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論文 ·日本語 ·未確認

A ddRAD-based genetic map and its integration with the genome assembly of Japanese eel (Anguilla japonica) provides insights into genome evolution after the teleost-specific genome duplication

Wataru Kai Kazuharu Nomura Atushi Fujiwara Yoji Nakamura Motoshige Yasuike Nobuhiko Ojima Tetsuji Masaoka Akiyuki Ozaki Yukinori Kazeto Koichiro Gen Jiro Nagao Hideki Tanaka Takanori Kobayashi Mitsuru Ototake

刊行年
2014-03-26
収録
『BMC Genomics』 15(1) pp. 233-233
出版
BioMed Central
言語
英語
OpenAlex
W2035157563
DOI
10.1186/1471-2164-15-233
PubMed
24669946
MAG
2035157563
ISSN
1471-2164
URL
https://bmcgenomics.biomedcentral.com/counter/pdf/10.1186/1471-2164-15-233

要旨

BACKGROUND: Recent advancements in next-generation sequencing technology have enabled cost-effective sequencing of whole or partial genomes, permitting the discovery and characterization of molecular polymorphisms. Double-digest restriction-site associated DNA sequencing (ddRAD-seq) is a powerful and inexpensive approach to developing numerous single nucleotide polymorphism (SNP) markers and constructing a high-density genetic map. To enrich genomic resources for Japanese eel (Anguilla japonica), we constructed a ddRAD-based genetic map using an Ion Torrent Personal Genome Machine and anchored scaffolds of the current genome assembly to 19 linkage groups of the Japanese eel. Furthermore, we compared the Japanese eel genome with genomes of model fishes to infer the history of genome evolution after the teleost-specific genome duplication. RESULTS: We generated the ddRAD-based linkage map of the Japanese eel, where the maps for female and male spanned 1748.8 cM and 1294.5 cM, respectively, and were arranged into 19 linkage groups. A total of 2,672 SNP markers and 115 Simple Sequence Repeat markers provide anchor points to 1,252 scaffolds covering 151 Mb (13%) of the current genome assembly of the Japanese eel. Comparisons among the Japanese eel, medaka, zebrafish and spotted gar genomes showed highly conserved synteny among teleosts and revealed part of the eight major chromosomal rearrangement events that occurred soon after the teleost-specific genome duplication. CONCLUSIONS: The ddRAD-seq approach combined with the Ion Torrent Personal Genome Machine sequencing allowed us to conduct efficient and flexible SNP genotyping. The integration of the genetic map and the assembled sequence provides a valuable resource for fine mapping and positional cloning of quantitative trait loci associated with economically important traits and for investigating comparative genomics of the Japanese eel.

主題

この書誌の出所

  • openalex— W2035157563(2026-08-14取得)

引用

Wataru Kai・Kazuharu Nomura・Atushi Fujiwara・Yoji Nakamura・Motoshige Yasuike・Nobuhiko Ojima・Tetsuji Masaoka・Akiyuki Ozaki・Yukinori Kazeto・Koichiro Gen・Jiro Nagao・Hideki Tanaka・Takanori Kobayashi・Mitsuru Ototake(2014-03-26) A ddRAD-based genetic map and its integration with the genome assembly of Japanese eel (Anguilla japonica) provides insights into genome evolution after the teleost-specific genome duplication 『BMC Genomics』 15(1) pp. 233-233 BioMed Central

Kai2014DdRADBasedGenetic
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