Research field (2):
Plant genetics and breeding
, Crop production science
Research theme for competitive and other funds (2):
2019 - 2020 稲作の省力化に寄与する遺伝子の機能解明および集積系統の開発
2013 - 2018 Functional analysis and pyramiding effects of quantitative trait locus for improving yield potential of direct seeded rice
Papers (10):
Masahiro Yamashita, Chikako Ootsuka, Hikaru Kubota, Shunsuke Adachi, Takuya Yamaguchi, Kazumasa Murata, Toshio Yamamoto, Tadamasa Ueda, Taiichiro Ookawa, Tadashi Hirasawa. Alleles of high-yielding indica rice that improve root hydraulic conductance also increase flag leaf photosynthesis, biomass, and grain production of japonica rice in the paddy field. Field Crops Research. 2022. 289. 108725-108725
Taiichiro Ookawa, Tomohiro Nomura, Eri Kamahora, Mingjin Jiang, Yusuke Ochiai, Ahmad Fahim Samadi, Takuya Yamaguchi, Shunsuke Adachi, Keisuke Katsura, Takashi Motobayashi. Pyramiding of multiple strong-culm genes originating from indica and tropical japonica to the temperate japonica rice. Scientific reports. 2022. 12. 1. 15400-15400
Tomio Nishimura, Kazuhiro Sasaki, Takuya Yamaguchi, Hirokazu Takahashi, Junko Yamagishi, Yoichiro Kato. Detection and characterization of quantitative trait loci for coleoptile elongation under anaerobic conditions in rice. Plant Production Science. 2020
Takehara K, Murata K, Yamaguchi T, Yamaguchi K, Chaya G, Kido S, Iwasaki Y, Ogiwara H, Ebitani T, Miura K. Thermo-responsive allele of sucrose synthase 3 (Sus3) provides high-temperature tolerance during the ripening stage in rice (Oryza sativa L.). Breeding science. 2018. 68. 3. 336-342
尾崎秀宣, 村田和優, 山口琢也, 長岡令, 杉本和彦, 小島洋一朗. Evaluation of Effectiveness of Genes for Tolerance to Pre-harvest Sprouting in a Glutinous Rice Variety ”Shintaisho-mochi” Using Near-isogenic Lines. 北陸作物学会報. 2022. 57
村田和優, 伊山幸秀, 伊山幸秀, 山口琢也, 山口琢也, 木谷吉則, 村岡裕一, 前田寛明, 前田寛明, 藤田健司, et al. Development of an Elite Toyama-Rice Cultivar, “Fu-Fu-Fu”. 富山県農林水産総合技術センター農業研究所研究報告. 2022. 9