Evolution of vertebrate rod and cone phototransduction genes

被引:81
作者
Larhammar, Dan [1 ]
Nordstrom, Karin [2 ]
Larsson, Tomas A. [1 ]
机构
[1] Uppsala Univ, Pharmacol Unit, Dept Neurosci, SE-75124 Uppsala, Sweden
[2] Univ Adelaide, Sch Mol & Biomed Sci, Adelaide, SA 5005, Australia
基金
瑞典研究理事会; 澳大利亚研究理事会;
关键词
gene duplication; tetraploidization; eye; retina; phototransduction; opsin; CYCLASE-ACTIVATING PROTEINS; WHOLE-GENOME DUPLICATION; COUPLED RECEPTOR KINASE; EN-BLOC DUPLICATION; MOLECULAR CHARACTERIZATION; SIGNAL-TRANSDUCTION; RHODOPSIN KINASE; AMPHIOXUS GENOME; PINEAL-GLAND; TELEOST FISH;
D O I
10.1098/rstb.2009.0077
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Vertebrate cones and rods in several cases use separate but related components for their signal transduction (opsins, G-proteins, ion channels, etc.). Some of these proteins are also used differentially in other cell types in the retina. Because cones, rods and other retinal cell types originated in early vertebrate evolution, it is of interest to see if their specific genes arose in the extensive gene duplications that took place in the ancestor of the jawed vertebrates (gnathostomes) by two tetraploidizations (genome doublings). The ancestor of teleost fishes subsequently underwent a third tetraploidization. Our previously reported analyses showed that several gene families in the vertebrate visual phototransduction cascade received new members in the basal tetraploidizations. We here expand these data with studies of additional gene families and vertebrate species. We conclude that no less than 10 of the 13 studied phototransduction gene families received additional members in the two basal vertebrate tetraploidizations. Also the remaining three families seem to have undergone duplications during the same time period but it is unclear if this happened as a result of the tetraploidizations. The implications of the many early vertebrate gene duplications for functional specialization of specific retinal cell types, particularly cones and rods, are discussed.
引用
收藏
页码:2867 / 2880
页数:14
相关论文
共 103 条
[1]   Evidence of en bloc duplication in vertebrate genomes [J].
Abi-Rached, L ;
Gilles, A ;
Shiina, T ;
Pontarotti, P ;
Inoko, H .
NATURE GENETICS, 2002, 31 (01) :100-105
[2]  
Ames JB, 2002, ADV EXP MED BIOL, V514, P333
[3]   The murine cone photoreceptor: A single cone type expresses both S and M opsins with retinal spatial patterning [J].
Applebury, ML ;
Antoch, MP ;
Baxter, LC ;
Chun, LLY ;
Falk, JD ;
Farhangfar, F ;
Kage, K ;
Krzystolik, MG ;
Lyass, LA ;
Robbins, JT .
NEURON, 2000, 27 (03) :513-523
[4]   The evolution of cell types in animals: emerging principles from molecular studies [J].
Arendt, Detlev .
NATURE REVIEWS GENETICS, 2008, 9 (11) :868-882
[5]   Human G protein γ11 and γ14 subtypes define a new functional subclass [J].
Balcueva, EA ;
Wang, Q ;
Hughes, H ;
Kunsch, C ;
Yu, ZH ;
Robishaw, JD .
EXPERIMENTAL CELL RESEARCH, 2000, 257 (02) :310-319
[6]   Structure and evolution of the Teleost extraretinal rod-like opsin (errlo) and ocular rod opsin (rho) genes:: Is Teleost rho a retrogene? [J].
Bellingham, J ;
Tarttelin, EE ;
Foster, RG ;
Wells, DJ .
JOURNAL OF EXPERIMENTAL ZOOLOGY PART B-MOLECULAR AND DEVELOPMENTAL EVOLUTION, 2003, 297B (01) :1-10
[7]   Expansion of signal transduction by G proteins -: The second 15 years or so:: From 3 to 16 α subunits plus βγ dimers [J].
Birnbaumer, Lutz .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2007, 1768 (04) :772-793
[8]   Evolution of vertebrate visual pigments [J].
Bowmaker, James K. .
VISION RESEARCH, 2008, 48 (20) :2022-2041
[9]  
Chen CKJ, 2002, ADV EXP MED BIOL, V514, P101
[10]   Expression of the G protein γT1 subunit during zebrafish development [J].
Chen, Hui ;
Leung, TinChung ;
Giger, Kathryn E. ;
Stauffer, Anna M. ;
Humbert, Jasper E. ;
Sinha, Soniya ;
Horstick, Eric J. ;
Hansen, Carl A. ;
Robishaw, Janet D. .
GENE EXPRESSION PATTERNS, 2007, 7 (05) :574-583