Whole-Genome Sequences of DA and F344 Rats with Different Susceptibilities to Arthritis, Autoimmunity, Inflammation and Cancer

Author:

Guo Xiaosen1,Brenner Max23,Zhang Xuemei1,Laragione Teresina23,Tai Shuaishuai1,Li Yanhong1,Bu Junjie14,Yin Ye1,Shah Anish A2,Kwan Kevin2,Li Yingrui1,Jun Wang156,Gulko Pércio S237

Affiliation:

1. BGI-Shenzhen, Shenzhen 518083, China

2. Laboratory of Experimental Rheumatology, Feinstein Institute for Medical Research, Manhasset, New York 11030

3. Hofstra North Shore–Long Island Jewish School of Medicine, Manhasset, New York 11030

4. Key Laboratory for NeuroInformation of Ministry of Education, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu 610054, China

5. Department of Biology and

6. The Elmezzi Graduate School of Molecular Medicine, Manhasset, New York 11030

7. The Novo Nordisk Foundation Center for Basic Metabolic Research, University of Copenhagen, DK-1165 Copenhagen, Denmark

Abstract

Abstract DA (D-blood group of Palm and Agouti, also known as Dark Agouti) and F344 (Fischer) are two inbred rat strains with differences in several phenotypes, including susceptibility to autoimmune disease models and inflammatory responses. While these strains have been extensively studied, little information is available about the DA and F344 genomes, as only the Brown Norway (BN) and spontaneously hypertensive rat strains have been sequenced to date. Here we report the sequencing of the DA and F344 genomes using next-generation Illumina paired-end read technology and the first de novo assembly of a rat genome. DA and F344 were sequenced with an average depth of 32-fold, covered 98.9% of the BN reference genome, and included 97.97% of known rat ESTs. New sequences could be assigned to 59 million positions with previously unknown data in the BN reference genome. Differences between DA, F344, and BN included 19 million positions in novel scaffolds, 4.09 million single nucleotide polymorphisms (SNPs) (including 1.37 million new SNPs), 458,224 short insertions and deletions, and 58,174 structural variants. Genetic differences between DA, F344, and BN, including high-impact SNPs and short insertions and deletions affecting >2500 genes, are likely to account for most of the phenotypic variation between these strains. The new DA and F344 genome sequencing data should facilitate gene discovery efforts in rat models of human disease.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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