and Sepiolida. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:980 / 993
页数:14
相关论文
共 67 条
[11]  
Bonnaud L, 2002, B MAR SCI, V71, P197
[12]  
Bonnaud L, 1996, AM MALACOL BULL, V12, P87
[13]   Phylogeny of cephalopods inferred from mitochondrial DNA sequences [J].
Bonnaud, L ;
BoucherRodoni, R ;
Monnerot, M .
MOLECULAR PHYLOGENETICS AND EVOLUTION, 1997, 7 (01) :44-54
[14]   The complete sequence of the mitochondrial genome of Nautilus macromphalus (Mollusca: Cephalopoda) [J].
Boore, Jeffrey L. .
BMC GENOMICS, 2006, 7 (1)
[15]   Animal mitochondrial genomes [J].
Boore, JL .
NUCLEIC ACIDS RESEARCH, 1999, 27 (08) :1767-1780
[16]   Big trees from little genomes: mitochondrial gene order as a phylogenetic tool [J].
Boore, JL ;
Brown, WM .
CURRENT OPINION IN GENETICS & DEVELOPMENT, 1998, 8 (06) :668-674
[17]  
BoucherRodoni R, 1996, AM MALACOL BULL, V12, P79
[18]   Actin gene family evolution and the phylogeny of coleoid cephalopods (Mollusca: Cephalopoda) [J].
Carlini, DB ;
Reece, KS ;
Graves, JE .
MOLECULAR BIOLOGY AND EVOLUTION, 2000, 17 (09) :1353-1370
[19]   ARE THERE PHYSIOLOGICAL AND BIOCHEMICAL ADAPTATIONS OF METABOLISM IN DEEP-SEA ANIMALS [J].
CHILDRESS, JJ .
TRENDS IN ECOLOGY & EVOLUTION, 1995, 10 (01) :30-36
[20]   ProtTest 3: fast selection of best-fit models of protein evolution [J].
Darriba, Diego ;
Taboada, Guillermo L. ;
Doallo, Ramon ;
Posada, David .
BIOINFORMATICS, 2011, 27 (08) :1164-1165