Survey of the genetic information carried in the genome of Eucalyptus camaldulensis
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概要
- 論文の詳細を見る
The genetic information in the genome of Eucalyptus camaldulensis was investigated by sequencing the genome and the cDNA using a combination of the conventional Sanger method and next-generation sequencing methods, followed by intensive bioinformatics analyses. The total length of the non-redundant genomic sequences thus obtained was 654,922,307 bp consisting of 81,246 scaffolds and 121,194 singlets. These sequences accounted for approximately 92% of the gene-containing regions with an average G+C content of 33.6%. A total of 77,121 complete and partial structures of protein-encoding genes have been deduced. Comparison of the genes mapped on the KEGG pathways or located in the KOG classification with those in other plant species revealed the characteristics of the E. camaldulensis genome, and it was found that 23 pathways contained enzymes present only in the E. camaldulensis genome. Polymorphism analysis using microsatellite markers developed from the genomic sequence data obtained was performed with six Eucalyptus species collected from various parts of the world to estimate their genetic diversity, and the usefulness of these markers was demonstrated. The genomic sequence and accompanying information presented here are expected to serve as valuable resources for the acceleration of fundamental and applied research with Eucalyptus, especially in the fields of paper production and industrial materials. Further information on the genomic and cDNA sequences and microsatellite markers is available at http://www.kazusa.or.jp/eucaly/.
著者
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Kaneko Takakazu
Department Of Life Science Faculty Of Agriculture Kagawa University
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Kato Tomohiko
Forestry Res. Inst. Oji Paper Co. Ltd.
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Handa H
Tokyo Institute Of Technology
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Hibino Takashi
Forestry Res. Inst. Oji Paper Co. Ltd.
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Sato Shusei
Department Of Biology School Of Science Nagoya University
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Nakamura Yasukazu
Department Of Agricultural Chemistry Faculty Of Agriculture Kyoto University
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Hayashi H
Department Of Applied Biological Chemistry Graduate School Of Agricultural And Life Sciences The Uni
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Kishida Yoshie
Department Of Applied Chemistry Kansai University
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Tabata Satoshi
Department Of Biology School Of Science Nagoya University
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Yamada Manabu
Department Of Applied Chemistry Faculty Of Science Science University Of Tokyo
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Watanabe Akiko
Department Of Pharmacology Faculty Of Pharmaceutical Sciences Kinki University
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Isobe Sachiko
Department Of Life Science Aichi University Of Education
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HIRAKAWA Hideki
Department of Plant Genome Research, Kazusa DNA Research Institute
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SAKAI Hiroe
Department of Plant Genome Research, Kazusa DNA Research Institute
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SASAMOTO Shigemi
Department of Plant Genome Research, Kazusa DNA Research Institute
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NAKAYAMA Shinobu
Department of Plant Genome Research, Kazusa DNA Research Institute
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Kohara Mitsuyo
Department Of Plant Genome Research Kazusa Dna Research Institute
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Fujishiro Tsunakazu
Department Of Plant Genome Research Kazusa Dna Research Institute
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