Rchr
J-GLOBAL ID:201801016892966429   Update date: Oct. 07, 2024

Aoi Hosaka

Aoi Hosaka
Research field  (1): Genomics
Research theme for competitive and other funds  (1):
  • 2019 - 2023 植物メリステムの比較エピゲノミクスから探る発生制御機構の進化
Papers (9):
  • Awie J Hosaka, Rena Sanetomo, Kazuyoshi Hosaka. A de novo genome assembly of Solanum bulbocastanum Dun., a Mexican diploid species reproductively isolated from the A-genome species, including cultivated potatoes. G3: Genes, Genomes, Genetics. 2024
  • Aoi Hosaka. Identification of active transposable element candidates from ROH in a de novo assembled chromosome-scale genome of a Nishikigoi, an ornamental fish derived from Common carp (Cyprinus carpio). 2023
  • Taku Sasaki, Kae Kato, Aoi Hosaka, Yu Fu, Atsushi Toyoda, Asao Fujiyama, Yoshiaki Tarutani, Tetsuji Kakutani. Arms race between anti-silencing and RdDM in noncoding regions of transposable elements. EMBO reports. 2023
  • Taku Sasaki, Kae Kato, Aoi Hosaka, Yu Fu, Atsushi Toyoda, Asao Fujiyama, Yoshiaki Tarutani, Tetsuji Kakutani. The arms race in noncoding regions of transposable element: the evolution of anti-silencing and RNAi. 2022
  • Awie J Hosaka, Rena Sanetomo, Kazuyoshi Hosaka. A de novo genome assembly of Solanum verrucosum Schlechtendal, a Mexican diploid species geographically isolated from other diploid A-genome species of potato relatives. G3 (Bethesda, Md.). 2022. 12. 8
more...
MISC (5):
  • 保坂碧, 保坂碧, 實友玲奈, 保坂和良. De novo assemblies of wild potatoes toward understanding the dynamics of ploidy evolution. 育種学研究. 2023. 25
  • 保坂碧, 保坂碧, 實友玲奈, 保坂和良. Genome structure and expression profile of an allotetraploid potato. 育種学研究. 2023. 25
  • Norichika Ogata, Aoi Hosaka. Cellular liberality is measurable as Lempel-Ziv complexity of fastq files. 2022
  • 保坂碧, 保坂碧, 實友玲奈, 保坂和良. A de novo genome assembly of Solanum verrucosum Schlechtendal, a diploid A-genome species of potato relatives. 育種学研究. 2022. 24
  • Aoi Hosaka, Raku Saito, Kazuya Takashima, Taku Sasaki, Yoshiaki Tarutani, Tetsuji Kakutani. Sequence-specific anti-silencing of transposons in Arabidopsis and its rapid evolution. GENES & GENETIC SYSTEMS. 2016. 91. 6. 347-347
Education (2):
  • 2010 - 2016 The Graduate University for Advanced Studies School of Life Science Department of Genetics
  • 2006 - 2010 Tokyo University of Agriculture and Technology Faculty of Agriculture Department of Applied Biological Science
Work history (4):
  • 2022/04 - 現在 株式会社日本バイオデータ 研究員
  • 2020/04 - 2022/03 株式会社Rhelixa 研究開発部 研究員
  • 2018/09 - 2020/04 Yokohama City University
  • 2016/10 - 2018/08 National Institute of Genetics
Awards (1):
  • 2016/09 - 日本遺伝学会 BP賞 シロイヌナズナの配列特異的抗抑制系とその速い進化
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