Abstract
Taking advantage of the recent availability of the whole genome sequence of Caenorhabditis briggsae, a closely related nematode to Caenorhabditis elegans, we have examined the chemosensory gene superfamily by using comparative genomic methods. We have identified a chemosensory gene family, serpentine receptor class ab (srab), which exists in both species with 25 members in C. elegans and 14 members in C. briggsae. More than 20% of these gene models are reannotated. The srab family is similar to, but distinct from, the previously described serpentine receptor class a (sra) family and shows a differential expansion in C. elegans similar to that previously described for sra. The cellular expression patterns for multiple members of the srab family in both phasmid neurons in the tail and amphid neurons in the head supports the conclusion that they are chemosensory genes and suggests that they may play a role in integrating chemosensory inputs from both ends of the organism. The expansion of both the srab and sra gene families in C. elegans relative to C. briggsae is due to multiple rounds of tandem duplication and translocation of individual genes.
MeSH Terms
Animals
Caenorhabditis elegans/genetics,metabolism
Caenorhabditis elegans Proteins/genetics
Chemoreceptor Cells/metabolism
Chromosome Mapping
Evolution, Molecular
Genes, Reporter
Models, Genetic
Multigene Family
Phylogeny
Promoter Regions, Genetic
Chemicals
Caenorhabditis elegans Proteins
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Chen Nansheng
Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.
[email protected]
Pai Shraddha
Zhao Zhongying
Mah Allan
Newbury Rebecca
Johnsen Robert C
Altun Zeynep
Moerman Donald G
Baillie David L
Stein Lincoln D
References (24)
24 references, click to expand
-
Seven-transmembrane proteins as odorant and chemosensory receptors.
Science. 1999 Oct 22;286(5440):707-11
PMID: 10531047
-
Pfam 3.1: 1313 multiple alignments and profile HMMs match the majority of proteins.
Nucleic Acids Res. 1999 Jan 1;27(1):260-2
PMID: 9847196
-
The molecular architecture of odor and pheromone sensing in mammals.
Cell. 2000 Mar 17;100(6):611-8
PMID: 10761927
-
Using GeneWise in the Drosophila annotation experiment.
Genome Res. 2000 Apr;10(4):547-8
PMID: 10779496
-
Classification of transmembrane protein families in the Caenorhabditis elegans genome and identification of human orthologs.
Genome Res. 2000 Nov;10(11):1679-89
PMID: 11076853
-
Updating the str and srj (stl) families of chemoreceptors in Caenorhabditis nematodes reveals frequent gene movement within and between chromosomes.
Chem Senses. 2001 Feb;26(2):151-9
PMID: 11238245
-
A gene expression map for Caenorhabditis elegans.
Science. 2001 Sep 14;293(5537):2087-92
PMID: 11557892
-
The Pfam protein families database.
Nucleic Acids Res. 2002 Jan 1;30(1):276-80
PMID: 11752314
-
PCR fusion-based approach to create reporter gene constructs for expression analysis in transgenic C. elegans.
Biotechniques. 2002 Apr;32(4):728-30
PMID: 11962590
-
C. elegans responds to chemical repellents by integrating sensory inputs from the head and the tail.
Curr Biol. 2002 Apr 30;12(9):730-4
PMID: 12007416
-
Identification of a testicular odorant receptor mediating human sperm chemotaxis.
Science. 2003 Mar 28;299(5615):2054-8
PMID: 12663925
-
C. elegans ORFeome version 1.1: experimental verification of the genome annotation and resource for proteome-scale protein expression.
Nat Genet. 2003 May;34(1):35-41
PMID: 12679813
-
WormBase: a multi-species resource for nematode biology and genomics.
Nucleic Acids Res. 2004 Jan 1;32(Database issue):D411-7
PMID: 14681445
-
Genes and ligands for odorant, vomeronasal and taste receptors.
Nat Rev Neurosci. 2004 Apr;5(4):263-78
PMID: 15034552
-
The genome sequence of Caenorhabditis briggsae: a platform for comparative genomics.
PLoS Biol. 2003 Nov;1(2):E45
PMID: 14624247
-
GeneWise and Genomewise.
Genome Res. 2004 May;14(5):988-95
PMID: 15123596
-
The photomovement of Caenorhabditis elegans, a nematode which lacks ocelli. Proof that the response is to light not radiant heating.
Photochem Photobiol. 1985 May;41(5):577-82
PMID: 4011710
-
Phylogenies from molecular sequences: inference and reliability.
Annu Rev Genet. 1988;22:521-65
PMID: 3071258
-
CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice.
Nucleic Acids Res. 1994 Nov 11;22(22):4673-80
PMID: 7984417
-
Divergent seven transmembrane receptors are candidate chemosensory receptors in C. elegans.
Cell. 1995 Oct 20;83(2):207-18
PMID: 7585938
-
Gapped BLAST and PSI-BLAST: a new generation of protein database search programs.
Nucleic Acids Res. 1997 Sep 1;25(17):3389-402
PMID: 9254694
-
Two large families of chemoreceptor genes in the nematodes Caenorhabditis elegans and Caenorhabditis briggsae reveal extensive gene duplication, diversification, movement, and intron loss.
Genome Res. 1998 May;8(5):449-63
PMID: 9582190
-
A hidden Markov model for predicting transmembrane helices in protein sequences.
Proc Int Conf Intell Syst Mol Biol. 1998;6:175-82
PMID: 9783223
-
The large srh family of chemoreceptor genes in Caenorhabditis nematodes reveals processes of genome evolution involving large duplications and deletions and intron gains and losses.
Genome Res. 2000 Feb;10(2):192-203
PMID: 10673277