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J-GLOBAL ID:201601001428853601   Update date: Mar. 08, 2025

Feng Li

リ フェン | Feng Li
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Research field  (1): Plant genetics and breeding
Research keywords  (5): Next generation sequencing ,  rice ,  Brassicaceae ,  mutagensis ,  genetic analysis
Research theme for competitive and other funds  (1):
  • 2023 - 2027 Comprehensive analysis of low phosphorus response by GWAS and RNA-seq in soybean
Papers (32):
  • Ryoichi Yano, Feng Li, Susumu Hiraga, Ryoma Takeshima, Michie Kobayashi, Kyoko Toda, Yosuke Umehara, Hiromi Kajiya-Kanegae, Hiroyoshi Iwata, Akito Kaga, et al. The genomic landscape of gene-level structural variations in Japanese and global soybean Glycine max cultivars. Nature Genetics. 2025
  • Chikako Kuwabara, Ryuji Miki, Nobuyuki Maruyama, Masanori Yasui, Haruyasu Hamada, Yozo Nagira, Yumiko Hirayama, Wataru Ackley, Feng Li, Ryozo Imai, et al. A DNA-free and genotype-independent CRISPR/Cas9 system in soybean. Plant Physiology. 2024
  • Feng Li, Takashi Sayama, Yuko Yokota, Susumu Hiraga, Masatsugu Hashiguchi, Hidenori Tanaka, Ryo Akashi, Masao Ishimoto. Assessing genetic diversity and geographical differentiation in a global collection of wild soybean (Glycine soja Sieb. et Zucc.) and assigning a mini-core collection. DNA Research. 2024. 31. 2
  • Gaoxiang Ji, Ying Long, Guangqin Cai, Aihua Wang, Guixin Yan, Hao Li, Guizhen Gao, Kun Xu, Qian Huang, Biyun Chen, et al. A new chromosome-scale genome of wild Brassica oleracea provides insights into the domestication of Brassica crops. Journal of Experimental Botany. 2024
  • Feng Li, Akira Komatsu, Miki Ohtake, Heesoo Eun, Akemi Shimizu, Hiroshi Kato. Direct identification of a mutation in OsSh1 causing non-shattering in a rice (Oryza sativa L.) mutant cultivar using whole-genome resequencing. Scientific Reports. 2020. 10. 1
more...
MISC (2):
Patents (2):
  • ダイズ植物、ダイズ植物の判定方法、及びダイズ植物のスクリーニング方法
  • 難脱粒性イネの製造方法、難脱粒性のイネ、及びイネの脱粒性評価方法
Books (1):
  • 形質転換プロトコル【植物編】
    日本化学同人出版社 2012
Lectures and oral presentations  (8):
  • GWASによるダイズの粒大に関与する遺伝要因の検出ならびにRILを用いた効果の検証
    (育種学会第142回講演会 2022)
  • 世界の野生ダイズ2,065系統の遺伝的多様性及び地理的分化
    (日本育種学会第139回講演会 2021)
  • 全ゲノム変異解析によるイネ品種「ミナミユタカ」の難脱粒性の原因遺伝子の同定
    (日本育種学会第138回講演会 2020)
  • バルクシークエンシング法によるイネの多収突然変異系統の原因遺伝子候補の同定
    (育種学会第137回講演会 2020)
  • Whole genome sequencing of rice mutants induced by gamma rays and ion beams
    (2019)
more...
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