Rchr
J-GLOBAL ID:200901021401175810
Update date: Feb. 01, 2024
Taketa Shin
タケタ シン | Taketa Shin
Affiliation and department:
Job title:
Professor
Research field (1):
Plant genetics and breeding
Research keywords (2):
植物遺伝育種学
, Plant genetics and breeding
Research theme for competitive and other funds (17):
- 2023 - 2027 オオムギ縞萎縮病の新規抵抗性遺伝子の単離と機能解明
- 2023 - 2024 ビール大麦の水感受性因子をターゲットとした遺伝子解析
- 2022 - 2023 オオムギの健康性分である水溶性食物繊維(βーグルカン)を高める遺伝子の解明
- 2022 - 2023 ビール大麦の品質・生産性向上のための遺伝育種学的多様性の研究
- 2022 - 2023 コムギ長葉毛遺伝子の単離と発現解析
- 2019 - 2022 Genetic analysis of a leafy lemma mutant in barley
- 2020 - 2021 土壌伝染性ウイルスで起こる「大麦縞萎縮病」に対するオオムギ抵抗性遺伝子の多様性解析
- 2016 - 2019 Photosysnthetic activity of spikes measured by albino lemma mutants in barley
- 2013 - 2016 Cloning of a gene controlling awn length in barley
- 2009 - 2011 Isolation and characterization of beta-glucan synthase genes
- 2006 - 2008 Molecular genetic analysis on the expression mechanisms of the covered and naked caryopsis in barley
- 2003 - 2006 Moleculargenetic investigation on silica uptake in rice
- 2003 - 2005 Isolation and characterization of the barley gene controlling hulled or naked caryopsis
- 1997 - 1998 分子細胞学的手法によるオオムギ野性種の系統分化の解析
- 1996 - 1996 染色体工学的手法によるコムギにオオムギ第5染色体を添加した系統の育成
- 1995 - 1995 分子細胞学的手法による新たなオオムギ染色体マーカーの創出
- 1994 - 1994 ライコムギに導入されたDゲノム染色体断片の分子細胞遺伝学的手法による検出
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Papers (80):
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Shin Taketa, June-Sik Kim, Hidekazu Takahashi, Shunsuke Yajima, Yuichi Koshiishi, Toshinori Sotome, Tsuneo Kato, Keiichi Mochida. Genomic traces of Japanese malting barley breeding in two modern high-quality cultivars, ‘Sukai Golden’ and ‘Sachiho Golden’. Breeding Science. 2023. 73. 5
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Naoki Ube, Atsushi Ishihara, Yukinori Yabuta, Shin Taketa, Yasuo Kato, Taiji Nomura. Molecular identification of a laccase that catalyzes the oxidative coupling of a hydroxycinnamic acid amide for hordatine biosynthesis in barley. The Plant Journal. 2023
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Takanori Yoshikawa, Hiroshi Hisano, Ken-Ichiro Hibara, Jilu Nie, Yuki Tanaka, Jun-Ichi Itoh, Shin Taketa. A bifurcated palea mutant infers functional differentiation of WOX3 genes in flower and leaf morphogenesis of barley. AoB PLANTS. 2022. 14. 3
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Ken-Ichiro Hibara, Masayuki Miya, Sean Akira Benvenuto, Naoko Hibara-Matsuo, Manaki Mimura, Takanori Yoshikawa, Masaharu Suzuki, Makoto Kusaba, Shin Taketa, Jun-ichi Itoh. Regulation of the plastochron by three many-noded dwarf genes in barley. PLOS GENETICS. 2021. 17. 5
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Naoki Ube, Yuhka Katsuyama, Keisuke Kariya, Shin-ichi Tebayashi, Masayuki Sue, Takuji Tohnooka, Kotomi Ueno, Shin Taketa, Atsushi Ishihara. Identification of methoxylchalcones produced in response to CuCl2 treatment and pathogen infection in barley. PHYTOCHEMISTRY. 2021. 184
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MISC (19):
Books (2):
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植物育種学辞典,日本育種学会編
培風館 2005
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Taketa, S, Linde-Laursen, I. and Künzel, G.. Cytogenetic diversity in barley (Hordeum vulgare). In: Diversity in barley, edited by R. von Bothmer, H. Knüpffer, T. van Hintum and K. Sato
2003
Lectures and oral presentations (22):
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Barley albino lemma 1 mutants
(The 3rd Barley Mutant Conference 2023)
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エピゲノム制御を介したオオムギの芒形成機構の解析
(日本育種学会第144回講演会, 神戸 2023)
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エピゲノム制御が担うオオムギの芒形成
(第1回植物生理若手の会, 千葉 2023)
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オオムギの芒形成を担うエピゲノム制御因子
(第64回日本植物生理学会,仙台(ハイブリッド) 2023)
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Barley diversity preserved in genebanks is indispensable for gene hunting and pre-breeding.
(Use of Genetic Resources in Breeding for Climate Change in the Nordic Region- Why Research and Innovation Do Matter, NordGen PPP Conference 2023)
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Association Membership(s) (2):
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