Characterization of the pufferfish (Fugu) genome as a compact model vertebrate genome
- 1 November 1993
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 366 (6452) , 265-268
- https://doi.org/10.1038/366265a0
Abstract
CLONING and sequencing techniques now allow us to characterize genes directly instead of having to deduce their properties from their effects. This new genetics reaches its apotheosis in the plan to obtain the complete DNA sequence of the human genome, but this is far beyond the capacity of present sequencing methods. Small 'model' genomes, such as those of Escherichia coli (4.7 megabases (Mb)1 and yeast (14 Mb)2, or even those of Caenorhabditis elegans (100 Mb) and Drosophila(165 Mb), are better scaled to existing technology. The yeast genome will contain genes with functions common to all eukaryotic cells, and those of simple multi-cellular organisms may throw light on the genetic specification of more complex functions. However, vertebrates differ in their morphology and development, so the ideal model would be a vertebrate genome of minimum size and complexity but with maximum homology to the human genome. Here we report the characterization of the small genome (400 Mb) of the tetraodontoid fish, Fugu rubripes5. A random sequencing approach supported by gene probing shows that the haploid genome contains 400 Mb of DNA, of which more that 90% is unique. This genome is 7.5 times smaller than the human genome and because it has a similar gene repertoire it is the best model genome for the discovery of human genes.Keywords
This publication has 18 references indexed in Scilit:
- Analysis of the Escherichia coli Genome: DNA Sequence of the Region from 84.5 to 86.5 MinutesScience, 1992
- The complete DNA sequence of yeast chromosome IIINature, 1992
- Survey of human and rat microsatellitesGenomics, 1992
- The C. elegans genome sequencing project: a beginningNature, 1992
- The conservation of dinucleotide microsatellites among mammalian genomes allows the use of heterologous PCR primer pairs in closely related speciesGenomics, 1991
- Evolution and distribution of (GT)n repetitive sequences in mammalian genomesGenomics, 1991
- A Physical Map of the Escherichia coli K12 GenomeScience, 1987
- Nucleotide sequence organization in the very small genome of a tetraodontid fish, Arothron diadematusEuropean Journal of Biochemistry, 1984
- Cellular DNA Content and the Evolution of Teleostean FishesThe American Naturalist, 1972
- Evolution of Cellular DNA Content in Teleost FishesThe American Naturalist, 1968