Rchr
J-GLOBAL ID:200901085355621204   Update date: Aug. 09, 2024

Tabuchi Hiroaki

タブチ ヒロアキ | Tabuchi Hiroaki
Affiliation and department:
Job title: Principal Scientist
Homepage URL  (2): http://www.naro.affrc.go.jp/karc/introduction/chart/hatasaku_area/seiri_iden/index.htmlhttp://www.naro.affrc.go.jp/english/karc/index.html
Research field  (3): Plant genetics and breeding ,  Morphology, anatomy ,  Plants: molecular biology and physiology
Research theme for competitive and other funds  (10):
  • 2022 - 2024 シスト・ネコブ・ネモグリの寄生環を支える線虫共生コアマイクロバイオームの実態解明
  • 2020 - 2023 Development of genome editing technology to accelerate gene function analysis in the hexaploid sweet potato
  • 2018 - 2021 サツマイモネコブセンチュウのレース判別用DNAマーカーの開発
  • 2016 - 2019 16S metagenomics analysis of microbiome communities in soils infected with root-knot nematode (Meloidogyne incognita) and Streptomyces ipomoea
  • 2016 - 2019 Iso-Seq and RNA-seq based transcriptome analyses associated with root-knot nematode resistance in sweetpotato
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Papers (30):
  • Kobayashi Akira, Kai Yumi, Sakai Tetsufumi, Sakaigaichi Takeo, Suematsu Keisuke, Kawata Yukari, Yoshinaga Masaru, Takahata Yasuhiro, Katayama Kenji, Fujita Toshiro, et al. Breeding and characteristics of a sweetpotato variety, “Konaishin”, for starch production with high yield and multiple resistance to diseases and pests. Breeding Research. 2024. 26. 1. 31-38
  • Hiroaki Tabuchi, Akira Kobayashi, Yukari Kawata, Yoshihiro Okada, Yuki Ohdaira Kobayashi. Development of a laboratory test using stem cuttings to measure resistance to foot rot disease caused by <i>Diaporthe destruens</i> in sweetpotato. Breeding Science. 2024. 74. 3. 214-222
  • Emdadul Haque, Kenta Shirasawa, Keisuke Suematsu, Hiroaki Tabuchi, Sachiko Isobe, Masaru Tanaka. Polyploid GWAS reveals the basis of molecular marker development for complex breeding traits including starch content in the storage roots of sweet potato. Frontiers in Plant Science. 2023. 14
  • 村上恭子, 河原望遥, 田淵宏朗. Development of a Method for Discriminating Recommended Rice Cultivars in Kagawa Prefecture. 香川県農業試験場研究報告. 2022. 73
  • Nozomi Obata, Hiroaki Tabuchi, Miyu Kurihara, Eiji Yamamoto, Kenta Shirasawa, Yuki Monden. Mapping of Nematode Resistance in Hexaploid Sweetpotato Using an Next-Generation Sequencing-Based Association Study. Frontiers in plant science. 2022. 13. 858747-858747
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MISC (76):
  • 田淵宏朗, 田中勝, HAQUE E., 小林晃, 境垣内岳雄, 末松恵祐, 川田ゆかり, 小林有紀. Evaluation of stem resistance to foot rot in genetic resources, cultivars, F1 and S1 plants of sweetpotato. 育種学研究. 2023. 25
  • 泉谷真, 大畑慎一郎, 田淵宏朗, 西田英隆, 加藤鎌司, 門田有希. Revealing the competition between sweetpotato and southern root knot nematode by transcriptome analysis. 育種学研究. 2023. 25
  • 栗原未結, 田淵宏朗, 加藤鎌司, 西田英隆, 門田有希. High-dense genetic linkage map using multiple-dose markers and random-effect multiple QTL mapping of root-knot nematode resistance in hexaploid sweetpotato. 育種学研究. 2023. 25
  • 田淵宏朗, 小林晃, 川田ゆかり, 境垣内岳雄, 末松恵祐, 岡田吉弘, 小林有紀. Comparison of resistance evaluation between laboratory adn field test for foot rot in sweetpotato. 日本植物病理学会大会プログラム・講演要旨予稿集. 2023. 2023
  • 泉谷真, 大畑慎一郎, 田淵宏朗, 西田英隆, 加藤鎌司, 門田有希. Sequence mutations in the cis-regulatory elements of a candidate gene controlling southern root knot nematode resistance in sweetpotato. 育種学研究. 2022. 24
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Patents (1):
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