Rchr
J-GLOBAL ID:202301016646426725
Update date: Dec. 07, 2024 Fujita Naoko
フジタ ナオコ | Fujita Naoko
Affiliation and department: Job title:
Project Assistant Professor
Other affiliations (2): Research field (2):
Conservation science (plants)
, Plants: molecular biology and physiology
Research keywords (1):
Microbotryum, anther smut, Silene, Silene latifolia, Silene miqueliana, plant-microbe interaction, metagenomics
Research theme for competitive and other funds (9): - 2023 - 2026 Investigation of the mechanism of propagation and transmission of soybean dwarf virus using reverse genetics.
- 2023 - 2026 Silene属における性と性染色体の成立進化
- 2023 - 2026 性染色体のゲノム進化からみるSilene属植物の性決定機構
- 2020 - 2023 開花・性・花寿命を変える菌因子の特定
- 2022 - 2023 果樹に利用可能なウイルスベクター開発に向けた新規カキウイルスの解析
- 2018 - 2021 性染色体と性染色体のように挙動する菌を用いた新規なフロリゲン機能解析
- 2014 - 2016 A reverse genetic approach to analyze sex determination systems in plants using a virus vector
- 2015 - 2016 ホウレンソウの簡易雌雄判別法の開発
- 2013 - 2016 植物のかたちを変える病原微生物群の共通分子基盤
Show all
Papers (26): -
Akagi T, Fujita N, Masuda K, Shirasawa K, Nagaki K, Horiuchi A, Kuwada E, Kunou R, Nakamura K, Ikeda Y, et al. Rapid and dynamic evolution of a giant Y chromosome in Silene latifolia. bioRxiv. 2023
-
Fujita N, Hood ME, Komoda Y, Akagi T. Fungal hacking of the plant sex-determination pathway via interference with AGL24 in Silene latifolia. bioRxiv. 2023
-
Akagi T, Varkonyi-Gasic E, Shirasawa K, Catanach A, Henry IM, Mertten D, Datson P, Masuda K, Fujita N, Kuwada E, et al. Recurrent neo-sex chromosome evolution in kiwifruit. Naure Plants. 2023
-
Masuda K, Uchida R, Fujita N, Miyamoto Y, Yasue T, Kubo Y, Ushijima K, Uchida S, Akagi T. Application of deep learning diagnosis for multiple traits sorting in peach fruit. Postharvest Biology and Technology. 2023
-
Horiuchi A, Masuda K, Shirasawa K, Onoue N, Fujita N, Ushijima K, Akagi T. Ongoing rapid evolution of a post-Y region revealed by chromosome-scale genome assembly of hexaploidy monoecious persimmon (Diospyros kaki). Mol. Bio. Evol. 2023
more... MISC (2): -
藤田尚子. 植物のしなやかな性表現と菌のしたたかな生存戦略. 細胞. 2022. 54. 326-329
-
藤田尚子. 果樹に利用可能なウイルスベクター開発に向けた新規カキウイルスの解析. 生物学に関する研究論叢. 2022. 37
Education (3): - 2008 - 2012 The University of Tokyo Graduate School of Frontier Sciences
- 2006 - 2008 The University of Tokyo Graduate School of Frontier Sciences
- 2001 - 2005 University of London Biological Science
Professional career (1): - Ph.D. (Life Science) (The University of Tokyo)
Work history (3): - 2024/09 - 現在 The University of Tokyo Pandemic Preparedness, Infection and Advanced Research Center, Department of Microbiology and Infection Project Assistant Professor
- 2024/04 - 現在 Tamagawa University College of Agriculture Department of agriculture production Visiting Researcher
- 2024/04 - 現在 National Museum of Nature and Science, Tokyo Department of Botany Affiliated Scientist
Awards (1): - 2022 - Best Poster Ward of the 18th Japan Solanamceae Consortium Symposium Fungal hacking of the plant sex-determination pathway via suppression of AGL24 in Silene latifolia
Association Membership(s) (4):
日本菌学会
, 日本植物病理学会
, 日本植物形態学会
, 日本植物学会
Return to Previous Page